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Tarbijakaitse ja Tehnilise Järelevalve Amet · 2. september 2020
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17-13/2020/1747
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2. september 2020
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17 Elektrooniline side 2020 - ...
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17-13 Raadioseadmete tehniliste nõuetega seotud kirjavahetus
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17-13/2020
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Draft version! 1. ------IND- 2020 0385 HU- EN- ------ 20200723 --- --- PROJET Decree No .../2020 of …. …. of the Chairperson of the National Media and Infocommunications Authority amending Decree No 7/2015 of 13 November 2015 of the National Media and Infocommunications Authority on national frequency allocation and on the rules of frequency band use Under the authorisation conferred on me by points 1, 3, 5, 6, 8 and 11 of § 182(3) of Act C of 2003, and exercising my functions and powers specified in § 109(5) of Act CLXXXV of 2010 on media services and on mass media, I hereby decree as follows: § 1. (1) The following point 42 a is added to § 2(1) to Decree No 7/2015 of 13 November 2015 of the National Media and Infocommunications Authority on national frequency allocation and on the rules of frequency band use (hereinafter: the Decree): (For the purposes of this Decree:) ‘42 a DSC: is a semi-automated method specified by IMO as an international standard for radiocommunications using the MF, HF and URH bands reserved for the maritime mobile service;’ (2) Points 99 a and 99b of § 2(1) of the Decree are replaced by the following provisions, and the following point 99c is added to the paragraph: (For the purposes of this Decree:) ‘99 a Smart tachograph, weight and dimension application: a radio application supporting the execution of telecommunications functions specified in Appendix 14 of Commission Implementing Regulation (EU) 2016/799 for tachographs, and for compliance with requirements of weight and dimension for weight and dimension applications; 99b IoT: in general, the internet connection of devices embedded in objects and enabling data transfers between such objects; 99c IoT system: a radio communications system enabling IoT, particularly the EC-GSM- IoT, LTE-MTC, LTE-eMTC, NR-IoT and NB-IoT system;’ (3) Point 135 a of § 2(1) of the Decree is replaced by the following provision: (For the purposes of this Decree:) ‘135 a MBANS: a radio system used for medical data acquisition via low-power wireless networking of a plurality of body-worn sensors or actuators as well as of a hub device placed on or around the human body;’ (4) The following point 195 a is added to § 2(1) of the Decree: (For the purposes of this Decree:) ‘195 a PMR 446: radio equipment which operates in short-range peer-to-peer mode, without the use of base stations or repeater stations, and used neither as a part of infrastructure network nor as a repeater station, and which is carried on a person or manually operated and uses only integral antennas in order to maximise sharing and minimise interference;’ Draft version! (5) Point 238 of § 2(1) of the Decree is replaced by the following provision: (For the purposes of this Decree:) ‘238. SRD: transmit/receive radio equipment which provides either unidirectional or bidirectional communication and which transmits over a short distance at low power;’ (6) Point 251 of § 2(1) of the Decree is replaced by the following provision: (For the purposes of this Decree:) ‘251. telecommand application: a telecommand radio application which enables the continuous unidirectional control of various devices;’ (7) The following point 262a is added to § 2(1) of the Decree: (For the purposes of this Decree:) ‘262 a ULP-WMCE: application designed for medical data acquisition in medical doctor- patient scenarios with the aim of acquiring images of the human digestive tract;’ (8) Point 278 a of § 2(1) of the Decree is replaced by the following provision, and the following point 278b is added to the paragraph: (For the purposes of this Decree:) ‘278 a VDES: a multifunctional digital data exchange telecommunications system in the VHF band designed for the maritime mobile service, consisting of a terrestrial and a satellite component and defined in recommendation ITU-R M.2092; 278b. guard band IoT application: an IoT application implemented within – at the edge of – a nominal channel used for the provision of wireless broadband electronic communications services, in a part that is not used by the resources within the channel;’ § 2. (1) The following point 22 a is added to § 15 of the Decree: [The Decree serves the purpose of implementing ERC and ECC Decisions referred to in § 7(6) of and Annexes 2, 3 and 6 to the Decree, as well as the implementation of the following decisions with regard to the rules on frequency band use:] ‘22 a. ECC/DEC/(17)01: ECC Decision on the withdrawal of ECC Decision (01)01 on phasing out analogue CT1 and CT1+ applications in the 900 MHz band and ECC Decision (01)02 on phasing out digital CT2 applications in the 900 MHz band;’ (2) The following points 25 and 26 are added to § 15 of the Decree: [The Decree serves the purpose of implementing ERC and ECC Decisions referred to in § 7(6) of and Annexes 2, 3 and 6 to the Decree, as well as the implementation of the following decisions with regard to the rules on frequency band use:] ‘25. ECC/DEC/(18)03: ECC Decision on the withdrawal of ERC Decision (01)08 on harmonised frequencies, technical characteristics and exemption from individual licensing of Short-Range Devices used for movement detection and alerting, operating in the frequency band 2 4002 483.5 MHz; 26. ECC/DEC/(19)01: ECC Decision on the withdrawal of ECC Decision (11)04) on an exemption from individual licensing of digital terminals of narrowband and wideband PMR/PAMR/PPDR systems and the free circulation and use of digital terminals of narrowband and wideband PPDR systems operating in the 80 MHz, 160 MHz, 380470 MHz and 800/900 MHz bands.’ § 3. (1) Annex 2 to the Decree is amended in accordance with Annex 1. Draft version! (2) Annex 3 to the Decree is amended in accordance with Annex 2. (3) Annex 4 to the Decree is amended in accordance with Annex 3. (4) Annex 5 to the Decree is amended in accordance with Annex 4. (5) Annex 6 to the Decree is amended in accordance with Annex 5. (6) Annex 7 to the Decree is amended in accordance with Annex 6. (7) Annex 8 to the Decree is amended in accordance with Annex 7. § 4. (1) (a) In § 2(1) of the Decree: (aa) in point 9b, ‘people with hearing disability’ is replaced by ‘persons with hearing impairment’, (ab) in point 15, ‘purpose’ is replaced by ‘its purpose’, (ac) in point 86b ‘harmonised standard specified’ is replaced by ‘definition specified’, (ad) (not relevant for the English text), (ae) in point 145, ‘vehicle models (primarily’ is replaced by ‘vehicle models (in particular’, (af) in point 178, ‘portable radio equipment carried on the person’ is replaced by ‘radio equipment carried on the person’ (ag) in point 190 a, ‘in their home’ is replaced ‘in their home, pursuant to the relevant regulations and performed as specified by healthcare professionals’, (ah) in point 231, ‘within the framework of EAS’ is replaced by ‘for EAS’, (b) Point 27 of § 13(1), ‘2011/829/EU’ is replaced by ‘2011/829/EU and (EU) 2019/1345’. (2) In field B:520 of the table in point 3.2. of Annex 1 of the Decree, ‘the wireless internal communications systems of avionic equipment that operate in accordance with the recognised international aviation standards’ is replaced by ‘wireless avionic internal communications systems that operate in accordance with recognised international aviation standards’. (3) In the table in point 2 of Annex 2 to the Decree: 1. in field F:130, ‘456.9457.1 kHz’ is replaced by ‘442.2–450 kHz and 456.9457.1 kHz’, 2. in field G:137, ‘Articles 31, 32, 33, 52 of RR’ is replaced by ‘RR Chapter VII, Articles 51, 52’, 3. in field G:151, ‘Articles 31, 33, 52 of RR’ is replaced by ‘RR Chapter VII, Articles 51, 52’, 4. in field G:158 ‘MSZ EN 302 245-2’ is replaced by ‘ETSI EN 302 245-2, MSZ EN 302 245’, 5. in field G:244, ‘Articles 31, 52 of RR’ is replaced by ‘RR Article 31’, 6. in fields G:368, G:493, G:537, G:544, G:551, G:603, G:610, G:670, G:723, G:765, G:794, G:839, G:885 and G:975, ‘MSZ EN 302 245-2’ is replaced by ‘ETSI EN 302 245-2, MSZ EN 302 245’, 7. in fields G:1140, G:1154, G:1156–G:1159, G:1180, G:1200, G:1208, G:1214, G:1222, G:1230 and G:1252, ‘ECC/DEC/(06)06’ is replaced by ‘ECC/DEC/(19)02’, 8. in fields H:1255–H:1256 and H:1260, ‘2020’ is replaced by ‘2022’, 9. in field G:1284, ‘ECC/DEC/(06)06’ is replaced by ‘ECC/DEC/(19)02’, Draft version! 10. in fields G:1293 and G:1301 ‘MSZ EN 302 077-2’ is replaced by ‘ETSI EN 302 077-2, MSZ EN 302 077’, 11. in field G:1339 ‘ECC/DEC/(08)05, ECC/DEC/(11)04’ is replaced by ‘ECC/DEC/(08)05’, 12. in fields G:1404 and G:1418 ‘ECC/DEC/(06)06’ is replaced by ‘ECC/DEC/(19)02’, and ‘MSZ EN 303 035-1’ is replaced by ‘MSZ EN 303 035-1, MSZ EN 302 561’, 13. in fields G:1490, G:1492, G:1506 and G:1508 ‘ECC/DEC/(06)06’ is replaced by ‘ECC/DEC/(19)02’, 14. in fields G:1514, G:1527, G:1539 and G:1550, ‘MSZ EN 302 296-2, MSZ EN 303 340’ is replaced by ‘ETSI EN 302 296-2, MSZ EN 302 296’, and ‘MSZ EN 303 354’ is replaced by ‘MSZ EN 303 340, MSZ EN 303 354’, 15. in field F:1631, ‘applications’ is replaced by ‘applications in the 918–919.4 MHz band’, 16. in field F:1761, ‘applications in the 1 4921 525 MHz band’ is replaced by ‘applications’, 17. in field G:1930, ‘MSZ EN 302 064-2’ is replaced by ‘ETSI EN 302 064-2, MSZ EN 302 064’, 18. in field F:2321, ‘fixed within the framework of a fixed service’ is replaced by ‘fixed’, 19. in field H:2331, ‘Intra-vehicular ITS station shall be exempt’ is replaced with ‘Exempt’, 20. in field F:2332, ‘fixed within the framework of a fixed service’ is replaced by ‘fixed’, 21. in fields G:2503–G:2504, ‘MSZ EN 302 194-2’ is replaced by ‘ETSI EN 302 194-2, MSZ EN 302 194’, 22. in fields G:2743–G:2746, G:2750–G:2753, G:2757–G:2760 and G:2763, ‘S.1340 0’ is replaced by ‘S.1340-0’, 23. in fields F:2788, F:2852 and F:2862, ‘HDFSS’ is replaced by ‘non-coordinated HDFSS earth stations’, 24. in field G:2943, ‘MSZ EN 302 064-2’ is replaced by ‘ETSI EN 302 064-2, MSZ EN 302 064’, 25. in fields H:2950, H:2960 and H:2971, ‘obligation, but application for registration may be submitted to the Authority’ is replaced by ‘obligation’, 26. in fields F:3005, F:3014, F:3026, F:3035 and F:3045, ‘HDFSS’ is replaced by ‘non- coordinated HDFSS earth stations’, 27. in fields G:3142, G:3146, G:3150, G:3155, G:3161 and G:3166 ‘MSZ EN 302 064-2’ is replaced by ‘ETSI EN 302 064-2, MSZ EN 302 064’, 28. in fields G:3258, G:3269, G:3276 and G:3286 ‘MSZ EN 302 264-2’ is replaced by ‘ETSI EN 302 264-2, MSZ EN 302 264’. (4) In Annex 3 to the Decree, (a) (not relevant for the English text) (b) in point 2.9.2.1, ‘F.387-12’ is replaced by ‘F.387-13’, (c) in fields B:9 and B:12 of the table in point 3.2.2, ‘right holders’ is replaced by ‘frequency use right holders’, (d) in point 3.2b ‘708–733/763–788 MHz,’ is replaced by ‘708–733/763–788 MHz, 790– 862 MHz,’ (e) in fields G:14, G:17, G:41, G:44, G:45 and G:49 of the table in point 4.6.1 ‘T’ is replaced by ‘K’, (f) in point 10.1.6 a, ‘the relevant essential requirements specified in the Decree of the National Media and Infocommunications Authority on radio equipment’ is replaced by ‘the relevant essential requirements’, (g) in fields E:2–E:21 of the table in point 10.2.4, ‘the basic requirements specified in the Decree of the National Media and Infocommunications Authority on radio equipment’ is replaced by ‘the basic requirements’, (h) (not relevant for the English text) Draft version! (5) In field B:6 of the table in point 2 of Annex 4 to the Decree, ‘2018’ is replaced by ‘2019’. (6) In the table in point 1 of Annex 5 to the Decree: (a) in field B:1, ‘Name’ is replaced by ‘Terminal equipment’, (b) in field C:1, ‘Relevant EU’ is replaced by ‘EU’. (7) In the table in Annex 7 to the Decree: (a) (not relevant for the English text), (b) in fields B:110 and B:111, ‘technology-based’ is replaced by ‘based’, (8) In Annex 8 to the Decree: (a) in the table in point 1.4: (aa) in fields B:9 and B:10, ‘sound broadcasting’ is replaced by ‘radio broadcasting’, (ab) in fields B:11 and B:12, ‘sound broadcasting’ is replaced by ‘radio broadcasting’, (ac) in field A:18, ‘F.387–12’ is replaced by ‘F.387–13’, (b) in the table in point 3.2: (ba) in field B:37, ‘systems – including radio local area networks – (WASs/RLANs)’ is replaced by ‘systems, including radio local area networks (WASs/RLANs)’, (bb) in field A:40, ‘2013’ is replaced by ‘2019’, (bc) in field A:41, ’17 November 2017’ is replaced by ‘5 July 2019’, and in field B:41, ‘169.4–169.8125’ is replaced by ‘169.4–169.8125’, (bd) in field A:45, ‘3 March 2017’ is replaced by ‘8 March 2019’, (be) in field A:47, ‘6 March 2015’ is replaced by ‘8 March 2019’, (bf) in field A:64, ’17 June 2016’ is replaced by ‘8 March 2019’, (c) in the table in point 3.3: (ca) in field A:3, ‘Bonn, 1994’ is replaced by ’29 May 2019’, and in field B:3, ‘17.7 GHz to 19.7 GHz’ is replaced by ‘17.7–19.7 GHz’, (cb) in field A:13, ‘Tromsø, 1997’ is replaced by ’10 February 1998’, (cc) in field A:14, ’22 May 2018’ is replaced by ‘7 June 2019’, (cd) in field A:31, ‘May 2015’ is replaced by ’14 September 2018’, (d) in field B:2 of the table in point 8, ’17 June 2015’ is replaced by ‘6 May 2019’. § 5. The following shall be repealed: (a) In § 15(1) of the Decree: (b) in the table in point 2 of Annex 2 to the Decree: (ba) ‘official frequency list’ in fields G:352–G:353, G:413–G:414 and G:459–G:460, (bb) lines 1004, 1149, 1164, 1306, 2548 and 2559, bc) ‘The systems shall only be operated until 31 December 2022’ in fields H:3239–H:3240, H:3248–H:3249, H:3293–H:3294 and H:3308–H:3309, (c) in Annex 3 to the Decree: (ca) points 2.8, 2.10 and 2.11.13, (cb) ‘The guard bands shall not be separated’ in point 3.4.1, (d) lines 112 and 148 of the table in Annex 7 to the Decree, (e) lines 18, 23, 24, 36, 53 and 78 of the table in point 3.2 of Annex 8. Draft version! § 6. This Decree shall enter into force on the fifteenth day following its publication. § 7. (1) This Decree serves the purpose of compliance with Commission Implementing Decision (EU) 2019/1345 of 2 August 2019 amending Decision 2006/771/EC updating harmonised technical conditions in the area of radio spectrum use for short-range devices. (2) The requirement for the prior notification of this draft decree, as stipulated in Articles 5– 7 of Directive (EU) 2015/1535 of the European Parliament and of the Council of 9 September 2015 laying down a procedure for the provision of information in the field of technical regulations and of rules on Information Society services, has been met. Dr Monika Karas, Chairperson for the National Media and Infocommunications Authority Draft version! Annex 1 to Decree No.…/2020 of … … of the National Media and Infocommunications Authority 1. Line 7 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following line 7/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 7 3 K Inductive applications in the 0.18.3 kHz band Annex 3, point 9.10.2 7/A 3 K Radio microphone applications and wireless audio and Annex 3, point 9.11.2 multimedia streaming applications in the 0.18.3 kHz band. 2. Line 11 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following line 11/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 11 3 K Inductive applications Annex 3, point 9.10.2 11/A 3 K Radio microphone applications and wireless audio and Annex 3, point 9.11.2 multimedia streaming applications 3. Field G:95 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (95) GE75 ITU-R BS.560-4, BS.639-0, BS.1514-2, BS.1615-1 T/R 51-01 MSZ EN 302 017, ETSI EN 302 245-2 MSZ EN 302 245 4. Fields G:240–G:242 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (240) RR Chapter VII, Articles 51, 52’, RR Appendix 15 (241) (242) ICAO Annex 10, Volume V, Chapter 2 Draft version! 5. Fields G:297–G:298 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (297) RR Chapter VII, Articles 51, 52’, RR Appendix 15 ICAO Annex 10, Volume V, Chapter 2 (298) RR Article 31 RR Appendix 15 ICAO Annex 10, Volume V, Chapter 2 6. Fields G:381–G:382 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (381) RR Chapter VII, Articles 51, 52’, RR Appendix 15 (382) ICAO Annex 10, Volume V, Chapter 2 7. Fields G:469–G:470 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (469) RR Chapter VII, Articles 51, 52’, RR Appendix 15. ICAO Annex 10, Volume V, Chapter 2 (470) RR Article 31 RR Appendix 15 ICAO Annex 10, Volume V, Chapter 2 8. Fields G:477–G:478 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (477) RR Chapter VII, Articles 51, 52’, RR Appendix 15 ICAO Annex 10, Volume V, Chapter 2 (478) RR Article 31 RR Appendix 15 ICAO Annex 10, Volume V, Chapter 2 Draft version! 9. Fields G:499–G:503 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (499) RR Chapter VII, Articles 51, 52’, RR Appendix 15 (500) (501) (502) (503) 10. Fields G:573–G:578 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (573) RR Chapter VII, Articles 51, 52’, RR Appendix 15. (574) (575) (576) (577) (578) RR Article 31 ICAO Annex 10, Volume V, Chapter 2 11. Fields G:682–G:686 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (682) RR Chapter VII, Articles 51, 52’, RR Appendix 15 (683) (684) (685) (686) 12. Fields G:777–G:781 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (777) RR Chapter VII, Articles 51, 52’, RR Appendix 15 (778) (779) (780) (781) Draft version! 13. Field G:851 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (851) RR Chapter VII, Articles 51, 52’, RR Appendix 15. 14. Field G:909 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (909) RR Chapter VII, Articles 51, 52’, RR Appendix 15 15. Field G:980 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (980) RR Chapter VII, Articles 51, 52’, RR Appendix 15 16. Lines 992–994 of the table in point 2 of Annex 2 to the Decree are replaced by the following lines: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 992 3 K Non-specific applications in the 26 957–27 283 kHz band Annex 3, point 9.2.1 993 3 K Railway applications in the 27 090–27 100 kHz band Annex 3, point 9.5.2 994 3 K Model control applications in the 26 990–27 000 kHz, Annex 3, point 9.9.1 27 040–27 050 kHz, 27 090–27 100 kHz, 27 14027 150 kHz and 27 190–27 200 kHz bands 17. Line 1003 of the table in point 2 of Annex 2 to the Decree is replaced by the following line: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1003 3 K Inductive applications Annex 3, point 9.10.1 18. Field H:1040 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (H) (Additional rules) (1040) Annex 3, point 9.2.1 Draft version! 19. Fields G:1093–G:1094 of the table in point 2 of Annex 2 to the Decree are replaced by the following field: (G) (Document) (1093) ICAO Annex 10: (1094) Volume III, Part II, Chapter 2, points 2.1, 2.2, 2.3, Chapter 5 Volume V, Annex A for receivers: Volume III, Part II, point 2.3 Volume III, Part II, Annex A, point 1.3 for transfer of data: Volume III, Part I, Chapter 6 Volume III, Part I, Annex B MSZ EN 303 084 20. Field G:1110 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (1110) (EU) 1079/2012, (EU) 657/2013 ICAO Annex 10: Volume III, Part II, Chapter 2, points 2.1, 2.2, 2.3, Chapter 5 Volume V, Chapter 4, point 4.1, Chapter 4, Appendix Volume V, Annex A for receivers: Volume III, Part II, point 2.3 Volume III, Part II, Annex A, point 1.3 for transfer of data: Volume III, Part I, Chapter 6 Volume III, Part I, Annex B MSZ EN 300 676-2, MSZ EN 301 841-3 MSZ EN 301 842-5 21. The following line 1132/A is added to the table in point 2 of Annex 2 to the Decree: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1132/A 3 K Non-specific applications in the 138.2–138.45 MHz band Annex 3, point 9.2.2 22. Fields G:1143–G:1145 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (1143) (1144) (1145) MSZ EN 302 561 Draft version! 23. Line 1148 of the table in point 2 of Annex 2 to the Decree is replaced by the following line: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1148 3 K Radio determination applications Annex 3, point 9.7.2 24. Line 1163 of the table in point 2 of Annex 2 to the Decree is replaced by the following line: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1163 3 K Radio determination applications Annex 3, point 9.7.2 25. Field G:1181 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (1181) MSZ EN 302 561 26. Fields G:1250–H:1250 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (1250) RR 15, 18 Appendix Annex 3, point 4.6. 2000/637/EC As of 1 January 2023, out of the channels listed in the ECC/DEC/(19)03 table in point 4.6.1 of Annex 3 the following shall not RAINWAT, Regional Arrangement be used for analogue voice transmission by mobile Concerning the Radiotelephone Service on service stations on inland waterways: both Inland Waterways frequencies of the 157.2/161.8 MHz, MSZ EN 300 698, MSZ EN 301 178 157.225/161.825 MHz, 157.25/161.85 MHz, MSZ EN 301 929 157.275/161.875 MHz, 157.3/161.9 MHz, 157.325/161.925 MHz, and the frequencies in the upper bands of the 157.35/161.95 MHz and 157.4/162 MHz duplex channels. 27. Fields G:1253–G:1262 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (1253) (1254) (1255) (1256) (1257) MSZ EN 302 561 (1258) (1259) (1260) (1261) Draft version! (1262) 28. Line 1298 of the table in point 2 of Annex 2 to the Decree is replaced by the following line: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1298 3 K Radio microphone applications and wireless audio and Annex 3, point 9.11.1 multimedia streaming applications in the 174216 MHz band. 29. Line 1305 of the table in point 2 of Annex 2 to the Decree is replaced by the following line: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1305 3 K Radio determination applications Annex 3, point 9.7.2 30. Field G:1382 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (1382) MSZ EN 302 152-1 31. Field G:1398 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (1398) ECC/DEC/(16)02 32. Field G:1412 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (1412) ECC/DEC/(16)02 33. The following line 1426/A is added to the table in point 2 of Annex 2 to the Decree: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1426/A 3 K Tracing, seeking and data gathering applications Annex 3, point 9.3.1 Draft version! 34. Line 1435 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following line 1435/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1435 3 K Non-specific applications in the 433.05-434.79 MHz band Annex 3, point 9.2.1 1435/A 3 K Tracing, seeking and data gathering applications Annex 3, point 9.3.1 35. The following line 1443/A is added to the table in point 2 of Annex 2 to the Decree: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1443/A 3 K Tracing, seeking and data gathering applications Annex 3, point 9.3.1 36. Field G:1457 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (1457) T/R 25-08 MSZ EN 300 086, MSZ EN 300 113 MSZ EN 300 219, MSZ EN 300 296 MSZ EN 300 341, MSZ EN 300 390 MSZ EN 302 561 37. Fields G:1472–H:1472 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (1472) 2006/771/EC, (EU) 2019/1345 Annex 3, point 4.9.2 ECC/DEC/(15)05 Power: max. 500 mW ERP MSZ EN 303 405 Analogue angle modulation and digital modulation Techniques to access the spectrum and mitigate interference, that provide an appropriate level of performance to comply with the essential requirements, shall be used. If relevant techniques are described in harmonised standards or parts thereof the references of which have been published in the Official Journal of the European Union under Directive 2014/53/EU, performance at least equivalent to these techniques shall be ensured. Only handheld equipment shall be used. The use of base stations, repeater stations or fixed infrastructure shall not be allowed. Only integral antennas shall be used. Exempt from individual permit obligation. Draft version! 38. Fields G:1477–G:1478 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (Document) (1477) T/R 25-08 MSZ EN 300 086, MSZ EN 300 113 MSZ EN 300 219, MSZ EN 300 296 MSZ EN 300 341, MSZ EN 300 390 (1478) T/R 25-08 MSZ EN 300 086, MSZ EN 300 113 MSZ EN 300 219, MSZ EN 300 296 MSZ EN 300 341, MSZ EN 300 390 MSZ EN 302 561 39. Lines 1482 and 1483 of the table in point 2 of Annex 2 to the Decree are replaced by the following lines: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1482 FIXED P 1 K Wideband digital cell system in the ECC/DEC/(19)02 Annex 3, point 3.2 1483 LAND MOBILE 5.286AA 450457.38/460467.38 MHz band T/R 25-08 Annex 3, point 3.13 Annex 4 User terminals operating exclusively under network control shall be exempt from individual permit obligation. 40. Lines 1496 and 1497 of the table in point 2 of Annex 2 to the Decree are replaced by the following lines: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1496 FIXED P 1 K Wideband digital cell system in the ECC/DEC/(19)02 Annex 3, point 3.2 1497 LAND MOBILE 5.286AA 450457.38/460467.38 MHz band T/R 25-08 Annex 3, point 3.13 Annex 4 User terminals operating exclusively under network control shall be exempt from individual permit obligation. Draft version! 41. Lines 1566–1570 of the table in point 2 of Annex 2 to the Decree are replaced by the following lines, and the following lines 1570/A–1570/D are added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1566 FIXED P 1 K Terrestrial systems capable of providing wireless broadband 2010/267/EU Annex 3, point 3.2b electronic communications services ECC/DEC/(09)03, ECC/DEC/(12)01 Annex 3, point 3.3 Annex 3, point 3.13 Annex 4 User terminals shall be exempt from individual permit obligations. 1567 MOBILE, except aeronautical mobile 5.316B 1568 5.317 A 1 K IMT 1569 1 K UMTS MSZ EN 301 908-1, MSZ EN 301 908-2 MSZ EN 301 908-3, MSZ EN 301 908-11 MSZ EN 301 908-18 1570 1 K LTE MSZ EN 301 908-1, MSZ EN 301 908-13 1570/A 1 K LTE-MTC MSZ EN 301 908-14, MSZ EN 301 908-15 1570/B 1 K LTE-eMTC MSZ EN 301 908-18 1570/C 1 K NB-IoT 1570/D 1 K NR 42. Fields D:1595–G:1600 of the table in point 2 of Annex 2 of the Decree are replaced by the following fields: (D) (E) (F) (G) (Use) (Document) (1595) 1 T Wideband digital PMR/PAMR systems in the 873876/918921 MHz band (1596) 1 T GSM-R (1597) SRD (1598) 3 K Non-specific applications in the 873-874.4 MHz band (1599) 3 K Tracing, seeking and data gathering applications in the 873–874.4 MHz band (1600) 3 K Radio determination applications 43. Lines 1624/A and 1624/B of the table in point 2 of Annex 2 of the Decree are replaced by the following lines: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 1624/A 3 K Tracing, seeking and data gathering applications Annex 3, point 9.3.1 Annex 3, point 9.3.2 1624/B 3 K Wideband data transmission applications in the 915.8– Annex 3, point 9.4.1 918 MHz band Annex 3, point 9.4.2 Draft version! 44. Fields G:1628–G:1629 of the table in point 2 of Annex 2 to the Decree are replaced by the following field: (G) (Document) (1628) (1629) 45. The following line 2324/A is added to the table in point 2 of Annex 2 to the Decree: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2324/A 3 K Tracing, seeking and data gathering applications Annex 3, point 9.3.2 46. The following lines 2335/A and 2335/B are added to the table in point 2 of Annex 2 to the Decree: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2335/A 3 K Tracing, seeking and data gathering applications in the Annex 3, point 9.3.2 5 850–5 875 MHz band 2335/B 3 K TTT applications in the 5 855–5 875 MHz band Annex 3, point 9.6.1 47. Field G:2394 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (2394) ERC/REC 25-10 ECC/REC/(02)06, recommendation point 1 ETSI EN 302 064-2, MSZ EN 302 064 MSZ EN 302 217-4 48. Field G:2401 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (2401) ERC/REC 25-10 ECC/REC/(02)06, recommendation point 1 ETSI EN 302 064-2, MSZ EN 302 064 MSZ EN 302 217-4 Draft version! 49. Fields G:2542–H:2543 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (2542) ERC/REC 12-05, recommendation point 4 Annex 3, point 2.5. ERC/REC 25-10 Annex 4 ETSI EN 302 064-2, MSZ EN 302 064 Channel formation for analogue systems: Pursuant to MSZ EN 302 217-4 Annex 3, point 2.7 Channel formation for digital systems: Pursuant to Annex A of Recommendation ECC/REC 12-05 Channels of 1.75 MHz may be formed with the division of channels of 3.5 MHz. (2543) ERC/REC 25-10 Annex 3, point 2.7. ERC Report 38 ETSI EN 302 064-2, MSZ EN 302 064 50. Line 2547 of the table in point 2 of Annex 2 to the Decree is replaced by the following line: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2547 3 K Radio determination applications Annex 3, point 9.7.1 Annex 3, point 9.7.2 51. Fields G:2550–H:2551 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (2550) ERC/REC 12-05, recommendation point 4 Annex 3, point 2.5. ERC/REC 25-10 Annex 4 ETSI EN 302 064-2, MSZ EN 302 064 Channel formation for analogue systems: Pursuant to MSZ EN 302 217-4 Annex 3, point 2.7 Channel formation for digital systems: Pursuant to Annex A of Recommendation ECC/REC 12-05 Channels of 1.75 MHz may be formed with the division of channels of 3.5 MHz. The right to use a frequency may be obtained after the harmonisation of civil and non-civil frequency management considerations. Analogue systems which operate on a band centre frequency different from those specified in point 2.7 of Annex 3 and which have a valid licence as of 5 March 2016 may be operated until 31 December 2025 at the latest. (2551) ERC/REC 25-10 Annex 3, point 2.7 ERC Report 38 The right to use a frequency may be obtained after the ETSI EN 302 064-2, MSZ EN 302 064 harmonisation of civil and non-civil frequency management considerations. Draft version! 52. Line 2558 of the table in point 2 of Annex 2 to the Decree is replaced by the following line: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2558 3 K Radio determination applications Annex 3, point 9.7.1 Annex 3, point 9.7.2 53. Fields G:2561–H:2563 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (2561) ERC/REC 12-05, recommendation point 4 Annex 3, point 2.5. ERC/REC 25-10 Annex 4 ETSI EN 302 064-2, MSZ EN 302 064 Channel formation for analogue systems: Pursuant to MSZ EN 302 217-4 point 2.7 of Annex 3 Channel formation for digital systems: Pursuant to Annex A of Recommendation ECC/REC 12-05 Channels of 1.75 MHz may be formed with the division of channels of 3.5 MHz. Analogue systems which operate on a band centre frequency different from those specified in point 2.7 of Annex 3 and which have a valid licence as of 5 March 2016 may be operated until 31 December 2025 at the latest. (2562) ERC/REC 25-10 Annex 3, point 2.7. ERC Report 38 ETSI EN 302 064-2, MSZ EN 302 064 (2563) 54. Fields G:2568–H:2569 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (2568) ERC/REC 12-05, recommendation point 4 Annex 3, point 2.5. ERC/REC 25-10 Annex 4 ETSI EN 302 064-2, MSZ EN 302 064 Channel formation for analogue systems: Pursuant to MSZ EN 302 217-4 point 2.7 of Annex 3 Channel formation for digital systems: Pursuant to Annex A of Recommendation ECC/REC 12-05 Channels of 1.75 MHz may be formed with the division of channels of 3.5 MHz. The elevation angle of the radiation axis of the station: max. 20° Analogue systems which operate on a band centre frequency different from those specified in point 2.7 of Annex 3 and which have a valid licence as of 5 March 2016 may be operated until 31 December 2025 at the latest. (2569) ERC/REC 25-10 Annex 3, point 2.7. ERC Report 38 Maximum power supplied to the antenna: max. 3 dBW ETSI EN 302 064-2, MSZ EN 302 064 Draft version! 55. Fields G:2582–H:2582 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (2582) ITU-R F.387-13, recommendation points 1.1 Annex 3, point 2.5 and 1.3, F.1191-3 Annex 3, point 2.9 ERC/DEC/(00)08 Annex 4 ERC/REC 12-06, recommendation points 1 Systems operating as per the channel arrangement and 3, Annex 1, point 1 specified in recommendation points 1.1 and 1.3 of MSZ EN 301 751, MSZ EN 302 217-2 Recommendation ITU-R F.387-13 may be operated until 31 December 2022. 56. Lines 2589 and 2590 of the table in point 2 of Annex 2 of the Decree is replaced by the following line, and the following line 2590/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2589 1 K HEST ECC/DEC/(06)03 MSZ EN 301 360, MSZ EN 301 428 MSZ EN 301 459 2590 1 K ROES ERC/DEC/(99)26 MSZ EN 303 372-1, MSZ EN 303 372-2 2590/A 1 K Land-based ESIM ECC/DEC/(18)04 MSZ EN 302 448, MSZ EN 302 977 57. Line 2606 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following line 2606/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2606 1 K ROES ERC/DEC/(99)26 MSZ EN 303 372-1, MSZ EN 303 372-2 2606/A 1 K Land-based ESIM ECC/DEC/(18)04 MSZ EN 302 448, MSZ EN 302 977 58. Line 2621 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following line 2621/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2621 1 K ROES ERC/DEC/(99)26 MSZ EN 303 372-1, MSZ EN 303 372-2 2621/A 1 K Land-based ESIM ECC/DEC/(18)04 MSZ EN 302 448, MSZ EN 302 977 Draft version! 59. Line 2672 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following line 2672/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on frequency band use) (National allocation) (Use) (Document) (Additional rules) 2672 1 K HEST ECC/DEC/(06)03 MSZ EN 301 428 2672/A 1 K Land-based ESIM ECC/DEC/(18)04 MSZ EN 302 448, MSZ EN 302 977 60. Lines 2683 and 2684 of the table in point 2 of Annex 2 of the Decree is replaced by the following line, and the following line 2684/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 2683 1 K Non-coordinated earth stations Annex 3, point 6.1 2684 1 K Non-coordinated VSAT ECC/DEC/(03)04 Exempt from individual permit obligation. MSZ EN 301 428 2684/A 1 K Land-based ESIM ECC/DEC/(18)04 MSZ EN 302 448, MSZ EN 302 977 61. Lines 2695 and 2696 of the table in point 2 of Annex 2 of the Decree is replaced by the following line, and the following line 2696/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 2695 1 K Non-coordinated earth stations Annex 3, point 6.1 2696 1 K Non-coordinated VSAT ECC/DEC/(03)04 Exempt from individual permit obligation. MSZ EN 301 428 2696/A 1 K Land-based ESIM ECC/DEC/(18)04 MSZ EN 302 448, MSZ EN 302 977 62. Lines 2706 and 2707 of the table in point 2 of Annex 2 of the Decree is replaced by the following line, and the following line 2707/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 2706 1 K Non-coordinated earth stations Annex 3, point 6.1 2707 1 K Non-coordinated VSAT ECC/DEC/(03)04 Exempt from individual permit obligation. MSZ EN 301 428 2707/A 1 K Land-based ESIM ECC/DEC/(18)04 MSZ EN 302 448, MSZ EN 302 977 Draft version! 63. Fields G:2874–H:2875 of the table in point 2 of Annex 2 of the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (2874) ERC/REC 25-10 Annex 3, point 2.5 ETSI EN 302 064-2, MSZ EN 302 064 Annex 3, point 2.7. MSZ EN 302 217-4 Annex 4 (2875) ERC/REC 25-10 Annex 3, point 2.7. ERC Report 38 ETSI EN 302 064-2, MSZ EN 302 064 64. Fields G:2900–H:2903 of the table in point 2 of Annex 2 of the Decree are replaced by the following fields: (G) (H) (Document) (Additional rules) (2900) ERC/REC 25-10 Annex 3, point 2.5 ETSI EN 302 064-2, MSZ EN 302 064 Annex 4 MSZ EN 302 217-4 (2901) Annex 3, point 2.7 (2902) T/R 13-02, recommendation points 1.2 and 1.3 (2903) ERC/REC 25-10 Annex 3, point 2.7 ERC Report 38 ETSI EN 302 064-2, MSZ EN 302 064 65. Field G:2941 of the table in point 2 of Annex 2 to the Decree is replaced by the following field: (G) (Document) (2941) ERC/REC 25-10 ETSI EN 302 064-2, MSZ EN 302 064 MSZ EN 302 217-4 66. Line 3075 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following lines 3075/A and 3075/B are added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 3075 FIXED 5.547 P 1 K Fixed digital point-to-point systems in the band 32 GHz ITU-R F.1191-3 Annex 3, point 2.5 5.547 A ERC/REC/(01) 02 Annex 3, point 2.13 MSZ EN 302 217-2 Annex 3, point 3.13 Annex 4 3075/A 1 K Digital point-to-multipoint systems in the 32 GHz band ERC/REC/(01)02, ECC/REC/(11)01 Annex 3, point 2.13 MSZ EN 302 326-2, MSZ EN 302 326-3 Annex 3, point 3.13 Annex 4 User stations shall be exempt from individual permit obligation. 3075/B 1 K FWA Draft version! 67. Line 3079 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following lines 3079/A and 3079/B are added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 3079 FIXED 5.547 P 1 K Fixed digital point-to-point systems in the band 32 GHz ITU-R F.1191-3 Annex 3, point 2.5 5.547 A ERC/REC /(01) 02 Annex 3, point 2.13 MSZ EN 302 217-2 Annex 3, point 3.13 Annex 4 3079/A 1 K Digital point-to-multipoint systems in the 32 GHz band ERC/REC/(01)02, ECC/REC/(11)01 Annex 3, point 2.13 MSZ EN 302 326-2, MSZ EN 302 326-3 Annex 3, point 3.13 Annex 4 User stations shall be exempt from individual permit obligation. 3079/B 1 K FWA 68. Line 3232 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following line 3232/A is added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 3232 3 K Wideband data transmission applications Annex 3, point 9.4.1 Electronic communications services may be provided in the band. 3232/A 3 K TTT in the 6465.88 GHz band Annex 3, point 9.6.1 69. Line 3237 of the table in point 2 of Annex 2 to the Decree is replaced by the following line, and the following lines 3237/A and 3237/B are added to the table: (A) (B) (C) (D) (E) (F) (G) (H) (Rules on the use of frequency bands) (National allocation) (Use) (Document) (Additional rules) 3237 SATELLITE RADIO NAVIGATION 5.554 P 3237/A PN SRD Annex 3, point 9.1 3237/B 3 K Wideband data transmission applications Annex 3, point 9.4.1 Electronic communications services may be provided in the band. 70. Fields A:3427–C:3428 of the table in point 2 of Annex 2 to the Decree are replaced by the following fields: (A) (B) (C) (National allocation) (3427) FIXED 5.149 E (3428) MOBILE 5.149 E Draft version! Annex 2 to Decree No.…/2020 of … … of the National Media and Infocommunications Authority 1. The following lines 87/A–87/F are added to the table in point 2.5 of Annex 3 of the Decree: (A) (B) (C) (D) (E) (F) (G) (H) (Maximum power (Minimum (Channel (Minimum (Duplex (Frequency band or power density antenna (Maximum EIRP or EIRP density Section (Use) spacing capacity spacing [GHz]) supplied to the gain distance (L) [km]) [MHz]) [Mbit/s]) [MHz]) antenna) [dBi]) 87/A 3.5 2 87/B 7 8 87/C Fixed digital point-to-point systems in 14 16 50 dBW, if L  5 31.8–33.4 812 0 dBW 30 87/D the 32 GHz band 28 34 50 – 20lg(5/L) dBW, if L < 5 87/E 56 140 87/F 112 2. Point 2.7 of Annex 3 to the Decree is replaced by the following point: ‘2.7. Channel use requirements for analogue transmission systems for radio and television news and radio and television programmes in the bands 7 GHz, 10 GHz and 22 GHz 2.7.1. The channel spacing for television transmission shall be 28 MHz. 2.7.2. In the 7 GHz and 10 GHz bands, television transmission channels may be used unidirectionally or bidirectionally (in simplex and duplex mode). 2.7.2.1. In the 7 GHz band, the reference mark and band centre frequency of the television transmission channels shall be as follows: A B Band centre frequency 1 Reference mark [MHz] 2 T01 7 743 3 T02 7 771 4 T03 7 799 5 T04 7 827 6 T05 7 855 7 T06 7 883 Draft version! 2.7.2.2. In the 10 GHz band, the reference mark and band centre frequency of the television transmission channels shall be as follows: A B C D Band centre frequency Band centre frequency 1 Reference mark Reference mark [MHz] [MHz] 2 T01 10 028 T12 10 336 3 T02 10 056 T13 10 364 4 T03 10 084 T14 10 392 5 T04 10 112 T15 10 420 6 T05 10 140 T16 10 448 7 T06 10 168 T17 10 476 8 T07 10 196 T18 10 518 9 T08 10 224 T19 10 546 10 T09 10 252 T20 10 574 11 T10 10 280 T21 10 602 12 T11 10 308 T22 10 630 13 T23 10 658 2.7.3. In the 22 GHz band, the reference mark and band centre frequency of the television transmission channels shall be as follows: 2.7.3.1. Channels that may be used only unidirectionally (in simplex mode): A B Band centre frequency 1 Reference mark [MHz] 2 T01 21 217 3 T02 21 245 4 T03 21 273 5 T04 21 301 6 T05 21 329 7 T06 21 357 8 T07 21 385 2.7.3.2. Channels that may be used unidirectionally or bidirectionally (in simplex and duplex mode): A B C D Band centre frequency Band centre frequency 1 Reference mark Reference mark [MHz] [MHz] 2 T11 22 617 T21 22 813 3 T12 22 645 T22 22 841 4 T13 22 673 T23 22 869 5 T14 22 701 T24 22 897 6 T15 22 729 T25 22 925 7 T16 22 757 T26 22 953 8 T17 22 785 T27 22 981 Draft version! 2.7.3.3. In the case of bidirectional use, the channels shall be arranged into duplex pairs as follows: (T11)/(T21), (T12)/(T22), …, (T17)/(T27). 2.7.4. The channel spacing for radio transmission shall be 1.75 MHz. Within the 28 MHz bandwidth of one television transmission channel, 16 radio transmission channels may be placed. The reference marks of the radio transmission channels shall be as follows: (TxxR01), (TxxR02), …, (TxxR16), where Txx is the reference mark of the 28 MHz channel to be divided. Txx = T01, T02, ... For example: T05R09 marks radio transmission channel 9 within television transmission channel T05.’ 3. Field B:2 of the table in point 2.11.5 of Annex R.3 is replaced by the following field: (B) (Regulation) (2) For point-to-point systems: FDD For point-to-multipoint systems: FDD or TDD 4. Point 2.11.12 of Annex 3 to the Decree is replaced by the following point: ‘2.11.12. The management of adjacent block interference 2.11.12.1. For the assessment of adjacent block interference, stations shall be categorised as Priority A, B or C stations. A B C 1 Stations of point-to-point Bandwidth of systems, central stations and User stations of point-to-multipoint equipment (B) 2 repeater stations of point-to- systems [MHz] multipoint systems 3 B ≤ 28 Category A Category C 4 B > 28 Category B Category A stations shall have a higher priority than stations of other categories do. Of two Category A stations, higher priority shall be given to the one for which the notification of operation is of an earlier date. Category B stations shall have lower priority than Category A stations, but shall have higher priority than Category C stations. Of two Category B stations, higher priority shall be given to the one for which the notification of operation is of an earlier date. Category C stations shall have lower priority than Category A stations or Category B stations. A Category C station shall not be entitled to protection against adjacent block interference. The bandwidth (B) specified in the table shall derive from the nominal bandwidth (Bnom), the transmitter bandwidth (BTx) and the receiver bandwidth (BRx) of the device. Its value shall equal to the highest value of the bandwidths below: B = max (Bnom, BTx, BRx). When the values of the transmitter bandwidth (BTx) or the receiver bandwidth (BRx) are unknown or unavailable, the bandwidth (B) specified in the table shall be calculated as follows: B = 1.6∙Bnom 2.11.12.2. In the case of adjacent block interference between two stations, the operator of the lower-priority station shall have the obligation to act to eliminate the interference (or, for receiver stations, shall have the obligation to tolerate).’ Draft version! 5. The following point 2.13 is added to Annex 3 to the Decree: ‘2.13. Fixed digital point-to-point systems and digital point-to-multipoint systems in the 32 GHz band 2.13.1. Dividing the bands into sub-bands: A B 1 Sub-band [MHz] Name of the sub-band 2 31 800–31 871 lower guard band 3 31 871–32 543 Lower block band 4 32 543–32 683 Middle guard band 5 32 683–33 355 Upper block band 6 33 355–33 400 Upper guard band Guard bands shall not be divided. 2.13.2. Subdivision of the lower and upper block bands: A B C 1 Basic block Lower block band [MHz] Upper block band [MHz] 2 1 31 871–31 899 32 683–32 711 3 2 31 899–31 927 32 711–32 739 4 3 31 927–31 955 32 739–32 767 5 4 31 955–31 983 32 767–32 795 6 5 31 983–32 011 32 795–32 823 7 6 32 011–32 039 32 823–32 851 8 7 32 039–32 067 32 851–32 879 9 8 32 067–32 095 32 879–32 907 10 9 32 095–32 123 32 907-32 935 11 10 32 123–32 151 32 935–32 963 12 11 32 151–32 179 32 963–32 991 13 12 32 179–32 207 32 991–33 019 14 13 32 207–32 235 33 019–33 047 15 14 32 235–32 263 33 047–33 075 16 15 32 263–32 291 33 075–33 103 17 16 32 291–32 319 33 103–33 131 18 17 32 319–32 347 33 131–33 159 19 18 32 347–32 375 33 159–33 187 20 19 32 375–32 403 33 187–33 215 21 20 32 403–32 431 33 215–33 243 22 21 32 431–32 459 33 243–33 271 23 22 32 459–32 487 33 271–33 299 24 23 32 487–32 515 33 299–33 327 Draft version! A B C 1 Basic block Lower block band [MHz] Upper block band [MHz] 25 24 32 515–32 543 33 327–33 355 2.13.3. A user block shall consist of an integer number of basic blocks. 2.13.4. Conditions for obtaining the right to use a frequency and a band: A B 1 Subject to the condition Regulation 2 Purpose of use provision of electronic communications services, electronic communications operation 3 Method of frequency allocation tender procedure 4 Territorial extent of the right to use a frequency national 5 Management mode block management 2.13.5. Frequency management requirements A B 1 Subject to the requirement Regulation 2 Access mode For point-to-point systems: FDD For point-to-multipoint systems: FDD or TDD 3 Duplex spacing for FDD: 812 MHz 4 Compatibility of FDD and TDD systems the consent of the rights holder of the adjacent user block of the same frequency shall also be required for commissioning the TDD central stations and repeater stations of point-to-multipoint systems, when within 500 metres of such central stations and repeater stations there is another existing central station or repeater station that operates in the adjacent user block; the newly installed TDD station shall not apply for protection against interference from central stations or repeater stations previously installed within 500 metres from the newly installed TDD station and operating in the adjacent frequency block [pursuant to recommendation point 6 of ECC/REC/(11)01] 5 the consent of the rights holder of the adjacent user block of the same frequency shall also be required for commissioning the central stations and repeater stations of point-to-multipoint systems, when within 500 metres of such central stations and repeater stations there is another existing TDD central station or repeater station that operates in the adjacent user block; the newly installed station shall not apply for protection against interference from central stations or repeater stations previously installed within 500 metres from the newly installed TDD station and operating in the adjacent user block [pursuant to recommendation point 6 of ECC/REC/(11)01] 2.13.6. The individual user blocks shall be separated by a 28 MHz gap band. Draft version! 2.13.7. For point-to-multipoint systems and for FDD access mode, the frequency bands of transmission signal paths shall be as follows: A B 1 Signal path Block band 2 user station – central station 3 user station – repeater station upper 4 repeater station – central station 5 central station – user station 6 central station – repeater station lower 7 repeater station – user station 2.13.8. Maximum power supplied to the antenna: A B Maximum power 1 Station supplied to the antenna [dBW] 2 station of a point-to-point system 0 3 station of a point-to-multipoint system 10 2.13.9. Maximum allowed EIRP density for stations of point-to-multipoint systems A B Maximum EIRP density 1 Station [dBW/MHz] 2 central station 23 3 for connections of repeater stations toward user stations 4 indoor user station 12 5 outdoor user station 20 6 for connections of repeater stations toward central stations For the values of the maximum EIRP density, tolerances and, if any, the ATCP range shall be taken into consideration. EIRP densities exceeding the above limits may be allowed only if a method to mitigate interference is used that provides a level of protection at least equal to that of the protection resulting from the above limits. 2.13.10. In the absence of a mutual agreement, the frequency use right holders of adjacent frequency user blocks shall not object to mutual interference up to a 2 dB fading reserve decrease of the receivers of the systems. Derogations may be granted on the basis of a mutual agreement. Draft version! 2.13.11. Management of adjacent block interference 2.13.11.1. For the assessment of adjacent block interference, stations shall be categorised as Priority A, B or C stations. A B C 1 Stations of point-to-point Bandwidth of systems, central stations and User stations of point-to-multipoint equipment (B) 2 repeater stations of point-to- systems [MHz] multipoint systems 3 B ≤ 28 Category A Category C 4 B > 28 Category B Category A stations shall have higher priority than stations of other categories. Of two Category A stations, higher priority shall be given to the one whose notification of operation is of an earlier date. Category B stations shall have lower priority than Category A stations, but shall have higher priority than Category C stations. Of two Category B stations, higher priority shall be given to the one whose notification of operation is of an earlier date. Category C stations shall have lower priority than Category A or Category B stations. A Category C station shall not be entitled to protection against adjacent block interference. The bandwidth (B) specified in the table shall derive from the nominal bandwidth (Bnom), the transmitter bandwidth (BTx) and the receiver bandwidth (BRx) of the device. Its value shall be equal to the highest value of the bandwidths below: B = max (Bnom, BTx, BRx). When the values of the transmitter bandwidth (BTx) or the receiver bandwidth (BRx) are unknown or unavailable, the bandwidth (B) specified in the table shall be calculated as follows: B = 1.6∙Bnom 2.13.11.2. In the case of adjacent block interference between two stations, the operator of the lower-priority station shall be obligated to eliminate the interference (or, for receiver stations, shall be obligated to tolerate it). 6. Point 3.3.5 of Annex R.3 is replaced by the following point: ‘3.3.5. Frequency management requirements A B 1 Object of requirement Regulation 2 Duplex spacing 41 MHz 3 Access mode only FDD 4 Nominal channel spacing UMTS: 5 MHz 5 LTE: 5 MHz, 10 MHz, 15 MHz, 20 MHz 6 LTE-MTC, NB-IoT: 180 kHz 7 LTE-eMTC: minimum 180 kHz, maximum 1 080 kHz 8 NR: 5 MHz, 10 MHz, 15 MHz, 20 MHz 9 Application mode of IoT systems LTE-MTC, LTE-eMTC: within the channel 10 NB-IoT: within the channel, in a guard band ‘ Draft version! 7. The following point 3.10.1 a is added to Annex 3 of the Decree: ‘3.10.1 a A user block shall consist of an integer number of basic blocks.’ 8. Point 3.12.7.4 of Annex 3 of the Decree is replaced by the following point: ‘3.12.7.4. Requirement for transitional regions: A B C Frequency offset from the relevant user block edge and Maximum EIRP density for stations of non- Maximum TRP density for stations of active 1 from the 3 800 MHz band edge [MHz] active antenna systems [dBm/5 MHz/antenna] antenna systems [dBm/5 MHz/cell] 2 0 < |ΔF| ≤ 5 Min {Pmax – 40; 21} Min {Pmax – 40; 16} 3 5 < |ΔF| ≤ 10 Min {Pmax – 43; 15} Min {Pmax – 43; 12} ‘ 9. Point 4.6.2 of Annex 3 of the Decree is replaced by the following point: ‘4.6.2. Further rules on mobile systems on inland waterways 4.6.2.1. A certificate of handling an inland waterways radiotelephone shall be required. 4.6.2.2. The use of DSC shall not be allowed. 4.6.2.3. The use of handheld radio telephones shall be allowed only on board. 4.6.2.4. In the frequency bands specified in the RAINWAT Agreement, the equipment shall be fitted with an ATIS pursuant to Annex B of standard MSZ EN 300 698. 4.6.2.5. The transmit power of the radio equipment on board, between vessels and with the coastal port surveillance shall not exceed 1 W.’ 10. Line 1 of the table in point 5.1 of Annex 3 of the Decree is replaced by the following line: (A) (B) (C) (D) 1 Frequency band Maximum average EIRP Maximum average EIRP density Additional requirement Draft version! 11. Point 6.1 of Annex 3 to the Decree is replaced by the following point: ‘6.1. General requirements for satellite fixed systems A B 1 Use Requirement 2 Coordinated earth stations (space-to-Earth) The station shall not be entitled to protection against the stations of other applications of a similar nature which 3 VSAT in the 3 400–4 200 MHz band operate in the band. The frequency assignment shall not require the submission of a technical design. 4 Coordinated earth stations (Earth-to-space) At airports, radio licences shall be conditional upon – besides successful coordination – the approval of the aviation 5 VSAT authority. 6 VSAT in the 5 725–7 075 MHz band The station shall not cause harmful interference with the stations of other applications of a similar nature which are operating in the band. The submission of a technical design shall not be required. 7 Non-coordinated earth stations (space-to-Earth) The station shall not be entitled to protection against other stations that operate in the same band. 8 VSAT, HEST, LEST, SNG, HDFSS, ESOMP, land-based ESIM 9 Non-coordinated earth stations (Earth-to-space) At airports, the installation and operation of the station shall be conditional on the approval of the aviation authority. 10 VSAT, HEST, LEST, SNG, HDFSS, ESOMP, land-based ESOMP may also be used within GSO and NGSO networks. ESOMPs and land-based ESIMs, and satellite networks ESIM containing them shall be operated under the control of the NCF. ESOMP shall not be used on inland waterways. The station shall not cause harmful interference with the stations that operate in the same band. 11 ROES The station shall not be entitled to protection against other stations that operate in the same band. ’ 12. Points 9.1.5 and 9.1.5 a of Annex 3 of the Decree are replaced by the following points, and the following points 9.1.5b and 9.1.5c are added to the Annex: ‘9.1.5. In columns D and E of the tables of applications of harmonised frequency use, the sentence ‘Techniques to mitigate interference shall be used’ shall be interpreted as the mandatory application of techniques to access the spectrum and mitigate interference that provide an appropriate level of performance to comply with the essential requirements. If relevant techniques are described in harmonised standards or parts thereof and their references have been published in the Official Journal of the European Union under Directive 2014/53/EU, performance at least equivalent to these techniques shall be ensured. 9.1.5 a In column E of the tables of applications of harmonised frequency use, the sentence ‘Antenna requirements shall apply’ shall be interpreted as the mandatory application of antenna requirements that provide an appropriate level of performance to comply with the essential requirements. If relevant techniques are described in harmonised standards or parts thereof and their references have been published in the Official Journal of the European Union under Directive 2014/53/EU, performance at least equivalent to these techniques shall be ensured. 9.1.5b In column E of the tables of applications of harmonised frequency use, the sentence ‘ATPC shall be used’ shall be interpreted as the mandatory application of an ATPC that provides an appropriate level of performance to comply with the essential requirements. If relevant techniques are described in harmonised standards or parts thereof and their references have been published in the Official Journal of the European Union under Directive 2014/53/EU, performance at least equivalent to these techniques shall be ensured. Draft version! 9.1.5c In columns E of the tables of applications of harmonised frequency use, the sentence ‘Transmission mask requirements shall apply’ shall be interpreted as the mandatory application of transmission masks that provide an appropriate level of performance to comply with the essential requirements. If relevant techniques are described in harmonised standards or parts thereof and their references have been published in the Official Journal of the European Union under Directive 2014/53/EU, performance at least equivalent to these techniques shall be ensured.’ 13. Point 9.2 of Annex 3 of the Decree is replaced by the following point: ‘9.2. Non-specific applications 9.2.1. Non-specific applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 13 553–13 567 kHz Non-specific applications 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP MSZ EN 300 330 3 26 957–27 283 kHz 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP ETSI EN 300 220-2 MSZ EN 300 220-2 MSZ EN 300 330 4 26 990–27 000 kHz 2006/771/EC, (EU) 2019/1345 Power: max. 100 mW ERP 27 040–27 050 kHz ETSI EN 300 220-2 Duty cycle:  0.1% 27 090–27 100 kHz MSZ EN 300 220-2 27 140–27 150 kHz 27 190–27 200 kHz 5 40.66–40.7 MHz Power: max. 10 mW ERP 6 169.4–169.475 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 500 mW ERP ECC/DEC/(05)02 Duty cycle:  1% ETSI EN 300 220-2 Channel spacing: max. 50 kHz MSZ EN 300 220-2 MSZ EN 303 406 7 169.4–169.4875 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP ECC/DEC/(05)02 Duty cycle:  0.1% 8 169.4875–169.5875 MHz ETSI EN 300 220-2 Power: max. 10 mW ERP MSZ EN 300 220-2 Duty cycle:  0.001%, between 00:00 and 6:00 local time a duty cycle limit of 0.1% may be used. 9 169.5875–169.8125 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP ECC/DEC/(05)02 Duty cycle:  0.1% ETSI EN 300 220-2 MSZ EN 300 220-2 MSZ EN 303 406 Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 10 433.05–434.79 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 1 mW ERP Voice applications shall be allowed ETSI EN 300 220-2 Power density: with advanced mitigation MSZ EN 300 220-2 max. –13 dBm/10 kHz techniques. for bandwidth modulation larger Other audio and video applications than 250 kHz shall be excluded. 11 Power: max. 10 mW ERP Duty cycle:  10% 12 434.04–434.79 MHz Power: max. 10 mW ERP Voice applications shall be allowed Duty cycle:  100% with advanced mitigation max. For channel spacing of techniques. 25 kHz Other audio and video applications shall be excluded. 13 862–863 MHz Power: max. 25 mW ERP Duty cycle: ≤ 0.1% Channel spacing: ≤ 350 kHz 14 863–865 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 25 mW ERP ETSI EN 300 220-2 Techniques to mitigate interference MSZ EN 300 220-2 shall be used. Alternatively, a duty MSZ EN 303 406 cycle limit of 0.1% may also be used. 15 865–868 MHz Power: max. 25 mW ERP Techniques to mitigate interference shall be used. Alternatively, a duty cycle limit of 1% may also be used. 16 868–868.6 MHz Power: max. 25 mW ERP Techniques to mitigate interference shall be used. Alternatively, a duty cycle limit of 1% may also be used. 17 868.7–869.2 MHz Power: max. 25 mW ERP Techniques to mitigate interference shall be used. Alternatively, a duty cycle limit of 0.1% may also be used. 18 869.4–869.65 MHz Power: max. 500 mW ERP Techniques to mitigate interference shall be used. Alternatively, a duty cycle limit of 10% may also be used. Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 19 869.7–870 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 5 mW ERP Voice applications shall be allowed ETSI EN 300 220-2 with advanced mitigation MSZ EN 300 220-2 techniques. Other audio and video applications shall be excluded. 20 2006/771/EC, (EU) 2019/1345 Power: max. 25 mW ERP ETSI EN 300 220-2 Techniques to mitigate interference MSZ EN 300 220-2 shall be used. Alternatively, a duty MSZ EN 303 406 cycle limit of 1% may also be used. 21 2 400–2 483.5 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW EIRP ETSI EN 300 440 MSZ EN 300 440 ETSI EN 302 064-2 MSZ EN 302 064 22 3 100–4 800 MHz The conditions of frequency use shall be identical to those specified in point 10.2.2 for UWB applications. 23 5 725–5 875 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 25 mW EIRP ETSI EN 300 440 MSZ EN 300 440 ETSI EN 302 064-2 MSZ EN 302 064 Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 24 6 000–8 500 MHz Non-specific on board aircraft The conditions of frequency use are applications identical to those specified in point 10.2.5 for UWB applications. 25 6 000–9 000 MHz Non-specific applications The conditions of frequency use shall be identical to those specified in point 10.2.2 for UWB applications. 26 24.15–24.25 GHz 2006/771/EC, (EU) 2019/1345 Power: max. 100 mW EIRP ETSI EN 300 440 MSZ EN 300 440 ETSI EN 302 064-2 MSZ EN 302 064 27 57–64 GHz 2006/771/EC, (EU) 2019/1345 Power: max. 100 mW EIRP, MSZ EN 305 550-2 max. 10 dBm transmitter output power 28 61–61.5 GHz Power: max. 100 mW EIRP 29 122–122.25 GHz Power: max. 10 dBm EIRP/250 MHz Power density: max. –48 dBm/MHz at 30° elevation 30 122.25–123 GHz Power: max. 100 mW EIRP 31 244–246 GHz 9.2.2. Non-specific applications of non-harmonised frequency use A B C D E Frequency band, 1 Use Document Technical requirement Additional requirement frequency 2 138.2–138.45 MHz Non-specific applications ERC/REC 70-03 Annex 1 Power: max. 10 mW ERP ETSI EN 300 220-2 Duty cycle: ≤ 1% MSZ EN 300 220-2 3 150.98–151.16 MHz Telemetry and telecommand ETSI EN 300 220-2 Power: max. 100 mW ERP Audio and voice applications shall not applications MSZ EN 300 220-2 Channel spacing: 20 kHz be allowed. 4 318 MHz Automotive safety applications Power: max. 1 mW ERP Duty cycle: ≤ 10% 5 863–868.6 MHz Non-specific applications ERC/REC 70-03 Annex 1 Power: max. 25 mW ERP when FHSS is used 868.7–869.2 MHz ETSI EN 300 220-2 Duty cycle: ≤ 0.1% 869.4–869.65 MHz MSZ EN 300 220-2 Channel spacing: ≤ 100 kHz 869.7–870 MHz 6 Power: max. 25 mW ERP Power density: max. –4.5 dBm/100 kHz Draft version! A B C D E Frequency band, 1 Use Document Technical requirement Additional requirement frequency Techniques to mitigate interference shall be used. Alternatively, a duty cycle limit of 0.1% may also be used. 7 865–868 MHz Power: max. 25 mW ERP when FHSS is used Duty cycle: ≤ 1% Channel spacing: ≤ 50 kHz 8 870–874.4 MHz ERC/REC 70-03 Annex 1 Power: max. 25 mW ERP ETSI EN 300 220-2 Duty cycle: ≤ 1% MSZ EN 300 220-2 for the protection of the GSM-R MSZ EN 303 406 extension band (the 873–876 MHz band, where in use) Duty cycle: ≤ 0.01% and Pulse width: max. 5 ms/1 s Channel spacing: max. 600 kHz 9 with the exception of the Power: max. 25 mW ERP 915–919.4 MHz Duty cycle: ≤ 1% 916.3 MHz, for the protection of the GSM-R 917.5 MHz and extension band (the 918–921 MHz 918.7 MHz frequencies band, where in use) Duty cycle: ≤ 0.01% and Pulse width: max. 5 ms/1 s Channel spacing: max. 600 kHz 10 916.3 MHz Power: max. 100 mW ERP 917.5 MHz Duty cycle: ≤ 1% 918.7 MHz for the protection of the GSM-R extension band (the 918–921 MHz band, where in use) Duty cycle: ≤ 0.01% and Pulse width: max. 5 ms/1 s Channel spacing: max. 400 kHz 11 24–24.15 GHz ERC/REC 70-03 Annex 1 Power: max. 100 mW EIRP ETSI EN 300 440 MSZ EN 300 440 ETSI EN 302 064-2 MSZ EN 302 064 Draft version! 9.3. Tracing, seeking and data gathering applications 9.3.1. Tracing, seeking and data gathering applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 442.2–450 kHz Person sensor and anti- 2006/771/EC, (EU) 2019/1345 Field strength: max. 7 dBA/m, at collision devices 10 m CW transmission – without modulation Channel spacing: min. 150 Hz 3 456.9–457.1 kHz Devices for emergency 2001/148/EK Field strength: max. 7 dBA/m, at Avalanche beacon devices shall be detection of buried victims 2006/771/EC, (EU) 2019/1345 10 m designed to be capable of and valuable items MSZ EN 300 718-1 CW transmission at 457 kHz-– cooperating with new or previously ETSI EN 300 718-2 without modulation installed beacon devices whose MSZ EN 300 718-2 compliance has been certified based on the harmonised standards ETSI EN 300 718-2 and MSZ EN 300 718-2, and pursuant to the Decree of the National Media and Infocommunications Authority on radio equipment and pursuant to Directive 2014/53/EU. Avalanche beacon devices shall be designed to operate reliably even after an avalanche and continue to operate for a relatively long period of time even if buried under the snow after an avalanche. 4 169.4–169.475 MHz Metering devices (meter 2006/771/EC, (EU) 2019/1345 Power: max. 500 mW ERP reading systems) ECC/DEC/(05)02 Duty cycle: ≤ 10% MSZ EN 300 220-4 Channel spacing: max. 50 kHz 5 430–440 MHz Medical data acquisition (ULP- 2006/771/EC, (EU) 2019/1345 Power density measured outside of WMCE) MSZ EN 303 520 (2018) the patient’s body MSZ EN 303 520 (2019) - max. –50 dBm/100 kHz ERP density - max. –40 dBm/10 MHz total power 6 865.6–865.8 MHz Data networks 2006/771/EC, (EU) 2019/1345 Power: max. 500 mW ERP Techniques to mitigate interference 866.2–866.4 MHz Bandwidth: ≤ 200 kHz shall be used. 866.8–867 MHz Duty cycle: APC shall be required, alternatively 867.4–867.6 MHz ≤ 10% for network access points, other mitigation techniques which ≤ 2.5% in other cases achieve at least an equivalent level of spectrum compatibility. Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 7 874–874.4 MHz Data networks (EU) 2018/1538 Power: max. 500 mW ERP Individual permit obligation. MSZ EN 303 204 Bandwidth: ≤ 200 kHz Techniques to mitigate interference 8 917.3–917.7 MHz (EU) 2018/1538 Duty cycle: shall be used. 918.5–918.9 MHz ≤ 10% for network access points, APC shall be required, alternatively ≤ 2.5% in other cases other mitigation techniques which achieve at least an equivalent level of spectrum compatibility. All devices within the data network shall be under the control of network access points. 9 917.4–919.4 MHz SRDs in data networks (EU) 2018/1538 Power: max. 25 mW ERP Individual permit obligation. Bandwidth: ≤ 600 kHz Techniques to mitigate interference Duty cycle: ≤ 1% shall be used. All devices within the data network shall be under the control of network access points. 10 2 483.5–2 500 MHz Medical data acquisition 2006/771/EC, (EU) 2019/1345 Power: max. 1 mW EIRP Techniques to mitigate interference (MBANS) MSZ EN 303 203 Duty cycle: ≤ 10% shall be used. Modulation bandwidth: max. 3 MHz Only for indoor use in healthcare facilities. 11 Power: max. 10 mW EIRP Techniques to mitigate interference Duty cycle: ≤ 2% shall be used. Modulation bandwidth: max. 3 MHz Only for indoor use in the patient’s home. 9.3.2. Tracing, seeking and data gathering applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Further requirement 2 870–874 MHz Data networks ERC/REC 70-03 Annex 2 Power: max. 500 mW ERP Individual permit obligation. MSZ EN 303 204 Bandwidth: ≤ 200 kHz Techniques to mitigate interference Duty cycle: shall be used. ≤ 10% for network access points, APC shall be required, alternatively ≤ 2.5% in other cases other mitigation techniques which achieve at least an equivalent level of spectrum compatibility. All devices within the data network shall be under the control of network access points. 3 915–917.4 MHz SRDs in data networks ERC/REC 70-03 Annex 2 Power: max. 25 mW ERP Individual permit obligation. Bandwidth: ≤ 600 kHz Techniques to mitigate interference Duty cycle: ≤ 1% shall be used. Draft version! A B C D E 1 Frequency band Use Document Technical requirement Further requirement All devices within the data network shall be under the control of network access points. 4 5 725–5 875 MHz WIA ERC/REC 70-03 Annex 2 Power: max. 400 mW EIRP Individual permit obligation ETSI EN 303 258 Modulation bandwidth: min. 1 MHz Techniques to mitigate interference and max. 20 MHz shall be used. APC shall be required, alternatively other mitigation techniques which achieve at least an equivalent level of spectrum compatibility. The APC shall be capable of reducing the maximum capacity below 25 mW. 9.4. Wideband data transmission applications 9.4.1. Wideband data transmission applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Further requirement 2 863–868 MHz Wideband SRDs in data 2006/771/EC, (EU) 2019/1345 Power: max. 25 mW ERP Techniques to mitigate interference networks Bandwidth: > 600 kHz and ≤ 1 MHz shall be used. Duty cycle: ≤ 10% for network access points, ≤ 2.8% in other cases 3 917.4–919.4 MHz Wideband SRDs in data (EU) 2018/1538 Power: max. 25 mW ERP Individual permit obligation. networks Bandwidth: > 600 kHz and ≤ 1 MHz Techniques to mitigate interference Duty cycle: shall be used. ≤ 10% for network access points, All devices within the data network ≤ 2.8% in other cases shall be under the control of network access points. 4 2 400–2 483.5 MHz Wideband data transmission 2006/771/EC, (EU) 2019/1345 Power: max. 100 mW EIRP Techniques to mitigate interference devices MSZ EN 300 328 Power density: shall be used. 5 WAS/RLAN systems - max. 100 mW/100 kHz EIRP density when frequency hopping modulation is used, - max. 10 mW/MHz EIRP density when other types of modulation are used. Draft version! A B C D E 1 Frequency band Use Document Technical requirement Further requirement 6 57–71 GHz Wideband data transmission 2006/771/EC, (EU) 2019/1345 Power: max. 40 dBm EIRP Fixed outdoor installations shall be devices ETSI EN 302 567 Power density: excluded. 7 Multiple-gigabit systems MSZ EN 302 567 max. 23 dBm/MHz EIRP density Techniques to mitigate interference shall be used. 8 2006/771/EC, (EU) 2019/1345 Power: max. 40 dBm EIRP Techniques to mitigate interference Power density: shall be used. max. 23 dBm/MHz EIRP density Transmit power at the antenna port: max. 27 dBm 9 Power: max. 55 dBm EIRP Only fixed outdoor installations shall be Power density: allowed. max. 38 dBm/MHz EIRP density Techniques to mitigate interference Transmit antenna gain: min. 30 dBi shall be used. 9.4.2. Wideband data transmission applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Further requirement 2 915.8–917.4 MHz Wideband SRDs in data ERC/REC 70-03 Annex 3 Power: max. 25 mW ERP Individual permit obligation. networks Bandwidth: > 600 kHz and ≤ 1 MHz Techniques to mitigate interference Duty cycle: shall be used. ≤ 10% for network access points, All devices within the data network ≤ 2.8% in other cases shall be under the control of network access points. Draft version! 9.5. Railway applications 9.5.1. Railway applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Further requirement 2 984–7 484 kHz TTT applications: 2006/771/EC, (EU) 2019/1345 Band centre frequency 4 234 kHz Railway track-to-trainset links Balise/Eurobalise systems ETSI EN 302 608 Field strength: max. 9 dBA/m, at Transmission shall take place only in MSZ EN 302 608 10 m the presence of a trainset, upon the Duty cycle: ≤ 1% reception of a 27 MHz tele-powering signal from the trainset. 3 7 300–23 000 kHz TTT applications: 2006/771/EC, (EU) 2019/1345 Band centre frequency 13 547 kHz Railway track-to-trainset links Loop/Euroloop systems MSZ EN 302 609 Field strength: Transmission shall take place only in max. –7 dBA/m, at 10 m the presence of a trainset, upon the reception of a 27 MHz activating signal from the trainset. Antenna requirements shall apply. 4 76–77 GHz TTT applications: infrastructure 2006/771/EC, (EU) 2019/1345 Power: Radars shall be of a scanning nature in systems: obstacle detection MSZ EN 301 091-3 - max. 55 dBm peak EIRP order to limit illumination time and and vehicle detection with - max. 50 dBm average EIRP ensure a minimum silent time to radar sensors in railway - max. 23.5 dBm average EIRP for achieve coexistence with automotive crossings pulsed radars radar systems. Techniques to mitigate interference shall be used. 9.5.2. Railway applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 27 090–27 100 kHz Balise/Eurobalise systems ERC/REC 70-03 Annex 4 Field strength: max. 42 dBA/m, at The transmission of balise tele- 3 Loop/Euroloop activation ETSI EN 302 608 10 m powering signals, and railway track- systems MSZ EN 302 608 Band centre frequency: 27 095 kHz to-trainset links for MSZ EN 302 609 Balise/Eurobalise. Occasionally may be used for the activation of Loop/Euroloop. Draft version! 9.6. TTT applications 9.6.1. TTT applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 5 795–5 815 MHz Road tolling applications 2006/771/EC, (EU) 2019/1345 Power: Techniques to mitigate interference MSZ EN 300 674-2-1 - max. 2 W EIRP for roadside units shall be used. MSZ EN 300 674-2-2 - max. –14 dBm EIRP for on-board units 3 Smart tachograph, weight and Power: max. 2 W EIRP dimension applications 4 5 855–5 875 MHz ITS: vehicle-to-vehicle, 2006/771/EC, (EU) 2019/1345 Power: max. 33 dBm EIRP Techniques to mitigate interference vehicle-to-infrastructure and MSZ EN 302 571 Power density: shall be used. infrastructure-to-vehicle max. 23 dBm/MHz EIRP density systems ATCP range: 30 dB 5 21.65–22 GHz SRR (ultra-wideband 2005/50/EC, 2011/485/EU Power density: Point 9.6.2. component) ECC/DEC/(04)10 - max. –61.3 dBm/MHz average Standard ETSI EN 302 288-2 shall ETSI EN 302 288-2 EIRP density apply to the 21.65–24.25 GHz band. MSZ EN 302 288 - max. 0 dBm/50 MHz peak EIRP Standard MSZ EN 302 288 shall density apply to the 24.25–26.65 GHz band. 6 22–23.6 GHz Power density: - max. –41.3 dBm/MHz average EIRP density - max. 0 dBm/50 MHz peak EIRP density 7 23.6–24 GHz Power density: - max. –41.3 dBm/MHz average EIRP density - max. 0 dBm/ 50 MHz peak EIRP density The mitigation (compared to the main beam) of radiations that occur at a minimum of 30° to the horizontal: - min. 25 dB for SRRs placed on the market until 2010 - min. 30 dB for SRRs placed on the market after 2010 8 24–26.65 GHz Power density: - max. –41.3 dBm/MHz average EIRP density - max. 0 dBm/50 MHz peak EIRP density 9 24.05–24.25 GHz SRR (narrowband component) 2005/50/EC, 2011/485/EU Shall consist of one unmodulated Point 9.6.2. ECC/DEC/(04)10 carrier of a peak EIRP of max. ETSI EN 302 858-2 20 dBm. Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement MSZ EN 302 858 Duty cycle: ≤ 10% for transmissions of a peak EIRP of over –10 dBm. 10 24.05–24.075 GHz Automotive radars 2006/771/EC, (EU) 2019/1345 Power: max. 100 mW EIRP ETSI EN 302 858-2 MSZ EN 302 858 11 24.075–24.15 GHz Power: max. 0.1 mW EIRP 12 24.075–24.15 GHz Ground-based vehicular radars Power: max. 100 mW EIRP Techniques to mitigate interference shall be used. 13 24.15–24.25 GHz Automotive radars Power: max. 100 mW EIRP 14 63–64 GHz ITS: vehicle-to-vehicle, 2006/771/EC, (EU) 2019/1345 Power: max. 40 dBm EIRP Only equipment placed on the market vehicle-to-infrastructure and ECC/DEC/(09)01 before 1 January 2020 shall be infrastructure-to-vehicle MSZ EN 302 686 operated. systems 15 63.72–65.88 GHz 16 76–77 GHz Ground-based vehicular 2006/771/EC, (EU) 2019/1345 Power: Techniques to mitigate interference systems MSZ EN 301 091-1 - max. 55 dBm peak EIRP shall be used. ETSI EN 301 091-2 - max. 50 dBm average EIRP 17 Infrastructure systems 2006/771/EC, (EU) 2019/1345 - max. 23.5 dBm average EIRP for Radars shall be of a scanning nature MSZ EN 301 091-2 pulsed radars in order to limit illumination time and ensure a minimum silent time to achieve coexistence with automotive radar systems. Techniques to mitigate interference shall be used. 18 Obstacle detection systems for 2006/771/EC, (EU) 2019/1345 Power: rotorcraft use ECC/DEC/(16)01 max. 30 dBm peak EIRP MSZ EN 303 360 Power density: 3 dBm/MHz average power density Duty cycle: ≤ 56%/s 9.6.2. Further requirements on the use of SRRs in the 21.65–26.65 GHz band 9.6.2.1. Of the SRRs operating in the 21.65–24.25 GHz band only those originally installed or installed to replace original equipment in a road vehicle that was registered, placed on the market or commissioned in the European Economic Area before 30 June 2013 shall be operated. 9.6.2.2. As of 1 January 2018, of the SRRs operating in the 24.25–26.65 GHz band only those originally installed or installed to replace original equipment in a road vehicle that was registered, placed on the market or commissioned in the European Economic Area before 1 January 2018 shall be operated. However, the deadline shall be 1 January 2022 for those SRRs installed in cars whose application for type approval was submitted pursuant to Article 6(6) of Directive 2007/46/EC of the European Parliament and of the Council and which was approved before 1 January 2018. 9.6.2.3. The ratio of road vehicles equipped with SRR shall not exceed 7% of all road vehicles. 9.6.2.4. SRRs shall be operated only while the road vehicle is being operated. Draft version! 9.6.2.5. To ensure the protection of radio astronomy stations operating in the 22.21–24 GHz band, in the predefined protection zones around the stations SRRs shall automatically switch off or apply another method that ensures, without intervention on the part of the driver, an equal level of protection. For SRRs commissioned (originally installed or installed to replace original equipment in a road vehicle that was registered, placed on the market or commissioned) before 30 June 2007, manual switch-off shall also be acceptable in the protection zones of radio astronomy stations. 9.6.3. TTT applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 5 795–5 815 MHz Road-to-vehicle systems ERC/REC 70-03 Annex 5 Power: max. 8 W EIRP On power exceeding 2 W EIRP, an MSZ EN 300 674-2-1 individual permit obligation shall MSZ EN 300 674-2-2 apply. 9.7. Radio determination applications 9.7.1. Radio determination applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 2 200–8 000 MHz Material sensing devices The conditions of frequency use are identical to those specified in point 10.2.6 for UWB applications. 3 2 400–2 483.5 MHz Radio determination 2006/771/EC, (EU) 2019/1345 Power: max. 25 mW EIRP applications ETSI EN 300 440 MSZ EN 300 440 4 Movement detection and alarm applications 5 4 500–7 000 MHz TLPR 2006/771/EC, (EU) 2019/1345 Power: max. 24 dBm EIRP Techniques to mitigate interference MSZ EN 302 372 The power limit applies inside a shall be used. closed tank and corresponds to an EIRP density of 41.3 dBm/MHz outside a 500-litre test tank. 6 6 000–8 500 MHz LPR 2006/771/EC, (EU) 2019/1345 Power density: ATPC shall be used. ECC/DEC/(11)02 - max. –33 dBm/MHz average EIRP Antenna requirements shall apply. MSZ EN 302 729 density Techniques to mitigate interference - max. 7 dBm/50 MHz peak EIRP shall be used. density 7 8 500–10 600 MHz TLPR 2006/771/EC, (EU) 2019/1345 Power: max. 30 dBm EIRP Techniques to mitigate interference ERC/REC 70-03 Annex 6 The power limit shall apply inside a shall be used. MSZ EN 302 372 closed tank and correspond to an The EIRP density of the unwanted EIRP density of 41.3 dBm/MHz radiation radiated in the 10.6– outside a 500-litre test tank. 10.7 GHz band outside the test tank shall not exceed 60 dBm/MHz. Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 8 17.1–17.3 GHz Ground-based radio 2006/771/EC, (EU) 2019/1345 Power: max. 26 dBm EIRP Techniques to mitigate interference determination systems ETSI EN 300 440 shall be used. MSZ EN 300 440 9 GBSAR 10 24.05–26.5 GHz LPR 2006/771/EC, (EU) 2019/1345 Power density: ATPC shall be used. ECC/DEC/(11)02 - max. –14 dBm/MHz average EIRP Antenna requirements shall apply. MSZ EN 302 729 density Techniques to mitigate interference - max. 26 dBm/50 MHz peak EIRP shall be used. density Individual permit obligation shall apply to the exclusion zone around the radio astronomy site of Penc. 11 24.05–27 GHz TLPR 2006/771/EC, (EU) 2019/1345 Power: max. 43 dBm EIRP Techniques to mitigate interference MSZ EN 302 372 The power limit shall apply inside a shall be used. closed tank and correspond to an EIRP density of 41.3 dBm/MHz outside a 500-litre test tank. 12 57–64 GHz 13 57–64 GHz LPR 2006/771/EC, (EU) 2019/1345 Power density: ATPC shall be used. ECC/DEC/(11)02 - max. –2 dBm/MHz average EIRP Antenna requirements shall apply. MSZ EN 302 729 density Techniques to mitigate interference - max. 35 dBm/50 MHz peak EIRP shall be used. density 14 75–85 GHz Power density: - max. –3 dBm/MHz average EIRP density - max. 34 dBm/50 MHz peak EIRP density 15 75–85 GHz TLPR 2006/771/EC, (EU) 2019/1345 Power: max. 43 dBm EIRP Techniques to mitigate interference MSZ EN 302 372 The power limit shall apply inside a shall be used. closed tank and correspond to an EIRP density of 41.3 dBm/MHz outside a 500-litre test tank. Draft version! 9.7.2. Radio determination applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 30 MHz–12.4 GHz GPR/WPR The conditions of frequency use are identical to those specified in point 10.3.1 for UWB applications. 3 3 100–4 800 MHz LT2 The conditions of frequency use shall be identical to those specified in point 10.3.2 for UWB applications. 4 LAES The conditions of frequency use shall be identical to those specified in point 10.3.3 for UWB applications. 5 9 200–9 975 MHz Radio determination ERC/REC 70-03 Annex 6 Power: max. 25 mW EIRP applications ETSI EN 300 440 MSZ EN 300 440 6 Movement detection and alert applications 7 10.5–10.6 GHz 8 13.4–14 GHz 9 24.05–24.25 GHz Power: max. 100 mW EIRP 9.8. Alarm applications 9.8.1. Alarm applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 868.6–868.7 MHz Low duty cycle, high-reliability 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP devices: alarms MSZ EN 300 220-3-2 Channel spacing: 25 kHz. The whole MSZ EN 303 406 frequency band may also be used as a single channel for high-speed data transmission. Duty cycle:  1% 3 869.2–869.25 MHz Low duty cycle, high-reliability 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP devices: social alarm MSZ EN 300 220-3-1 Channel spacing: 25 kHz devices Duty cycle:  0.1% 4 869.25–869.3 MHz Low duty cycle, high-reliability 2006/771/EC, (EU) 2019/1345 devices: alarms MSZ EN 300 220-3-2 MSZ EN 303 406 5 869.3–869.4 MHz Power: max. 10 mW ERP Channel spacing: 25 kHz Duty cycle:  1% 6 869.65–869.7 MHz Power: max. 25 mW ERP Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement Channel spacing: 25 kHz Duty cycle:  10% 9.9. Model control applications 9.9.1. Model control applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Further requirement 2 26 990–27 000 kHz Model control devices 2006/771/EC, (EU) 2019/1345 Power: max. 100 mW ERP 27 040–27 050 kHz ETSI EN 300 220-2 Channel spacing: 10 kHz 27 090–27 100 kHz MSZ EN 300 220-2 27 140–27 150 kHz 27 190–27 200 kHz 9.9.2. Model control applications of non-harmonised frequency use A B C D E Frequency band, 1 Use Document Technical requirement Additional requirement frequency 2 34.995–35.225 MHz Aeronautical model control ERC/DEC/(01)11 Power: max. 100 mW ERP devices ERC/REC 70-03 Annex 8 Channel spacing: 10 kHz ETSI EN 300 220-2 MSZ EN 300 220-2 3 40.665 MHz Model control devices ERC/DEC/(01)12 40.675 MHz ERC/REC 70-03 Annex 8 40.685 MHz ETSI EN 300 220-2 40.695 MHz MSZ EN 300 220-2 Draft version! 9.10. Inductive applications 9.10.1. Inductive control applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 9–59.75 kHz Inductive applications 2006/771/EC, (EU) 2019/1345 Field strength: max. 72 dBA/m, at MSZ EN 300 330 10 m 3 59.75–60.25 kHz MSZ EN 303 447 Field strength: max. 42 dBA/m, at MSZ EN 303 454 10 m 4 60.25–74.75 kHz Field strength: max. 72 dBA/m, at 10 m 5 74.75–75.25 kHz Field strength: max. 42 dBA/m, at 10 m 6 75.25–77.25 kHz Field strength: max. 72 dBA/m, at 10 m 7 77.25–77.75 kHz Field strength: max. 42 dBA/m, at 10 m 8 77.75–90 kHz Field strength: max. 72 dBA/m, at 10 m 9 90–119 kHz Field strength: max. 42 dBA/m, at 10 m 10 119–128.6 kHz Field strength: max. 66 dBA/m, at 10 m 11 128.6–129.6 kHz Field strength: max. 42 dBA/m, at 10 m 12 129.6–135 kHz Field strength: max. 66 dBA/m, at 10 m 13 135–140 kHz Field strength: max. 42 dBA/m, at 10 m 14 140–148.5 kHz Field strength: max. 37.7 dBA/m, at 10 m 15 with the exception of the Inductive applications 2006/771/EC, (EU) 2019/1345 Field strength: 148.5–5 000 kHz MSZ EN 300 330 max. –15 dΒμΑ/m at 10 metres in 16 and 3 155–3 400 kHz ULP-AID ETSI EN 302 536-2 any bandwidth of 10 kHz bands MSZ EN 302 536 Furthermore, the total field strength is maximum –5 dΒμΑ/m at 10 m for systems operating at bandwidths larger than 10 kHz 17 400–600 kHz Inductive applications used as 2006/771/EC, (EU) 2019/1345 Field strength: RFIDs MSZ EN 300 330 max. –8 dBμA/m, at 10 m Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 18 3 155–3 400 kHz Inductive applications Field strength: max. 13.5 dBμA/m, at 10 m 19 with the exception of the Field strength: 5 000–30 000 kHz, max. –20 dΒμΑ/m at 10 m in any 6 765–6 795 kHz, bandwidth of 10 kHz 7 400–8 800 kHz, Furthermore, the total field strength is 10 200–11 000 kHz and maximum –5 dΒμΑ/m at 10 m for 13 553–13 567 kHz systems operating at bandwidths bands larger than 10 kHz 20 6 765–6 795 kHz Field strength: max. 42 dBA/m, at 10 m 21 7 400–8 800 kHz Field strength: max. 9 dBA/m, at 22 10 200–11 000 kHz 10 m 23 13 553–13 567 kHz 2006/771/EC, (EU) 2019/1345 Field strength: max. 42 dBA/m, at For all combined frequency segments: MSZ EN 300 330 10 m - the transmission mask requirements MSZ EN 302 291-2 shall apply; 24 Inductive applications used as 2006/771/EC, (EU) 2019/1345 Field strength: max. 60 dBA/m, at - the antenna requirements shall RFIDs MSZ EN 300 330 10 m apply. 9.10.2. Inductive applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 0.1–9 kHz Inductive applications ERC/REC 70-03 Annex 9 Field strength: max. 82 dBA/m, at The size of the antenna shall be MSZ EN 303 447 10 m smaller than 1/20 of the wavelength. MSZ EN 303 454 9.11. Radio microphone applications, including aids for the hearing impaired, and wireless audio and multimedia streaming applications 9.11.1. Radio microphone applications and wireless audio and multimedia streaming applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 87.5–108 MHz High duty cycle, continuous 2006/771/EC, (EU) 2019/1345 Power: max. 50 nW ERP transmission devices: low- MSZ EN 301 357 Channel spacing: max. 200 kHz power analogue FM transmitters 3 169.4–169.475 MHz ALD 2006/771/EC, (EU) 2019/1345 Power: max. 500 mW ERP 169.4875–169.5875 MHz ECC/DEC/(05)02 Channel spacing: max. 50 kHz MSZ EN 300 422-4 4 173.965–216 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP A threshold of 35 dBμV/m shall be MSZ EN 300 422-4 Channel spacing: max. 50 kHz required to ensure the protection of Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement a T-DAB receiver located at 1.5 m from the ALD device, subject to T- DAB signal strength measurements taken around the ALD operating site. The division between the edges of the T-DAB channel in use and of the channels used by ALD shall be ≥ 300 kHz Techniques to mitigate interference shall be used. The devices shall implement the whole frequency range on a tuning range basis. 5 863–865 MHz Radio microphones 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP MSZ EN 300 422-1 MSZ EN 300 422-2 MSZ EN 300 422-3 MSZ EN 301 357 6 High duty cycle, continuous 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW ERP transmission devices: MSZ EN 301 357 wireless audio and multimedia streaming systems 9.11.2. Radio microphone applications and wireless audio and multimedia streaming applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 0.1–9 kHz Induction loop systems ERC/REC 70-03 Annex 10 Field strength: max. 120 dBA/m, at The size of the antenna shall be MSZ EN 303 348 10 m smaller than 1/20 of the wavelength. 2 3 155–3 400 kHz ALD RR 5.116 Power: max. 10 mW ERP MSZ EN 300 422-1 MSZ EN 300 422-2 MSZ EN 300 422-3 MSZ EN 300 422-4 3 34.9–38.5 MHz Radio microphones ERC/REC 70-03 Annex 10 Power: max. 10 mW ERP MSZ EN 300 422-1 Channel spacing: max. 50 kHz MSZ EN 300 422-2 MSZ EN 300 422-3 5 174–216 MHz ERC/REC 70-03 Annex 10 Power: max. 50 mW ERP MSZ EN 300 422-1 Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement MSZ EN 300 422-2 MSZ EN 300 422-3 7 470–786 MHz ERC/REC 70-03 Annex 10 Power: max. 50 mW ERP MSZ EN 300 422-1 MSZ EN 300 422-2 MSZ EN 300 422-3 8 786–789 MHz Power: max. 12 mW ERP 9 823–826 MHz ECC/DEC (09)03 Annex 3, Power: point 3.1 - max. 20 mW EIRP ERC/REC 70-03 Annex 10 - max. 100 mW EIRP for body-worn MSZ EN 300 422-1 devices MSZ EN 300 422-2 MSZ EN 300 422-3 10 826–832 MHz Power: max. 100 mW EIRP 11 863–865 MHz ALD ERC/REC 70-03 Annex 10 Power: max. 10 mW ERP MSZ EN 300 422-1 MSZ EN 300 422-2 MSZ EN 300 422-3 MSZ EN 300 422-4 MSZ EN 301 357 12 1 350–1 400 MHz Radio microphones ERC/REC 70-03 Annex 10 Power: MSZ EN 300 422-1 - max. 20 mW EIRP MSZ EN 300 422-2 - max. 50 mW EIRP for body-worn MSZ EN 300 422-3 devices or when SPP is used 13 1 492–1 525 MHz Power: max. 50 mW EIRP Only indoor use shall be allowed. Individual permit obligation. 14 1 656.5–1 660.5 MHz Assistive listening devices ERC/REC 70-03 Annex 10 Power density: max. 2 mW/600 kHz Only indoor use shall be allowed. ECC Report 270 Annex 4 EIRP density Individual permit obligation shall apply MSZ EN 300 422-1 to transmitters MSZ EN 300 422-2 MSZ EN 300 422-3 MSZ EN 300 422-4 15 1 785–1 795 MHz Radio microphones ERC/REC 70-03 Annex 10 Power: 16 1 795–1 800 MHz Radio microphones MSZ EN 300 422-1 - max. 20 mW EIRP 17 Baby guards MSZ EN 300 422-2 - max. 50 mW EIRP for body-worn MSZ EN 300 422-3 devices or when SPP is used 18 Wireless audio and multimedia ERC/REC 70-03 Annex 10 streaming systems MSZ EN 301 357 19 1 800–1 804.8 MHz Radio microphones ERC/REC 70-03 Annex 10 MSZ EN 300 422-1 MSZ EN 300 422-2 MSZ EN 300 422-3 Draft version! 9.12. RFID applications 9.12.1. RFID applications of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 400–600 kHz RFID applications 2006/771/EC, (EU) 2019/1345 Field strength: MSZ EN 300 330 max. –8 dBμA/m, at 10 m 3 13 553–13 567 kHz Field strength: max. 60 dBA/m, at For all combined frequency segments: 10 m - the transmission mask requirements shall apply; - the antenna requirements shall apply. 4 865–865.6 MHz 2006/771/EC, (EU) 2019/1345 Power: max. 100 mW ERP The same device may operate in ETSI EN 302 208-2 Channel spacing: 200 kHz several sub-bands. MSZ EN 302 208 Band centre frequencies of the Only equipment placed on the market channels: before 31 May 2018 shall be 864.9 MHz + 0.2 n MHz. operated. Channel number: n = 1, 2, 3. 5 865.6–867.6 MHz Power: max. 2 W ERP Channel spacing: 200 kHz Band centre frequencies of the channels: 864.9 MHz + 0.2 n MHz. Channel number: n = 4… 13. 6 867.6–868 MHz Power: max. 500 mW ERP Channel spacing: 200 kHz Band centre frequencies of the channels: 864.9 MHz + 0.2 n MHz. Channel number: n = 14, 15. 7 865–868 MHz 2006/771/EC, (EU) 2019/1345 Power: Techniques to mitigate interference MSZ EN 302 208 - max. 2 W ERP for interrogators shall be used. - max. –20 dBm for ERP tags Interrogator transmissions shall only be permitted within the four channels centred at 865.7 MHz, 866.3 MHz, 866.9 MHz and 867.5 MHz. A tag response shall be in adjacent frequency bands. Bandwidth: ≤ 200 kHz for interrogators Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 7/A 915–919.7 MHz (EU) 2018/1538 Power: Individual permit obligation. MSZ EN 302 208 - max. 4 W ERP for interrogators Techniques to mitigate interference - max. –10 dBm ERP for tags shall be used. Interrogator transmissions shall only be permitted within the three channels centred at 916.3 MHz, 917.5 MHz and 918.7 MHz. A tag response shall be in adjacent frequency bands. Bandwidth: ≤ 400 kHz for interrogators 8 2 446–2 454 MHz RFID applications 2006/771/EC, (EU) 2019/1345 Power: max. 500 mW EIRP Techniques to mitigate interference ETSI EN 300 440 shall be used. MSZ EN 300 440 9 Railway AVI MSZ EN 300 761-2 10 Container identifiers 9.12.2. RFID applications of non-harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 918.9–921 MHz RFID applications ERC/REC 70-03 Annex 11 Power: Individual permit obligation. MSZ EN 302 208 - max. 4 W ERP for interrogators - max. –10 dBm ERP for tags Interrogator transmissions shall only be permitted within the channel centred at 919.9 MHz. A tag response shall be in the adjacent frequency band. Bandwidth: ≤ 400 kHz for interrogators For the protection of the GSM-R extension band (the 918–921 MHz band, where in use), DAA shall be used. 3 2 446–2 454 MHz ERC/REC 70-03 Annex 11 Power: > 500 mW EIRP and Frequency hopping modulation shall ETSI EN 300 440 ≤ 4 W EIRP be used. MSZ EN 300 440 Duty cycle: ≤ 15% (observation Only indoor use shall be allowed. period: 200 ms) Draft version! 9.13. Active medical implants 9.13.1. Active medical implants of harmonised frequency use A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 2 9–315 kHz Active medical implant devices 2006/771/EC, (EU) 2019/1345 Field strength: max. 30 dBA/m, at 3 Ultra-low-power active medical MSZ EN 302 195 10 m implant systems with Duty cycle:  10% induction loop technology for telemetry purposes 4 30–37.5 MHz Active medical implant 2006/771/EC, (EU) 2019/1345 Power: max. 1 mW ERP devices: ultra-low-power ETSI EN 302 510-2 Duty cycle:  10% medical membrane implants MSZ EN 302 510 for blood pressure measurements 5 401–402 MHz Active medical implant 2006/771/EC, (EU) 2019/1345 Power: max. 25 µW ERP Only those systems may be used that systems MSZ EN 302 537 Channel spacing: 25 kHz are specifically designed for the 6 ULP-AMI communications ERC/DEC/(01)17 Individual transmitters may combine purpose of providing non-voice systems adjacent channels for increased digital communications between bandwidth up to 100 kHz. active implantable medical devices Techniques to mitigate interference and/or body-worn devices and other shall be used. Alternatively, a duty devices external to the human body cycle limit of 0.1% may also be used for transferring non-time critical used. individual patient-related physiological information. 7 402–405 MHz Active medical implant devices 2006/771/EC, (EU) 2019/1345 Power: max. 25 µW ERP Techniques to mitigate interference MSZ EN 301 839 Channel spacing: 25 kHz shall be used. 8 ULP-AMI communications ERC/DEC/(01)17 Individual transmitters may combine systems adjacent channels for increased bandwidth up to 300 kHz. Other techniques to access the spectrum or mitigate interference, including bandwidths greater than 300 kHz, may be used provided they ensure compatible operation with other users and in particular with meteorological radiosondes. Draft version! A B C D E 1 Frequency band Use Document Technical requirement Additional requirement 9 405–406 MHz Active medical implant 2006/771/EC, (EU) 2019/1345 Power: max. 25 µW ERP Only those systems may be used that systems MSZ EN 302 537 Channel spacing: 25 kHz are specifically designed for the 10 ULP-AMI communications ERC/DEC/(01)17 Individual transmitters may combine purpose of providing non-voice systems adjacent channels for increased digital communications between bandwidth up to 100 kHz. active implantable medical devices Techniques to mitigate interference and/or body-worn devices and other shall be used. Alternatively, a duty devices external to the human body cycle limit of 0.1% may also be used for transferring non-time- used. critical individual patient-related physiological information. 11 2 483.5–2 500 MHz Active medical implant devices 2006/771/EC, (EU) 2019/1345 Power: max. 10 mW EIRP External peripheral master units shall 12 Low-power active medical MSZ EN 301 559 Channel spacing: 1 MHz. The whole be for indoor use only. implant systems frequency band may also be used Techniques to mitigate interference dynamically as a single channel for shall be used. high-speed data transmissions. Duty cycle:  10% ’ 14. Fields B:2–B:11 of the table in point 10.3.1 of Annex 3 to the Decree are replaced by the following field: (B) (Document) (2) ECC/DEC/(06)08 ERC/REC 70-03 Annex 6 ETSI EN 302 066-2 MSZ EN 302 066 (3) (4) (5) (6) (7) (8) (9) (10) (11) Draft version! Annex 3 to Decree No.…/2020 of … … of the National Media and Infocommunications Authority The following line 47/A is added to the table in point 2 of Annex 4 to the Decree: (A) (B) (C) (D) (E) (F) (G) (H) (I) Validity with neighbouring countries Frequency band Document SVK AUT SVN HRV SRB ROU UKR 47/A 1 427–1 518 MHz Sharm-El-Sheikh (2019) × Draft version! Annex 4 to Decree No.…/2020 of … … of the National Media and Infocommunications Authority Column A of the table in point 1 of Annex 5 to the Decree is replaced by the following column: A (1) Frequency band [MHz] (2) 880–915/925–960 (3) 1 525–1 544 (space-to-Earth) 1 555–1 559 (space-to-Earth) 1 626.5–1 645.5 (Earth-to-space) 1 656.5–1 660.5 (Earth-to-space) (4) 1 610–1 626.5 (Earth-to-space) 1 613.8–1 626.5 (space-to-Earth) 2 483.5–2 500 (space-to-Earth) (5) 1 710–1 785/1 805–1 880 (6) 1 880–1 900 (7) 10 700–11 700 (space-to-Earth) 12 500–12 750 (space-to-Earth) 14 000–14 250 (Earth-to-space) Annex 5 to Decree No.…/2020 of … … of the National Media and Infocommunications Authority The following point 1a is added to Annex 6 of the Decree: ‘1a. Outside Hungary, the radio equipment operating in the 156–167.3 MHz band and used in the framework of the maritime mobile service and of the maritime mobile satellite service shall be designed to comply with the requirements specified in the table below as per the relevant documents. A B C 1 Radio equipment Document Requirement 2 Radio equipment ECC/DEC/(19)03 (a) function properly in a maritime environment, operating in the 156– (b) in the transitional period of the introduction 167.3 MHz band shall: of VDES (until 31 December 2022), in port operation services and in ship movement services, ensure clear and reliable communication in the channels and modes that fall in line with the specificities of the shipping route, either via analogue or digital communications links (c) after the end of the transitional period, duplex channels 24, 84, 25, 85, 26, 86 and the frequencies in the upper band of duplex channels 27 and 28 shall be used only for VDES ’ Annex 6 to Decree No.…/2020 of … … of the National Media and Infocommunications Authority 1. The following line 59/A is added to the table in Annex 7 of the Decree: (A) (B) (Acronym, (Meaning) abbreviation) 59/A ESIM Earth Station in Motion Draft version! 2. The following line 65/A is added to the table in Annex 7 to the Decree: (A) (B) (Acronym, (Meaning) abbreviation) 65/A FHSS Frequency Hopping Spread Spectrum 3. The following line 198/A is added to the table in Annex 7 to the Decree: (A) (B) (Acronym, (Meaning) abbreviation) 198/A ULP-WMCE Ultra-Low-Power Wireless Medical Capsule Endoscopy 4. The following line 203/A is added to the table in Annex 7 to the Decree: (A) (B) (Acronym, (Meaning) abbreviation) 203/A VDES VHF Data Exchange System 5. Line 207 of the table in Annex 7 to the Decree is replaced by the following line: (A) (B) (Acronym, (Meaning) abbreviation) 207 WAIC Wireless Avionics Intra-Communications 6. The following line 210/A is added to the table in Annex 7 to the Decree: (A) (B) (Acronym, (Meaning) abbreviation) 210/A WiA Wireless Industrial Applications Annex 7 to Decree No.…/2020 of … … of the National Media and Infocommunications Authority 1. The following line 28/A is added to the table in point 1.4 of Annex 8 to the Decree: (A) (B) (Reference) (Title) 28/A M.2092-0 Technical characteristics for a VHF data exchange system in the VHF maritime mobile band 2. Point 2 of Annex 8 to the Decree is replaced by the following point: ‘2. Legal acts of the EU 2.1. Regulations A B 1 Reference Title 2 (EC) 219/2009 Regulation (EC) No 219/2009 of the European Parliament and of the Council of 11 March 2009 adapting a number of instruments subject to the procedure referred to in Article 251 of the Treaty to Council Decision 1999/468/EC with regard to the regulatory procedure with scrutiny Adaptation to the regulatory procedure with scrutiny — Part Two Draft version! A B 1 Reference Title 3 (EU) 1079/2012 Commission implementing regulation (EU) No 1079/2012 of 16 November 2012 laying down requirements for voice channel spacing for the single European sky 4 (EU) 657/2013 Commission implementing regulation (EU) No 657/2013 of 10 July 2013 amending Implementing Regulation (EU) No 1079/2012 laying down requirements for voice channel spacing for the single European sky 5 (EU) 2016/799 Commission implementing regulation (EU) 2016/799 of 18 March 2016 implementing Regulation (EU) No 165/2014 of the European Parliament and of the Council laying down requirements for the construction, testing, installation, operation and repair of tachographs and their components 6 (EU) 2018/643 Regulation (EU) 2018/643 of the European Parliament and of the Council of 18 April 2018 on rail transport statistics 2.2. Directives A B 1 Reference Title 2 87/372/EEC Council Directive 87/372/EEC of 25 June 1987 on the frequency bands to be reserved for the coordinated introduction of public Pan- European cellular digital land-based mobile communications in the Community 3 91/287/EEC Council Directive of 3 June 1991 on the frequency band to be designated for the coordinated introduction of digital European cordless telecommunications (DECT) into the Community 4 2002/20/EC Directive 2002/20/EC of the European Parliament and of the Council of 7 March 2002 on the authorisation of electronic communications networks and services (Authorisation Directive) 5 2002/21/EC Directive 2002/21/EC of the European Parliament and of the Council of 7 March 2002 on a common regulatory framework for electronic communications networks and services (Framework Directive) 6 2005/82/EC Directive 2005/82/EC of the European Parliament and of the Council of 14 December 2005 repealing Council Directive 90/544/EEC on the frequency bands designated for the coordinated introduction of Pan-European land-based public radio paging in the Community 7 2007/46/EC Directive 2007/46/EC of the European Parliament and of the Council of 5 September 2007 establishing a framework for the approval of motor vehicles and their trailers, and of systems, components and separate technical units intended for such vehicles (Framework Directive) 8 2009/45/EC Directive 2009/45/EC of the European Parliament and of the Council of 6 May 2009 on safety rules and standards for passenger ships 9 2009/114/EC Directive 2009/114/EC of the European Parliament and of the Council of 16 September 2009 amending Council Directive 87/372/EEC on the frequency bands to be reserved for the coordinated introduction of public Pan-European cellular digital land-based mobile communications in the Community 10 2009/140/EC Directive 2009/140/EC of the European Parliament and of the Council of 25 November 2009 amending Directives 2002/21/EC on a common regulatory framework for electronic communications networks and services, 2002/19/EC on access to, and interconnection of, electronic communications networks and associated facilities, and 2002/20/EC on the authorisation of electronic communications networks and services Draft version! A B 1 Reference Title 11 2014/53/EU Directive 2014/53/EU of the European Parliament and of the Council of 16 April 2014 on the harmonisation of the laws of the Member States relating to making available on the market radio equipment and repealing Directive 1999/5/EC 12 2014/90/EU Directive 2014/90/EU of the European Parliament and of the Council of 23 July 2014 on marine equipment and repealing Council Directive 96/98/EC 2.3. Decisions A B 1 Reference Title 2 98/519/EC Commission Decision of 17 June 1998 on a common technical Regulation for low-data-rate land mobile satellite earth stations (LMES) operating in the 11/12/14 GHz frequency bands 3 98/533/EC Commission Decision of 3 September 1998 on a common technical Regulation for Satellite Personal Communications Networks (S-PCN) Mobile Earth Stations (MESs), including handheld earth stations, for S-PCN operating in the 1.6/2.4 GHz frequency bands under the Mobile Satellite Service (MSS) 4 98/542/EC Commission Decision of 4 September 1998 on a common technical regulation for telephony application requirements for public Pan- European cellular digital land-based mobile communications, phase II (edition 2) 5 98/543/EC Commission Decision of 4 September 1998 on a common technical regulation for telephony application requirements for public Pan- European cellular digital land-based mobile communications, phase II (edition 2) 6 98/574/EC Commission Decision of 16 September 1998 on a common technical regulation for the general attachment requirements for public Pan- European cellular digital land-based mobile communications, phase II (edition 2) 7 98/575/EC Commission Decision of 16 September 1998 on a common technical regulation for the general attachment requirements for mobile stations intended to be used with phase II public digital cellular telecommunications networks operating in the GSM 1 800 band (edition 2) 8 98/578/EC Commission Decision of 16 September 1998 on a common technical regulation for low-data-rate land mobile satellite earth stations (LMES) operating in the 1.5/1.6 GHz frequency bands 9 98/734/EC Commission Decision of 30 November 1998 on a common technical regulation for land mobile satellite earth stations (LMES) operating in the 1.5/1.6 GHz frequency bands 10 1999/310/EC Commission Decision of 23 April 1999 on a common technical regulation for digital enhanced cordless telecommunications (DECT) equipment accessing the integrated services digital network (ISDN) 11 1999/498/EC Commission Decision of 7 July 1999 on a common technical regulation for digital enhanced cordless telecommunications (DECT) equipment accessing the integrated services digital network (ISDN) (version 2) 12 1999/511/EC Commission Decision of 7 July 1999 on a common technical regulation for the attachment requirements for high-speed circuit switched data (HSCSD) multi-slot mobile stations 13 2000/637/EC Commission Decision of 22 September 2000 on the application of Article 3(3)(e) of Directive 1999/5/EC to radio equipment covered by the regional arrangement concerning radiotelephone services on inland waterways 14 2001/148/EC Commission Decision of 21 February 2001 on the application of Article 3(3)(e) of Directive 1999/5/EC to avalanche beacons Draft version! A B 1 Reference Title 15 676/2002/EC Decision No 676/2002/EC of the European Parliament and of the Council of 7 March 2002 on a regulatory framework for radio spectrum policy in the European Union (Radio Spectrum Decision) 16 2004/545/EC Commission Decision of 8 July 2004 on the harmonisation of the radio spectrum in the 79 GHz range for the use of automotive short- range radar equipment in the Community 17 2005/50/EC Commission Decision of 17 January 2005 on the harmonisation of the 24 GHz range radio spectrum band for time-limited use by automotive short-range radar equipment in the Community 18 2005/53/EC Commission Decision of 25 January 2005 on the application of Article 3(3)(e) of Directive 1999/5/EC of the European Parliament and of the Council to radio equipment intended to participate in the Automatic Identification System (AIS) 19 2005/513/EC Commission Decision of 11 July 2005 on the harmonised use of a radio spectrum in the 5 GHz frequency band for the implementation of wireless access systems including radio local area networks (WAS/RLANs) 20 2005/631/EC Commission Decision of 29 August 2005 concerning essential requirements as referred to in Directive 1999/5/EC of the European Parliament and of the Council ensuring access of Cospas-Sarsat locator beacons to emergency services 21 2006/771/EC Commission Decision of 9 November 2006 on harmonisation of the radio spectrum for use by short-range devices 22 2007/90/EC Commission Decision of 12 February 2007 amending Decision 2005/513/EC on the harmonised use of a radio spectrum in the 5 GHz frequency band for the implementation of Wireless Access Systems including Radio Local Area Networks (WAS/RLANs) 23 2007/98/EC Commission Decision of 14 February 2007 on the harmonised use of a radio spectrum in the 2 GHz frequency bands for the implementation of systems providing mobile satellite services 24 2008/294/EC Commission Decision of 7 April 2008 on harmonised conditions of spectrum use for the operation of mobile communications services on aircraft (MCA services) in the Community 25 2008/411/EC Commission Decision of 21 May 2008 on the harmonisation of the 3 400–3 800 MHz frequency band for terrestrial systems capable of providing electronic communications services in the Community 26 2008/432/EC Commission Decision of 23 May 2008 amending Decision 2006/771/EC on the harmonisation of the radio spectrum for use by short-range devices 27 2008/477/EC Commission Decision of 13 June 2008 on the harmonisation of the 2 5002 690 MHz frequency band for terrestrial systems capable of providing electronic communications services in the Community 28 626/2008/EC Decision No 626/2008/EC of the European Parliament and of the Council of 30 June 2008 on the selection and authorisation of systems providing mobile satellite services (MSS) 29 2008/671/EC Commission Decision of 5 August 2008 on the harmonised use of a radio spectrum in the 5 8755 905 MHz frequency band for safety- related applications of Intelligent Transport Systems (ITS) 30 2009/381/EC Commission Decision of 13 May 2009 amending Decision 2006/771/EC on the harmonisation of the radio spectrum for use by short-range devices 31 (EC) 2009/449 Commission Decision of 13 May 2009 on the selection of operators of Pan-European systems providing mobile satellite services (MSS) 32 (EC) 2009/766 Commission Decision of 16 October 2009 on the harmonisation of the 900 MHz and 1 800 MHz frequency bands for terrestrial systems capable of providing Pan-European electronic communications services in the Community 33 2010/166/EU Commission Decision of 19 March 2010 on harmonised conditions of use of the radio spectrum for mobile communications services on board vessels (MCV services) in the European Union Draft version! A B 1 Reference Title 34 2010/267/EU Commission Decision of 6 May 2010 on harmonised technical conditions of use in the 790862 MHz frequency band for terrestrial systems capable of providing electronic communications services in the European Union 35 2010/368/EU Commission Decision of 30 June 2010 amending Decision 2006/771/EC on harmonisation of the radio spectrum for use by short-range devices 36 2011/251/EU Commission Implementing Decision of 18 April 2011 amending Decision 2009/766/EC on the harmonisation of the 900 MHz and 1 800 MHz frequency bands for terrestrial systems capable of providing Pan-European electronic communications services in the Community 37 2011/485/EU Commission Implementing Decision of 29 July 2011 amending Decision 2005/50/EC on the harmonisation of the 24 GHz range radio spectrum band for time-limited use by automotive short-range radar equipment in the Community 38 2011/829/EU Commission Implementing Decision of 8 December 2011 amending Decision 2006/771/EC on the harmonisation of the radio spectrum for use by short-range devices 39 243/2012/EU Decision No 243/2012/EU of the European Parliament and of the Council of 14 March 2012 establishing a multiannual radio spectrum policy programme 40 2012/688/EU Commission Implementing Decision of 5 November 2012 on the harmonisation of the frequency bands 1 9201 980 MHz and 2 1102 170 MHz for terrestrial systems capable of providing electronic communications services in the Union 41 2013/638/EU Commission Decision of 12 August 2013 on essential requirements relating to marine radio communication equipment which is intended to be used on non-SOLAS vessels and to participate in the Global Maritime Distress and Safety System (GMDSS) 42 2013/654/EU Commission Implementing Decision of 12 November 2013 amending Decision 2008/294/EC to include additional access technologies and frequency bands for mobile communications services on aircraft (MCA services) 43 2013/752/EU Commission Implementing Decision of 11 December 2013 amending Decision 2006/771/EC on harmonisation of the radio spectrum for use by short-range devices and repealing Decision 2005/928/EC 44 2014/276/EU Commission Implementing Decision of 2 May 2014 on amending Decision 2008/411/EC on the harmonisation of the 3 400–3 800 MHz frequency band for terrestrial systems capable of providing electronic communications services in the Community 45 2014/641/EU Commission Implementing Decision of 1 September 2014 on harmonised technical conditions of a radio spectrum used by wireless audio programme-making and special events equipment in the Union 46 (EU) 2015/750 Commission Implementing Decision (EU) 2015/750 of 8 May 2015 on the harmonisation of the 1 452–1 492 MHz frequency band for terrestrial systems capable of providing electronic communications services in the Union 47 (EU) 2016/339 Commission Implementing Decision (EU) 2016/339 of 8 March 2016 on the harmonisation of the 2 010–2 025 MHz frequency band for portable or mobile wireless video links and cordless cameras used for programme-making and special events 48 (EU) 2016/687 Commission Implementing Decision (EU) 2016/687 of 28 April 2016 on the harmonisation of the 694–790 MHz frequency band for terrestrial systems capable of providing wireless broadband electronic communications services and for flexible national use in the Union 49 (EU) 2016/2317 Commission Implementing Decision (EU) 2016/2317 of 16 December 2016 amending Decision 2008/294/EC and Implementing Decision 2013/654/EU, in order to simplify the Draft version! A B 1 Reference Title operation of mobile communications on board aircraft (MCA services) in the Union 50 (EU) 2017/191 Commission Implementing Decision (EU) 2017/191 of 1 February 2017 amending Decision 2010/166/EU, in order to introduce new technologies and frequency bands for mobile communications services on board vessels (MCV services) in the European Union 51 (EU) 2017/899 Decision (EU) 2017/899 of the European Parliament and of the Council of 17 May 2017 on the use of the 470–790 MHz frequency band in the Union 52 (EU) 2017/1483 Commission Implementing Decision (EU) 2017/1483 of 8 August 2017 amending Decision 2006/771/EC on harmonisation of the radio spectrum for use by short-range devices and repealing Decision 2006/804/EC 53 (EU) 2018/637 Commission Implementing Decision (EU) 2018/637 of 20 April 2018 amending Decision 2009/766/EC on the harmonisation of the 900 MHz and 1 800 MHz frequency bands for terrestrial systems capable of providing Pan-European electronic communications services in the Community as regards relevant technical conditions for the Internet of Things 54 (EU) 2018/661 Commission Implementing Decision (EU) 2018/661 of 26 April 2018 amending Implementing Decision (EU) 2015/750 on the harmonisation of the 1 452–1 492 MHz frequency band for terrestrial systems capable of providing electronic communications services in the Union as regards its extension in the harmonised 1 427– 1 452 MHz and 1 492–1 517 MHz frequency bands 55 (EU) 2018/1538 Commission Implementing Decision (EU) 2018/1538 of 11 October 2018 on the harmonisation of radio spectrum for use by short-range devices within the 874–876 and 915–921 MHz frequency bands 56 (EU) 2019/235 Commission Implementing Decision (EU) 2019/235 of 24 January 2019 on amending Decision 2008/411/EC as regards an update of relevant technical conditions applicable to the 3 400–3 800 MHz frequency band 57 (EU) 2019/784 Commission Implementing Decision (EU) 2019/784 of 14 May 2019 on harmonisation of the 24.25–27.5 GHz frequency band for terrestrial systems capable of providing wireless broadband electronic communications services in the Union 58 (EU) 2019/785 Commission Implementing Decision (EU) 2019/785 of 14 May 2019 on the harmonisation of a radio spectrum for equipment using ultra- wideband technology in the Union and repealing Decision 2007/131/EC 59 (EU) 2019/1345 Commission Implementing Decision (EU) 2019/1345 of 2 August 2019 amending Decision 2006/771/EC updating harmonised technical conditions in the area of radio spectrum use for short-range devices 2.4. Recommendations A B 1 Reference Title 2 2008/295/EC Commission Recommendation of 7 April 2008 on authorisation of mobile communications services on aircraft (MCA services) in the European Union ’ Draft version! 3. Line 31 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 31 ECC/DEC/(03)04 (8 March 2019) Exemption from Individual Licensing of Very Small Aperture Terminals (VSAT) operating in the frequency bands 14.2514.50 GHz Earth-to-space and 10.7011.70 GHz space-to- Earth 4. Line 46 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 46 ECC/DEC/(05)10 (08 March 2019) The free circulation and use of earth stations on board vessels operating in fixed satellite service networks in the frequency bands 1414.5 GHz 5. Line 50 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 50 ECC/DEC/(06)03 (08 March 2019) Exemption from Individual Licensing of high e.i.r.p. satellite terminals (HEST) operating within the frequency bands 10.7012.75 GHz or 19.7020.20 GHz space-to-Earth and 14.0014.25 GHz or 29.5030.00 GHz Earth-to-space 6. Line 55 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 55 ECC/DEC/(06)08 (26 October 2018) the conditions for use of the radio spectrum by Ground- and Wall- Probing Radar (GPR/WPR) imaging systems 7. Line 68 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 68 ECC/DEC/(09)01 (05 July 2019) Harmonised use of the 63.7265.88 GHz frequency band for Intelligent Transport Systems (ITS) 8. Line 76 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 76 ECC/DEC/(11)02 (05 July 2019) Industrial Level Probing Radars (LPR) operating in frequency bands 68.5 GHz, 24.0526.5 GHz, 5764 GHz and 7585 GHz 9. Fields A:82–A:83 of the table in point 3.2 of Annex 8 to the Decree are replaced by the following fields: (A) (Reference) (82) ECC/DEC/(12)03 (6 March 2020) (83) ECC/DEC/(13)01 (26 October 2018) Draft version! 10. Field A:89 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following field: (A) (Reference) (89) ECC/DEC/(15)04 (08 March 2019) 11. Field A:92 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following field: (A) (Reference) (92) ECC/DEC/(16)02 (08 March 2019) 12. The following line 93/A is added to the table in point 3.2 of Annex 8 to the Decree: (A) (B) (Reference) (Title) 93/A ECC/DEC/(17)01 ECC Decision on the withdrawal of ECC Decision (01)01 on phasing out analogue CT1 and CT1+ applications in the 900 MHz band and ECC Decision (01)02 on phasing out digital CT2 applications in the 900 MHz band 13. The following lines 95/B and 95/C are added to the table in point 3.2 of Annex 8 to the Decree: (A) (B) (Reference) (Title) 95/B ECC/DEC/(18)03 ECC Decision on the withdrawal of ERC Decision (01)08 on harmonised frequencies, technical characteristics and exemption from individual licensing of Short-Range Devices used for Movement Detection and Alarms operating in the frequency band 2 4002 483.5 MHz 95/C ECC/DEC/(18)04 The harmonised use, exemption from individual licensing and free circulation and use of land-based Earth Stations In-Motion (ESIM) operating with GSO FSS satellite systems in the frequency bands 10.712.75 GHz and 14.014.5 GHz 14. Line 96 of the table in point 3.2 of Annex 8 to the Decree is replaced by the following line, and the following lines 97–99 are added to the table: (A) (B) (Reference) (Title) 96 ECC/DEC/(18)06 (26 October 2018) Harmonised technical conditions for Mobile/Fixed Communications Networks (MFCN) in the band 24.2527.5 GHz 97 ECC/DEC/(19)01 ECC Decision on the withdrawal of ECC Decision (11)04) on exemption from individual licensing of digital terminals of narrowband and wideband PMR/PAMR/PPDR systems and the free circulation and use of digital terminals of narrowband and wideband PPDR systems operating in the 80 MHz, 160 MHz, 380470 MHz and 800/900 MHz bands 98 ECC/DEC/(19)02 Land mobile systems in the frequency ranges of 68–87.5 MHz, 146– 174 MHz, 406.1–410 MHz, 410–430 MHz, 440–450 MHz and 450– 470 MHz 99 ECC/DEC/(19)03 Harmonised usage of the channels of the Radio Regulations Appendix 18 (transmitting frequencies in the VHF maritime mobile band) Draft version! 15. Line 5 of the table in point 3.3 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 5 ERC/REC 12-06 (29 May 2019) Preferred channel arrangements for Fixed Service systems operating in the frequency band 10.711.7 GHz 16. Line 16 of the table in point 3.3 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 16 ERC/REC/(01)02 (29 May 2019) Preferred channel arrangements for Fixed Service systems operating in the frequency band 31.833.4 GHz 17. Field A:29 of the table in point 3.3 of Annex 8 to the Decree is replaced by the following field: (A) (Reference) (29) ECC/REC/(11)09 (May 2015) 18. Line 2 of the table in point 3.4 of Annex 8 to the Decree is replaced by the following line: (A) (B) (Reference) (Title) 2 T/R 12-01 (29 May 2019) Harmonised radio frequency channel arrangements for analogue and digital terrestrial fixed systems operating in the band 3739.5 GHz 19. Lines 4 and 5 of the table in point 3.4 of Annex 8 to the Decree are replaced by the following lines: (A) (B) (Reference) (Title) 4 T/R 13-02 (29 May 2019) Preferred channel arrangements for Fixed Service systems in the frequency range 22.029.5 GHz 5 T/R 25-08 (28 September 2018) Planning criteria and cross-border coordination of frequencies for land mobile systems in the range 29.7470 MHz 20. Line 58 of the table in point 5 of Annex 8 to the Decree is replaced by the following line, and the following line 59 is added to the table: (A) (B) (Reference) (Title) 58 HCM Agreement (2019) Agreement between the Administrations of Austria, Belgium, the Czech Republic, Germany, France, Hungary, the Netherlands, Croatia, Italy, Liechtenstein, Lithuania, Luxembourg, Poland, Romania, the Slovak Republic, Slovenia and Switzerland on the coordination of frequencies between 29.7 MHz and 43.5 GHz for the fixed service and the land mobile service. (HCM Agreement) agreed by correspondence in 2019 59 Sharm-El-Sheikh (2019) Technical and procedural arrangement for usage of the 1 427– 1 518 MHz frequency band by terrestrial systems in the border areas of Hungary and Ukraine Sharm-El-Sheikh, Egypt, 20 November 2019 Draft version! 21. Point 7 of Annex 8 to the Decree is replaced by the following point: ‘7. Standards 7.1. Harmonised standards the references of which have been published in the Official Journal of the European Union A B 1 Reference Title 2 MSZ EN 300 065 Narrowband direct-printing telegraph equipment for receiving (2016) meteorological or navigational information (NAVTEX). Harmonised standard covering the essential requirements of Articles 3(2) and 3(3)(g) of the Directive 2014/53/EU 3 MSZ EN 300 086 Land Mobile Service. Radio equipment with an internal or external (2016) RF connector intended primarily for analogue speech. Harmonised Standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 4 MSZ EN 300 113 Land Mobile Service. Radio equipment transmitting signals to initiate (2017) a specific response in the receiver. Harmonised standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 5 MSZ EN 300 219 Land Mobile Service. Radio equipment transmitting signals to initiate (2017) a specific response in the receiver. Harmonised standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 6 ETSI EN 300 220-2 (2017) Short-Range Devices (SRD) operating in the frequency range of 25 MHz to 1 000 MHz. Part 2: Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU for non-specific radio equipment 7 MSZ EN 300 220-3-1 Short-Range Devices (SRD) operating in the frequency range (2017) 25 MHz to 1 000 MHz. Part 3-1: Harmonised standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU. Low duty cycle high-reliability equipment, social alarm equipment operating on designated frequencies (869 200 MHz to 869 250 MHz) 8 MSZ EN 300 220-3-2 Short-Range Devices (SRD) operating in the frequency range 25 (2017) MHz to 1 000 MHz. Part 3-2: Harmonised Standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU. Wireless alarms operating in designated LDC/HR frequency bands 868.60 MHz to 868.70 MHz, 869.25 MHz to 869.40 MHz, 869.65 MHz to 869.70 MHz 9 MSZ EN 300 220-4 Short-Range Devices (SRD) operating in the frequency range 25 (2017) MHz to 1 000 MHz. Part 4: Harmonised standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU. Metering devices operating in the designated band of 169 400 MHz to 169 475 MHz 10 MSZ EN 300 224 Land Mobile Service. Radio equipment for use in a paging service (2017) operating within the frequency range 25 MHz–470 MHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 11 MSZ EN 300 296 Land Mobile Service. Radio equipment using integral antennas (2016) intended primarily for analogue speech. Harmonised standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 12 MSZ EN 300 328 Wideband transmission systems. Data transmission equipment (2019) operating in the 2.4 GHz band. Harmonised standard for access to a radio spectrum Draft version! A B 1 Reference Title 13 MSZ EN 300 330 Short-Range Devices (SRD). Radio equipment in the frequency (2017) range of 9 kHz to 25 MHz and inductive loop systems in the frequency range of 9 kHz to 30 MHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 14 MSZ EN 300 341 Land Mobile Service. Radio equipment using an integral antenna (2016) transmitting signals to initiate a specific response in the receiver. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 15 MSZ EN 300 390 Land Mobile Service. Radio equipment intended for the transmission (2016) of data (and speech) and using an integral antenna. Harmonised standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 16 MSZ EN 300 422-1 Wireless microphones. Audio PMSE up to 3 GHz. Part 1: Class A (2017) receivers. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 17 MSZ EN 300 422-2 Wireless Microphones. Audio PMSE up to 3 GHz. Part 2: Class B (2017) receivers. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 18 MSZ EN 300 422-3 Wireless microphones. Audio PMSE up to 3 GHz. Part 3: Class C (2017) receivers. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 19 MSZ EN 300 422-4 Wireless Microphones. Audio PMSE up to 3 GHz. Part 4: Assistive (2017) listening devices including personal sound amplifiers and inductive systems up to 3 GHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 20 MSZ EN 300 433 Citizens’ Band (CB) radio equipment. Harmonised standard (2016) covering the essential requirements of Article 3(2) of Directive 2014/53/EU 21 ETSI EN 300 440 (2017) Short-Range Devices (SRD). Radio equipment to be used in the 1 GHz to 40 GHz frequency range. Harmonised standard covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 22 MSZ EN 300 454-2 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2001)1 Wide band audio links. Part 2: Harmonised EN under Article 3(2) of the R&TTE Directive 23 MSZ EN 300 487 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Receive-Only Mobile Earth Stations (ROMES) providing data communications operating in the 1.5 GHz frequency band. Radio Frequency (RF) specifications covering the essential requirements of Article 3(2) of Directive 2014/53/EU 24 MSZ EN 300 674-2-2 Transport and Traffic Telematics (TTT). Dedicated Short-Range (2019) Communication (DSRC) transmission equipment (500 kbit/s/250 kbit/s) operating in the 5 795 MHz to 5 815 MHz frequency band. Part 2: Harmonised standard for access to the radio spectrum. Sub-part 2: On-Board Units (OBU) 25 MSZ EN 300 676-2 Ground-based VHF handheld, mobile and fixed radio transmitters, (2016) receivers and transceivers for the VHF aeronautical mobile service using amplitude modulation. Part 2: Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 26 MSZ EN 300 698 Radio telephone transmitters and receivers for the maritime mobile (2019)2 service operating in the VHF bands used on inland waterways. Harmonised standard for access to a radio spectrum and for features for emergency services Draft version! A B 1 Reference Title 27 ETSI EN 300 718-2 (2001)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Avalanche beacons; Transmitter-receiver systems. Part 2: Harmonised standard covering essential requirements under Article 3(2) of the R&TTE Directive 28 MSZ EN 300 718-2 Avalanche beacons operating at 457 kHz. Transmitter-receiver (2018) systems. Part 2: Harmonised standard for features for emergency services 29 ETSI EN 301 091-2 (2006)1 Electromagnetic compatibility and Radio spectrum Matters (ERM). Short-Range Devices; Road Transport and Traffic Telematics (RTTT). Radar equipment operating in the 76 GHz to 77 GHz range; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 30 MSZ EN 301 178 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2017) Portable Very High Frequency (VHF) radiotelephone equipment for the maritime mobile service operating in the VHF bands (for non- GMDSS applications only). Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 31 MSZ EN 301 357 Cordless audio devices in the range of 25 MHz to 2 000 MHz. (2017) Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 32 MSZ EN 301 360 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Satellite Interactive Terminals (SIT) and Satellite User Terminals (SUT) transmitting toward satellites in the geostationary orbit, operating in the 27.5 GHz to 29.5 GHz frequency bands covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 33 MSZ EN 301 406 Digital Enhanced Cordless Telecommunications (DECT). (2017) Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 34 MSZ EN 301 426 Satellite Earth Stations and Systems (SES). Harmonised EN for low- (2017) data-rate Land Mobile satellite Earth Stations (LMES) operating in the 1.5/1.6 GHz frequency bands covering the essential requirements under Article 3(2) of the R&TTE directive 35 MSZ EN 301 427 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for low-data-rate Mobile satellite Earth Stations (MES) except aeronautical mobile satellite earth stations, operating in the 11/12/14 GHz frequency bands covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 36 MSZ EN 301 428 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Very Small Aperture Terminal (VSAT). Transmit-only, transmit/receive or receive-only satellite earth stations operating in the 11/12/14 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 37 MSZ EN 301 430 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Satellite News Gathering Transportable Earth Stations (SNG TES) operating in the 11 GHz to 12 GHz/13 GHz to 14 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 38 MSZ EN 301 441 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Mobile Earth Stations (MES), including handheld earth stations, for Satellite Personal Communications Networks (S-PCN) operating in the 1.6 GHz/2.4 GHz frequency band under the Mobile Satellite Service (MSS) covering the essential requirements of Article 3(2) of Directive 2014/53/EU Draft version! A B 1 Reference Title 39 MSZ EN 301 443 Satellite Earth Stations and Systems (SES). Harmonised Standard (2016) for Very Small Aperture Terminal (VSAT). Transmit-only, transmit- and-receive, receive-only satellite earth stations operating in the 4 GHz and 6 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 40 MSZ EN 301 444 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Land Mobile Earth Stations (LMES) providing voice and/or data communications, operating in the 1.5 GHz and 1.6 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 41 MSZ EN 301 459 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Satellite Interactive Terminals (SIT) and Satellite User Terminals (SUT) transmitting toward satellites in the geostationary orbit, operating in the 29.5 GHz to 30.0 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 42 MSZ EN 301 473 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Aircraft Earth Stations (AES) providing Aeronautical Mobile Satellite Service (AMSS)/Mobile Satellite Service (MSS) and/or the Aeronautical Mobile Satellite on Route Service (AMS(R)S)/Mobile Satellite Service (MSS), operating in the frequency band below 3 GHz covering the essential requirements of Article 3(2) of Directive 2014/53/EU 43 MSZ EN 301 502 Global System for Mobile communications (GSM); Base Station (2017) (BS) equipment; Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 44 MSZ EN 301 511 Global System for Mobile communications (GSM); Mobile Stations (2017) (MS) equipment; Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 45 MSZ EN 301 559 Short-Range Devices (SRD). Low-Power-Active Medical Implants (2017) (LP-AMI) and associated Peripherals (LP-AMI-P) operating in the frequency range 2 483.5 MHz to 2 500 MHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 46 MSZ EN 301 681 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Mobile Earth Stations (MES) of geostationary mobile satellite systems, including handheld earth stations, for Satellite Personal Communications Networks (S-PCN) under the Mobile Satellite Service (MSS), operating in the 1.5 GHz and 1.6 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 47 MSZ EN 301 721 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Mobile Earth Stations (MES) providing Low Bit Rate Data Communications (LBRDC)using Low Earth Orbiting (LEO) satellites operating below the 1 GHz frequency band covering the essential requirements of Article 3(2) of the Directive 2014/53/EU 48 MSZ EN 301 783 Commercially available amateur radio equipment. Harmonised (2016) standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 49 MSZ EN 301 839 Ultra-Low-Power Active Medical Implants (ULP-AMI) and associated (2016) Peripherals (ULP-AMI-P) operating in the frequency range of 402 MHz to 405 MHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 50 MSZ EN 301 841-3 VHF air-ground Digital Link (VDL) Mode 2. Technical characteristics (2017) and methods of measurement for ground-based equipment. Part 3: Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU Draft version! A B 1 Reference Title 51 MSZ EN 301 842-5 VHF air-ground Digital Link (VDL) Mode 4 radio equipment. (2017) Technical characteristics and methods of measurement for ground- based equipment. Part 5: Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 52 MSZ EN 301 893 5 GHz RLAN. Harmonised standard covering the essential (2017) requirements of Article 3(2) of Directive 2014/53/EU 53 MSZ EN 301 908-1 IMT cellular networks. Harmonised standard for access to the radio (2020) spectrum. Part 1: Introduction and common requirements 54 MSZ EN 301 908-2 IMT cellular networks. Harmonised standard covering the essential (2018) requirements of Article 3(2) of Directive 2014/53/EU. Part 2: CDMA Direct Spread (UTRA FDD) User Equipment (UE) 55 MSZ EN 301 908-3 IMT cellular networks. Harmonised standard for access to the radio (2020) spectrum. Part 3: CDMA Direct Spread (UTRA FDD) Base Stations (BS) 56 MSZ EN 301 908-11 IMT cellular networks. Harmonised standard covering the essential (2017) requirements of Article 3(2) of Directive 2014/53/EU. Part 11: CDMA Direct Spread (UTRA FDD) Repeaters 57 MSZ EN 301 908-13 IMT cellular networks. Harmonised standard covering the essential (2017) requirements of Article 3(2) of Directive 2014/53/EU. Part 13: Evolved Universal Terrestrial Radio Access (E-UTRA) User Equipment (UE) 58 MSZ EN 301 908-14 IMT cellular networks. Harmonised standard for access to the radio (2020) spectrum. Part 14: Evolved Universal Terrestrial Radio Access (E- UTRA) Base Stations (BS) 59 MSZ EN 301 908-15 IMT cellular networks. Harmonised standard covering the essential (2017) requirements of Article 3(2) of Directive 2014/53/EU. Part 15: Evolved Universal Terrestrial Radio Access (E-UTRA FDD) Repeaters 60 MSZ EN 301 908-18 IMT cellular networks. Harmonised standard for access to the radio (2020) spectrum. Part 18: E-UTRA, UTRA and GSM/EDGE Multi-Standard Radio (MSR) Base Station (BS) 61 MSZ EN 301 908-19 IMT cellular networks. Harmonised standard covering the essential (2016) requirements of Article 3(2) of Directive 2014/53/EU. Part 19: OFDMA TDD WMAN (Mobile WiMAXTM) TDD User Equipment (UE) 62 MSZ EN 301 908-20 IMT cellular networks. Harmonised standard covering the essential (2016) requirements of Article 3(2) of Directive 2014/53/EU. Part 20: OFDMA TDD WMAN (Mobile WiMAXTM) TDD Base Stations (BS) 63 MSZ EN 301 908-21 IMT cellular networks. Harmonised standard covering the essential (2016) requirements of Article 3(2) of Directive 2014/53/EU. Part 21: OFDMA TDD WMAN (Mobile WiMAXTM) FDD User Equipment (UE) 64 MSZ EN 301 908-22 IMT cellular networks. Harmonised standard covering the essential (2016) requirements of Article 3(2) of Directive 2014/53/EU. Part 22: OFDMA TDD WMAN (Mobile WiMAXTM) FDD Base Stations (BS) 65 MSZ EN 301 929 VHF transmitters and receivers as coast stations for GMDSS and (2017) other applications in the maritime mobile service. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 66 MSZ EN 302 017 Transmitting equipment for the Amplitude Modulated (AM) sound (2017) broadcasting service. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU Draft version! A B 1 Reference Title 67 MSZ EN 302 018 Transmitting equipment for the Frequency Modulated (FM) sound (2017) broadcasting service. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 68 MSZ EN 302 054 Meteorological Aids (Met Aids). Radiosondes to be used in the (2018) 400.15 MHz to 406 MHz frequency range with power levels ranging up to 200 mW. Harmonised standard for access to the radio spectrum 69 ETSI EN 302 064-2 (2004)1 Electromagnetic compatibility and Radio spectrum Matters (ERM). Radio equipment to be used in the 1.3 GHz to 50 GHz frequency range; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 70 MSZ EN 302 065-1 Short-Range Devices (SRD) using Ultra-Wide-Band technology (2017) (UWB). Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 1: Requirements for non-specific UWB applications 71 MSZ EN 302 065-2 Short-Range Devices (SRD) using Ultra-Wide-Band technology (2017) (UWB). Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 2: Requirements for UWB location tracking 72 MSZ EN 302 065-3 Short-Range Devices (SRD) using Ultra-Wide-Band technology (2017)3 (UWB). Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 3: Requirements for UWB devices for ground-based vehicular applications 73 MSZ EN 302 065-4 Short-Range Devices (SRD) using Ultra-Wide-Band technology (2017) (UWB). Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 4: Material sensing devices using UWB technology below 10.6 GHz 74 ETSI EN 302 066-2 (2008)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Ground- and Wall- Probing Radar applications (GPR/WPR) imaging systems; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 75 ETSI EN 302 077-2 (2005) Electromagnetic compatibility and Radio spectrum Matters (ERM); Transmitting equipment for the Terrestrial - Digital Audio Broadcasting (T-DAB) service; Part 2: Harmonised EN under Article 3(2) of the R&TTE Directive 76 MSZ EN 302 186 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for satellite mobile Aircraft Earth Stations (AESs) operating in the 11/12/14 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 77 ETSI EN 302 194-2 (2007)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Navigation radar used on inland waterways; Part 2: Harmonised EN covering essential requirements of Article 3(2) of the R&TTE Directive 78 MSZ EN 302 195 Short-Range Devices (SRD). Ultra-Low-Power Active Medical (2016) Implants (ULP-AMI) and Peripherals (ULP-AMI-P) operating in the frequency range of 9 kHz to 315 kHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 79 MSZ EN 302 208 Radio frequency identification equipment operating in the band (2017) 865 MHz to 868 MHz with power levels up to 2 W and in the band Draft version! A B 1 Reference Title 915 MHz to 921 MHz with power levels up to 4 W; Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 80 MSZ EN 302 217-2 Fixed Radio Systems. Characteristics and requirements for point-to- (2017) point equipment and antennas. Part 2: Digital systems operating in frequency bands from 1 GHz to 86 GHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 81 ETSI EN 302 245-2 (2005) Electromagnetic compatibility and Radio spectrum Matters (ERM); Transmitting equipment for the Digital Radio Mondiale (DRM) broadcasting service; Part 2: Harmonised EN under Article 3(2) of the R&TTE Directive 82 ETSI EN 302 264-2 (2009)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Short-range devices; Road Transport and Traffic Telematics (RTTT). Short-range radar equipment operating in the 77 GHz to 81 GHz band; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 83 ETSI EN 302 288-2 (2012)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Short-Range Devices; Road Transport and Traffic Telematics (RTTT). Short-range radar equipment operating in the 24 GHz range; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 84 ETSI EN 302 296-2 (2011) Electromagnetic compatibility and Radio spectrum Matters (ERM); Transmitting equipment for the digital television broadcast service, terrestrial (DVB-T); Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 85 MSZ EN 302 326-2 Fixed Radio Systems. Multipoint equipment and antennas. Part 2: (2007) Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive for Digital Multipoint Radio Equipment 86 MSZ EN 302 372 Short-Range Devices (SRD). Tank Level Probing Radar (TLPR) (2017) equipment operating in the frequency ranges of 4.5 GHz to 7 GHz, 8.5 GHz to 10.6 GHz, 24.05 GHz to 27 GHz, 57 GHz to 64 GHz, 75 GHz to 85 GHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 87 MSZ EN 302 448 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for tracking Earth Stations on Trains (ESTs) operating in the 14/12 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 88 MSZ EN 302 454 Meteorological Aids (Met Aids). Radiosondes to be used in the (2018) 1 668.4 MHz to 1 690 MHz frequency range. Harmonised standard for access to the radio spectrum 89 MSZ EN 302 480 Mobile Communication On Board Aircraft (MCOBA) systems. (2017) Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 90 MSZ EN 302 502 Wireless Access Systems (WAS); 5.8 GHz fixed broadband data (2017) transmitting systems; Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 91 ETSI EN 302 510-2 (2007)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Radio equipment in the frequency range of 30 MHz to 37.5 MHz for Draft version! A B 1 Reference Title Ultra-Low-Power Active Medical Membrane Implants and Peripherals; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 92 ETSI EN 302 536-2 (2007)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Short-Range Devices (SRD); Radio equipment in the frequency range of 315 kHz to 600 kHz; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 93 MSZ EN 302 537 Ultra-Low-Power Medical Data Service (MEDS) Systems operating (2017) in the frequency range of 401 MHz to 402 MHz and 405 MHz to 406 MHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 94 MSZ EN 302 561 Land Mobile Service. Radio equipment using constant or non- (2016) constant envelope modulation operating in a channel bandwidth of 25 kHz, 50 kHz, 100 kHz or 150 kHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 95 ETSI EN 302 567 (2012)1 Broadband Radio Access Networks (BRAN); 60 GHz multiple- gigabit WAS/RLAN systems; Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 96 MSZ EN 302 571 Intelligent Transport Systems (ITS). Radiocommunications (2017) equipment operating in the 5 855 MHz to 5 925 MHz frequency band. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 97 MSZ EN 302 574-1 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Mobile Earth Stations (MES) operating in the 1 980 MHz to 2 010 MHz (earth-to-space) and 2 170 MHz to 2 200 MHz (space- to-earth) frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 1: Complementary Ground Component (CGC) for wideband system 98 MSZ EN 302 574-2 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Mobile Earth Stations (MES) operating in the 1 980 MHz to 2 010 MHz (earth-to-space) and 2 170 MHz to 2 200 MHz (space- to-earth) frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 2: User Equipment (UE) for wideband systems 99 MSZ EN 302 574-3 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Mobile Earth Stations (MES) operating in the 1 980 MHz to 2 010 MHz (earth-to-space) and 2 170 MHz to 2 200 MHz (space- to-earth) frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 3: User Equipment (UE) for narrowband systems 100 ETSI EN 302 608 (2008)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Short-Range Devices (SRD); Radio equipment for Eurobalise railway systems; Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 101 MSZ EN 302 609 Short-Range Devices (SRD). Radio equipment for Euroloop railway (2017) systems. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 102 MSZ EN 302 686 Intelligent Transport Systems (ITS). Radiocommunications (2011)1 equipment operating in the 63 GHz to 64 GHz frequency band. Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive Draft version! A B 1 Reference Title 103 MSZ EN 302 729 Short-Range Devices (SRD). Level Probing Radar (LPR) equipment (2017) operating in the frequency ranges of 6 GHz to 8.5 GHz, 24.05 GHz to 26.5 GHz, 57 GHz to 64 GHz, 75 GHz to 85 GHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 104 MSZ EN 302 752 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2009)4 Active radar target enhancers. Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 105 ETSI EN 302 858-2 (2013)1 Electromagnetic compatibility and Radio spectrum Matters (ERM); Road Transport and Traffic Telematics (RTTT). Automotive radar equipment operating in the 24.05 GHz up to 24.25 GHz or 24.50 GHz frequency range; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 106 MSZ EN 302 961 Maritime personal homing beacon intended for use on the frequency (2017) 121.5 MHz for search and rescue purposes only. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 107 MSZ EN 302 977 Satellite Earth Stations and Systems (SES). Harmonised standard (2016) for Vehicle-Mounted Earth Stations (VMES) operating in the 14/12 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 108 MSZ EN 303 084 Ground-Based Augmentation System (GBAS) VHF ground-air Data (2016) Broadcast (VDB). Technical characteristics and methods of measurement for ground-based equipment. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 109 MSZ EN 303 098 Maritime low-power personal locating devices employing AIS. (2019) Harmonised standard for access to the radio spectrum 110 MSZ EN 303 203 Short-Range Devices (SRD). Medical Body Area Network Systems (2016) (MBANSs) operating in the 2 483.5 MHz to 2 500 MHz range. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 111 MSZ EN 303 204 Network-based Short-Range Devices (SRD). Radio equipment to be (2017) used in the 870 MHz to 876 MHz frequency range with power levels ranging up to 500 mW. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 112 MSZ EN 303 213-6-1 Advanced Surface Movement Guidance and Control System (A- (2016) SMGCS). Part 6: Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU for deployed surface movement radar sensors. Sub-part 1: X-band sensors using pulsed signals and transmitting power up to 100 kW 113 MSZ EN 303 340 Digital terrestrial TV broadcast receivers. Harmonised standard (2017) covering the essential requirements of Article 3(2) of Directive 2014/53/EU 114 MSZ EN 303 354 Amplifiers and active antennas for TV broadcast reception in (2017) domestic premises; Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 115 MSZ EN 303 372-1 Satellite Earth Stations and Systems (SES). Satellite broadcast (2016) reception equipment. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 1: Outdoor unit receiving in the 10.7 GHz to 12.75 GHz frequency band 116 MSZ EN 303 372-2 Satellite Earth Stations and Systems (SES). Satellite broadcast (2016) reception equipment. Harmonised standard covering the essential Draft version! A B 1 Reference Title requirements of Article 3(2) of Directive 2014/53/EU. Part 2: Indoor unit 117 MSZ EN 303 406 Short-Range Devices (SRD). Social Alarm Equipment operating in (2017) the frequency range 25 MHz to 1 000 MHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 118 MSZ EN 303 413 Satellite Earth Stations and Systems (SES). Global Navigation (2017) Satellite System (GNSS) receivers. Radio equipment operating in the 1 164 MHz to 1 300 MHz and 1 559 MHz to 1 610 MHz frequency bands. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 119 MSZ EN 303 520 Short-Range Devices (SRD). Ultra-Low-Power (ULP) wireless (2018)5 medical capsule endoscopy devices operating in the band 430 MHz to 440 MHz. Harmonised standard for access to the radio spectrum 120 MSZ EN 303 520 Short-Range Devices (SRD). Ultra-Low-Power (ULP) wireless (2019)6 medical capsule endoscopy devices operating in the band 430 MHz to 440 MHz. Harmonised standard for access to the radio spectrum 121 MSZ EN 303 609 Global System for Mobile communications (GSM). GSM repeaters. (2016) Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 122 MSZ EN 303 978 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Earth Stations on Mobile Platforms (ESOMP) transmitting toward satellites in geostationary orbit, operating in the 27.5 GHz to 30.0 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 123 MSZ EN 303 979 Satellite Earth Stations and Systems (SES). Harmonised standard (2017) for Earth Stations on Mobile Platforms (ESOMP) transmitting toward satellites in non-geostationary orbit, operating in the 27.5 GHz to 29.1 GHz and 29.5 GHz to 30.0 GHz frequency bands covering the essential requirements of Article 3(2) of Directive 2014/53/EU 124 MSZ EN 305 550-2 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2015)1 Short-Range Devices (SRD). Radio equipment to be used in the 40 GHz to 246 GHz frequency range. Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 1This harmonised standard does not address requirements relating to receiver performance parameters and does not confer a presumption of conformity as regards those parameters. 2Compliance with this harmonised standard does not confer a presumption of conformity to the essential requirement set out in Article 3(2) of Directive 2014/53/EU if, in clause 8.2.3 of this harmonised standard, the sentence ‘With the output power switch set at maximum, the carrier power shall be within ±1.5 dB of the rated output power under normal test conditions’ is applied. 3This harmonised standard does not set out technical specifications for ‘trigger-before-transmit techniques’. Point 10.2.4 of Annex 3, however, imposes technical requirements to be used within the bands 3.8–4.2 GHz and 6–8.5 GHz for vehicular access systems using trigger-before-transmit. Therefore, compliance with this harmonised standard does not ensure compliance with point 10.2.4 of Annex 3, and accordingly does not confer a presumption of conformity with those essential frequency management requirements which relate to ‘trigger-before-transmit techniques’. 4This harmonised standard does not address requirements relating to receiver performance parameters and does not confer a presumption of conformity as regards those parameters. With regard to other parameters, compliance with this harmonised standard confers a presumption of conformity to the essential spectrum management requirement until 6 February 2021. 5 Compliance with this harmonised standard confers a presumption of conformity to the essential spectrum management requirement until 6 August 2021. 6Compliance with this harmonised standard does not confer a presumption of conformity with the essential requirement of spectrum management if any of the following are applied: Draft version! – with regard to point B1 of Annex B: ‘The manufacturer and test laboratory may agree on alternative suitable implementation of a human torso simulator, which shall be then fully described in the test report;’ – with regard to point C1 of Annex C: ‘Alternatively, the manufacturer and test laboratory may agree to use a Semi-Anechoic Room, the set-up of which shall be then fully described in the test report’. The temperature referred to in clause B.2 of Annex B shall reflect the intended use. 7.2. Other standards A B 1 Reference Title 2 ETSI TS 144 018 (2018) Digital cellular telecommunications system (phase 2+) (GSM); Mobile radio interface layer 3 specification; GSM/EDGE Radio Resource Control (RRC) protocol (3GPP TS 44.018 version 14.4.0 Release 14) 3 ETSI TS 148 008 (2017) Digital cellular telecommunications system (phase 2+) (GSM); Mobile Switching Centre – Base Station System (MSC-BSS) interface; Layer 3 specification (3GPP TS 48.008, version 14.2.0, Release 14) 4 MSZ EN 300 066 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2002) Float-free maritime satellite Emergency Position Indicating Radio Beacons (EPIRBs) operating in the 406.0 MHz to 406.1 MHz frequency band. Technical characteristics and methods of measurement 5 MSZ EN 300 152-2 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2001) Maritime Emergency Position Indicating Radio Beacons (EPIRBs) intended for use on the frequency 121.5 MHz or the frequencies 121.5 MHz and 243 MHz for homing purposes only. Part 2: Harmonised EN under Article 3(2) of the R&TTE Directive 6 MSZ EN 300 152-3 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2001) Maritime Emergency Position Indicating Radio Beacons (EPIRBs) intended for use on the frequency 121.5 MHz or the frequencies 121.5 MHz and 243 MHz for homing purposes only. Part 3: Harmonised EN covering the essential requirements of Article 3(3) (e) of the R&TTE Directive 7 MSZ EN 300 220-2 Short-Range Devices (SRD) operating in the frequency range of (2018) 25 MHz to 1 000 MHz. Part 2: Harmonised standard for access to a radio spectrum for non-specific radio equipment 8 MSZ ETS 300 384 Radio broadcasting systems. Very High Frequency (VHF), (2000) frequency modulated, sound broadcasting transmitters 9 MSZ ETS 300 384/A1 Radio broadcasting systems. Very High Frequency (VHF), (2000) frequency modulated, sound broadcasting transmitters 10 MSZ EN 300 440 Short-Range Devices (SRD). Radio equipment to be used in the (2018) 1 GHz to 40 GHz frequency range. Harmonised standard for access to the radio spectrum 11 MSZ EN 300 674-2-1 Transport and Traffic Telematics (TTT). Dedicated Short-Range (2017) Communication (DSRC) transmission equipment (500 kbit/s/250 kbit/s) operating in the 5 795 MHz to 5 815 MHz frequency band. Part 2: Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Sub-part 1: Road Side Units (RSU) 12 MSZ EN 300 718-1 Avalanche Beacons operating at 457 kHz. Transmitter-receiver (2018) systems. Part 1: Harmonised standard for access to the radio spectrum Draft version! A B 1 Reference Title 13 MSZ EN 300 761-2 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2001) Short-Range Devices (SRD). Automatic Vehicle Identification (AVI) for railways operating in the 2.45 GHz frequency range Part 2: Harmonised standard covering the essential requirements under Article 3(2) of the R&TTE Directive 14 MSZ EN 301 091-1 Short-Range Devices. Transport and Traffic Telematics (TTT). (2017) Radar equipment operating in the 76 GHz to 77 GHz range. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 1: Ground-based vehicular radar 15 MSZ EN 301 091-2 Short-Range Devices. Transport and Traffic Telematics (TTT). (2017) Radar equipment operating in the 76 GHz to 77 GHz range. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 2: Fixed infrastructure radar equipment 16 MSZ EN 301 091-3 Short-Range Devices. Transport and Traffic Telematics (TTT). (2017) Radar equipment operating in the 76 GHz to 77 GHz range. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 3: Railway/road crossings obstacle detection system applications 17 MSZ EN 301 751 Fixed Radio Systems. Point-to-point equipment and antennas. (2003) Generic harmonised standard for point-to-point digital fixed radio systems and antennas covering the essential requirements under Article 3(2) of the 1999/5/EC Directive 18 MSZ EN 301 753 Fixed Radio Systems. Multipoint equipment and antennas. Generic (2004) harmonised standard for multipoint digital fixed radio systems and antennas covering the essential requirements under Article 3(2) of Directive 1999/5/EC 19 MSZ EN 302 064 Wireless video links operating in the 1.3 GHz to 50 GHz frequency (2017) band. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 20 MSZ EN 302 065-5 Short-Range Devices (SRD) using Ultra-Wide-Band technology (2018) (UWB). Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Part 5: Devices using UWB technology on board aircraft 21 MSZ EN 302 066 Short-Range Devices (SRD). Ground- and Wall- Probing Radar (2017) applications (GPR/WPR) imaging systems. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 22 MSZ EN 302 077 Transmitting equipment for the Digital Audio Broadcasting (DAB) (2018) service. Harmonised standard for access to the radio spectrum 23 MSZ EN 302 152-1 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2004) Satellite Personal Locator Beacons (PLBs) operating in the 406.0 MHz to 406.1 MHz frequency band. Part 1: Technical characteristics and methods of measurement 24 MSZ EN 302 194 Navigation radar used on inland waterways. Harmonised standard (2017) covering the essential requirements of Article 3(2) of Directive 2014/53/EU 25 ETSI EN 302 208-2 (2015) Electromagnetic compatibility and Radio spectrum Matters (ERM); Radio frequency identification equipment operating in the band 865 MHz to 868 MHz with power levels up to 2 W and in the band 915 MHz to 921 MHz with power levels up to 4 W; Part 2: Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive Draft version! A B 1 Reference Title 26 MSZ EN 302 217-4 Fixed Radio Systems. Characteristics and requirements for point-to- (2017) point equipment and antennas. Part 4: Antennas 27 MSZ EN 302 245 Transmitting equipment for the Digital Radio Mondiale (DRM) sound (2018) broadcasting service. Harmonised standard for access to the radio spectrum 28 MSZ EN 302 264 Short-Range Devices; Transport and Traffic Telematics (TTT). (2017) Short-range radar equipment operating in the 77 GHz to 81 GHz band; Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 29 MSZ EN 302 288 Short-Range Devices. Transport and Traffic Telematics (TTT). Ultra- (2017) wideband radar equipment operating in the 24.25 GHz to 26.65 GHz range. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 30 MSZ EN 302 291-2 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2005) Short-Range Devices (SRD). Close Range Inductive Data Communication equipment operating at 13.56 MHz. Part 2: Harmonised EN under Article 3(2) of the R&TTE Directive 31 MSZ EN 302 296 Digital terrestrial TV transmitters. Harmonised standard covering the (2017) essential requirements of Article 3(2) of Directive 2014/53/EU 32 MSZ EN 302 326-3 Fixed Radio Systems. Multipoint equipment and antennas. Part 3: (2008) Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive for multipoint radio antennas 33 MSZ EN 302 510 Short-Range Devices (SRD). Ultra-Low-Power Active Medical (2017) Membrane Implants (ULP-AMI-M) and Peripherals (ULP-AMI-M-P) operating in the frequency range 30 MHz to 37.5 MHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 34 MSZ EN 302 536 Short-Range Devices (SRD). Radio equipment operating in the (2018) frequency range of 315 kHz to 600 kHz for Ultra-Low-Power Animal Implantable Devices (ULP-AID) and associated peripherals. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 35 MSZ EN 302 544-1 Broadband data transmission systems operating in the 2 500 MHz (2010) to 2 690 MHz frequency band. Part 1: TDD base stations. Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 36 MSZ EN 302 544-2 Broadband data transmission systems operating in the 2 500 MHz (2009) to 2 690 MHz frequency band. Part 2: TDD user equipment stations. Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 37 MSZ EN 302 567 Multiple-gigabit/s radio equipment operating in the 60 GHz band. (2017) Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 38 MSZ EN 302 608 Short-Range Devices (SRD). Radio equipment for Eurobalise (2018) railway systems. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 39 MSZ EN 302 645 Electromagnetic compatibility and Radio spectrum Matters (ERM). (2010) Short-Range Devices (SRD); Global Navigation Satellite Systems (GNSS) Repeaters. Harmonised EN covering the essential requirements of Article 3(2) of the R&TTE Directive 40 MSZ EN 302 858 Short-Range Devices; Transport and Traffic Telematics (TTT). (2017) Radar equipment operating in the 24.05 GHz to 24.25 GHz or Draft version! A B 1 Reference Title 24.05 GHz to 24.50 GHz range. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 41 MSZ EN 303 035-1 Terrestrial Trunked Radio (TETRA). Harmonised EN for TETRA (2002) equipment covering the essential requirements under Article 3(2) of the R&TTE Directive. Part 1: Voice plus Data (V+D) 42 ETSI EN 303 258 (2020) Wireless Industrial Applications (WIA); Equipment operating in the 5 725 MHz to 5 875 MHz frequency range with power levels ranging up to 400 mW; Harmonised standard for access to the radio spectrum 43 MSZ EN 303 348 Induction loop systems intended to assist the hearing impaired in the (2017) frequency range 10 Hz to 9 kHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 44 MSZ EN 303 360 Short-Range Devices; Transport and Traffic Telematics (TTT). (2017) Radar equipment operating in the 76 GHz to 77 GHz range. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU. Obstacle detection radars for use on manned rotorcraft 45 MSZ EN 303 405 Land Mobile Service. Analogue and digital PMR446 equipment. (2017) Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 46 MSZ EN 303 447 Short-Range Devices (SRD). Inductive loop systems for robotic (2018) mowers in the frequency range 0 Hz to 148.5 kHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU 47 MSZ EN 303 454 Short-Range Devices (SRD). Metal and object detection sensors in (2018) the frequency range 1 kHz to 148.5 kHz. Harmonised standard covering the essential requirements of Article 3(2) of Directive 2014/53/EU ’ 1. ------IND- 2020 0361 S-- EN- ------ 20200714 --- --- PROJET Swedish Post and Telecom Authority’s Code of Statutes ISSN 1400-187X Swedish Post and Telecom Authority regulations on PTSFS 2020:NR: exemptions from the licence requirement for the use of certain radio transmitters; Published on select date adopted on select date. PTS prescribes1 the following by virtue of § 12 of the Electronic Communications Ordinance (2003:396). 1 kap. Area of application, etc. 1 § These regulations contain provisions on licence requirement exemptions, in accordance with Chapter 3, § 1 of the Electronic Communications Act (2003:389), as well as technical requirements and other conditions which allow for radio transmitters to be used without individual licences. 2 § Provisions on exemptions from the licence requirement to use certain radio transmitters are listed in order of frequency in Chapter 3. The frequencies are listed in the following intervals: – in kilohertz (KHz), up to and including 3 000 KHz – in megahertz (MHz), over 3 MHz, up to and including 3 000 MHz – in gigahertz (GHz), over 3 GHz, up to and including 3 000 GHz Annex 1 contains a list of provisions on licence requirement exemptions, stated according to area of application. 2 kap. Definitions and abbreviations 1 § For the purposes of these regulations: amateur radio certificate: proficiency certificate, issued or approved by PTS, which indicates that an approved proficiency test has been taken and passed, amateur radio transmitter: radio transmitter intended for use by persons who have an amateur radio certificate; broadcasts on frequencies intended for amateur radio communication, amateur service: non-commercial radio communications for training, communication, technical investigations, or based on personal interest in radio technology and without pecuniary interest, 1 See Directive (EU) 2015/1535 of the European Parliament and of the Council of 9 September 2015 laying down a procedure for the provision of information in the field of technical standards and regulations and of rules on Information Society services. 1 antenna gain: gain relative to a reference antenna that is either isotropic or a dipole; measured in dBi or dBd. The antenna gain indicates the directivity quality of an antenna, data network: the term data network refers to multiple short range devices, including network termination points, as well as network components and the wireless connections between them, fixed installation: device, equipment, etc. that is mounted, installed, and intended for permanent use at a fixed location, inductive transmission: transmission of information over very short distances by using the magnetic field of radio waves, intelligent transport systems: systems and services, based on information and communications technologies, including processing, control, positioning, communication, and electronics, that are applied to a road transport system, alarm transmission: the use of radio communication to indicate an alarm situation at a remote location, network termination point: a network termination point in a data network is a fixed terrestrial short-range device that acts as the coupling point for other short-range devices in the data network with service platforms located outside the data network; direction finding: the use of radio communication to determine the direction to a radio transmitter, radio control: the use of radio communication to transmit signals to remotely initiate, modify, or terminate functions in remote equipment, RFID (radio frequency identification): the RFID category covers tag/interrogator- based radio communications systems that consist of radio devices (tags) attached to objects or live creatures and of transmitter/receiver units (RFID readers) which activate the tags and receive data back from them. Typical uses include the tracking and identification of items, such as for electronic article surveillance (EAS), and collecting and transmitting data relating to the items to which tags are attached, which may be either battery-less, battery-assisted, or battery-powered. The responses from a tag are validated by its RFID reader and forwarded to its host system. satellite terminal: a station placed on the earth’s surface or in its airspace which is intended for communication with one or more satellites or with other stations via satellite, duty cycle: total duration of active transmission in a 1-hour period expressed as a percentage of said period, telemetry: the use of radio communication to remotely and automatically indicate or read the values of measuring instruments, as well as the signalling and data transmission of information other than measurement data. 2 § For the purposes of these regulations: AES: Aircraft Earth Station (satellite terminal on aircraft), dBd: Decibels dipole (antenna gain relative to a reference dipole antenna. This antenna is defined as: dBd = dBi -2.15.), dBi: decibels isotropic (antenna gain of power in relation to a theoretical antenna that radiates equally in all directions), dBm: decibel-milliwatt (power relative to a milliwatt), 2 dBmicroA/m: decibel microampere per metre (field strength relative to 1 microampere per metre), dBW: decibel watt (power relative to 1 watt), DECT: Digital Enhanced Cordless Telecommunications system, EAS: Electronic Article Surveillance (retail theft prevention system), EIRP: equivalent isotropically radiated power, ERP: effective radiated power (relative to a half-wave dipole), ESV: Earth Stations on Vessels (satellite terminal on board a vessel), GSM: Global System for Mobile Telecommunications, FDD: Frequency Division Duplex, LTE: Long Term Evolution, ms: millisecond, PEP: peak envelope power, RMS: root mean square, TRP: Total Radiated Power, UMTS: Universal Mobile Telecommunications System, UWB: Ultra-wide band (short-range radio transmission that uses radio frequency energy over a spectrum broader than 50 MHz), VHF: Very High Frequency (the frequency range of 30–300 MHz), WiMAX: Worldwide Interoperability for Microwave Access. 3 kap. Provisions on licence requirement exemptions 1 § Exemptions from the licence requirement to use certain radio transmitters, in accordance with Chapter 3, § 1 of the Electronic Communications Act (2003:389), applies to the radio transmitters specified in §§ 2-219 and on the conditions specified therein. 2 § Terminals connected to terrestrial electronic communications networks if the communications network controls the terminal’s transmission and the terminal has only one termination function in the frequency range concerned. The exemption only applies to electronic communications networks for which the licence holder is entitled to plan the radio network. Terminals not covered by the first paragraph, if they are connected to a radio network through which a responsible network operator provides mobile electronic communication services and the exemption is indicated on the operator’s license. Radio transmitters that are covered by the first or second paragraph are exempt from licence requirements only if they meet the additional conditions laid down in the provisions of this chapter. 3 § Radio transmitters on foreign vessels in Swedish internal waters and Swedish territorial sea on frequencies covered by international agreements on maritime communication via long, medium, and short wave, top-band, VHF, satellite networks, and for on-board communication within the 457.525–457.575 MHz and 467.525-467.575 MHz frequency ranges. In the case of communication via satellite networks, the satellite terminal shall be included in the reported satellite network with which communication occurs. The State in which the vessel is registered shall have issued a licence, or equivalent, to use the radio transmitter. 3 4 § Radio transmitters in foreign aircraft which are within Swedish airspace or at Swedish aerodromes on frequencies covered by international agreements on aviation communication via long, medium, ‘gränsvåg’ (top-band), and short wave, VHF, and for communication over satellite networks. In the case of communication via satellite networks, the satellite terminal shall be included in the reported satellite network with which communication occurs. The State in which the aircraft is registered shall have issued a licence, or equivalent, to use the radio transmitter. 5 § Radio transmitters that are included in rescue equipment for transmissions on frequencies allocated to emergency services in the area in question and for such purposes as set out in Sweden’s international SÖ 1991:51 agreement2 on collaboration across territorial boundaries. 6 § Radio transmitters for generic UWB use.3 The concept of maximum mean power spectral density (indicated as EIRP at a specific frequency for the radio equipment) refers below to mean power per unit bandwidth (centred around the frequency) radiated in the direction of the maximum level during the specified conditions of measurement. The concept of peak power refers below to power within a bandwidth of 50 MHz at the frequency at which the highest mean radiated power occurs, radiated in the direction of the maximum level during the specified conditions of measurement. Frequency range Maximum mean power Maximum peak power (EIRP) spectral density (EIRP) (Defined within 50 MHz) (dBm/MHz) (dBm) f ≤ 1.6 GHz -90.0 -50.0 1,6 < f ≤ 2.7 GHz -85.0 -45.0 2.7 < f ≤ 3.1 GHz -70.0 -36.0 3.1 < f ≤ 3.4 GHz -70.0 -36.0 3.1 < f ≤ 3.4 GHz a) b) 0 -41.3 for use of LDC or DAA 3.4 < f ≤ 3.8 GHz -80.0 -40.0 3.4 < f ≤ 3.8 GHz -41.3 for use of LDCa) or DAAb) 0 3.8 < f ≤ 4.8 GHz -70.0 -30.0 3.8 < f ≤ 4.8 GHz -41.3 for use of LDCa) or DAAb) 0 4.8 < f ≤ 6 GHz -70.0 -30.0 6 < f ≤ 8.5 GHz -41.3 0 2 Sweden’s SÖ 1991:51 international agreement; Agreement between Denmark, Finland, Norway, and Sweden concerning collaboration across territorial boundaries in the context of accidents for the purpose of preventing or limiting injuries to persons or damages to property or the environment, Stockholm, 20 January 1989. 3 See Commission Implementing Decision (EU) 2019/785 of 14 May 2019 on the harmonisation of radio spectrum for equipment using ultra-wideband technology in the Union and repealing Decision 2007/131/EC. 4 8.5 < f ≤ 9.0 GHz -65 -25.0 8.5 < f ≤ 9.0 GHz -41.3 for use of DAAb) 0 9.0 < f ≤ 10.6 GHz -65 -25 f > 10.6 GHz -85.0 -45.0 a) The LDC mitigation technique (Low Duty Cycle) in the 3.1-4.8 GHz frequency band and its limit values are defined in the relevant harmonised standard. a) The DAA mitigation technique (Detect and Avoid) in the 3.1-4.8 GHz and 8.5-9 GHz frequency bands and its limit values are defined in the relevant harmonised standard. The exemption does not apply to radio transmitters used outdoors if the radio transmitter is connected to a fixed system, fixed infrastructure, or a fixed outdoor antenna. 7 § UWB radio transmitters used in equipment for tracking and tracing.4 The concept of maximum mean power spectral density (indicated as EIRP at a specific frequency for the radio equipment) refers below to mean power per unit bandwidth (centred around the frequency) radiated in the direction of the maximum level during the specified conditions of measurement. The concept of peak power refers below to power within a bandwidth of 50 MHz at the frequency at which the highest mean radiated power occurs, radiated in the direction of the maximum level during the specified conditions of measurement. Frequency range Maximum mean power Maximum peak power (EIRP) spectral density (EIRP) (Defined within 50 MHz) (dBm/MHz) (dBm) f ≤ 1,6 GHz -90.0 -50.0 1.6 < f ≤ 2,7 GHz -85.0 -45.0 2.7 < f ≤ 3,4 GHz -70.0 -36.0 3.4 < f ≤ 3,8 GHz -80.0 -40.0 3.8 < f ≤ 6,0 GHz -70.0 -30.0 6 < f ≤ 8,5 GHz -41.3 0 8.5 < f ≤ 9,0 GHz -65.0 -25.0 8.5 < f ≤ 9,0 GHz -41.3 for use of DAAa) 0 9.0 < f ≤ 10,6 GHz -65.0 -25.0 f > 10.6 GHz -85.0 -45.0 a) The DAA mitigation technique (Detect and Avoid) and its limit values are defined in the relevant harmonised standard. 4 See note 3. 5 The exemption does not apply to radio transmitters used outdoors if the radio transmitter is connected to a fixed system, fixed infrastructure, or a fixed antenna located outdoors. 8 § UWB radio transmitters used in equipment in power-driven vehicles and railway vehicles.5 The concept of maximum mean power spectral density (indicated as EIRP at a specific frequency for the radio equipment) refers below to mean power per unit bandwidth (centred around the frequency) radiated in the direction of the maximum level during the specified conditions of measurement. The concept of peak power refers below to power within a bandwidth of 50 MHz at the frequency at which the highest mean radiated power occurs, radiated in the direction of the maximum level during the specified conditions of measurement. Frequency range Maximum mean power Maximum peak power (EIRP) spectral density (EIRP) (Defined within 50 MHz) (dBm/MHz) (dBm) f ≤ 1.6 GHz -90.0 -50.0 1.6 < f ≤ 2.7 GHz -85.0 -45.0 2.7 < f ≤ 3.1 GHz -70.0 -36.0 3.1 < f ≤ 3.4 GHz -70.0 -36.0 3.1 < f ≤ 3.4 GHz -41.3 for use of LDCa) and ≤0 maximum external limit value ≤ -53.3b) 3.1 < f ≤ 3.4 GHz -41.3 for use of TPCa) and ≤0 DAAa) and maximum external limit value ≤ -53.3b) 3.4 < f ≤ 3.8 GHz -80.0 -40.0 3.4 < f ≤ 3.8 GHz a) ≤0 -41.3 for use of LDC and maximum external limit value ≤ -53.3b) 3.4 < f ≤ 3.8 GHz -41.3 for use of TPCa) and ≤0 DAAa) and maximum external limit value ≤ -53.3b) 3.8 < f ≤ 4.8 GHz -70.0 -30.0 3.8 < f ≤ 4.8 GHz a) ≤0 41.3 for use of LDC and maximum external limit value ≤ -53.3b) 3.8 < f ≤ 4.8 GHz -41.3 for use of TPCa) and ≤0 DAAa) and maximum external limit value ≤ -53.3b) 5 See note 3. 6 4.8 < f ≤ 6.0 GHz -70.0 -30.0 6.0 < f ≤ 8.5 GHz -53.3 -13.3 6.0 < f ≤ 8.5 GHz a) ≤0 -41.3 for use of LDC and maximum external limit value ≤ -53.3b) 6.0 < f ≤ 8.5 GHz -41.3 for use of TPCa) and ≤0 maximum external limit value ≤ -53.3b) 8.5 < f ≤ 9.0 GHz -65.0 -25.0 8.5 < f ≤ 9.0 GHz -41.3 for use of TPCa) and ≤0 DAAa) and maximum external limit value ≤ -53.3b) 9.0 < f ≤ 10.6 GHz -65.0 -25.0 f > 10.6 GHz -85.0 -45.0 a) The LDC mitigation technique (Low Duty Cycle), the DAA mitigation technique (Detect and Avoid), and the TPC mitigation technique (Transmitter Power Control) as well as their limit values are defined in the relevant harmonised standards for each respective technique. b) The external limit value is defined in the relevant harmonised standards. Radio transmitters for UWB used in equipment in wireless key systems for vehicles that use trigger-before-transmit in motor vehicles and rail vehicles.6 Frequency range Maximum mean power Maximum peak power (EIRP) spectral density (EIRP) (Defined within 50 MHz) (dBm/MHz) (dBm) 3.8 < f ≤ 4.2 GHz -41.3 with trigger-before- 0 transmita) and LDCb) ≤ 0.5% (within 1 hour) 6 < f ≤ 8.5 GHz -41.3 with trigger-before- 0 transmita) and LDCb) ≤ 0.5% (within 1 hour or TPCc)) a) Trigger-before-transmit is defined as a UWB transmission which is initiated only when necessary, especially if the system indicates that UWB equipment is located nearby. The communication is triggered either by a user or by the vehicle. b) Low Duty Cycle (LDC) mitigation technique c) Transmitter Power Control (TPC) mitigation technique 6 See note 3. 7 9 § UWB radio transmitters used in equipment on board aircraft.7 The concept of maximum mean power spectral density (indicated as EIRP at a specific frequency for the radio equipment) refers below to mean power per unit bandwidth (centred around the frequency) radiated in the direction of the maximum level during the specified conditions of measurement. The concept of peak power refers below to power within a bandwidth of 50 MHz at the frequency at which the highest mean radiated power occurs, radiated in the direction of the maximum level during the specified conditions of measurement. Frequency range Maximum mean Maximum peak power Requirements for power spectral density (EIRP) (Defined mitigation methods (EIRP) within 50 MHz) (dBm/MHz) (dBm) f ≤ 1.6 GHz -90.0 -50.0 1.6 < f ≤ 2.7 GHz -85.0 -45.0 2.7 < f ≤ 3.4 GHz -70.0 -36.0 3.4 < f ≤ 3.8 GHz -80 -40.0 3.8 < f ≤ 6.0 GHz -70.0 -30.0 6.0 < f ≤ 6.650 GHz -41.3 0.0 6.650 < f ≤ 6.6752 GHz -62.3 -21.0 Filter attenuation: 21 dBa) 6.6752 < f ≤ 8.5 GHz -41.3 0.0 7.25–7.75 GHz (FSS protection)a), b), 7.45– 7.55 GHz (MetSat protection)a), b), 7.75- 7.9 GHz (MetSat Protection)a), c) 8.5 < f ≤ 10.6 GHz -65.0 -25.0 f > 10.6 GHz -85.0 -45.0 a) Alternative mitigation methods that provide equivalent protection may be used. b) In order to protect fixed satellite service (FSS) in the 7.25–7.75 GHz band and protect meteorological satellites (MetSat) in the 7.45–7.55 GHz band, the maximum mean power spectral density (EIRP) shall be restricted as follows: -51.3 - 20 * log10(10 [km]/x[km]) dBm/MHz for altitudes more than 1 000 metres above ground level, where x is the aircraft’s altitude above ground level in kilometres; -71.3 dBm/MHz for altitudes 1 000 metres or less above ground level. b) In order to protect meteorological satellites (MetSat) in the 7.75–7.9 GHz band, the maximum mean power spectral density (EIRP) shall be restricted as follows: - 44.3 - 20 * log10(10 [km]/x[km]) dBm/MHz for altitudes more than 1 000 metres above ground level, where x is the aircraft’s altitude above ground level in kilometres; -64.3 dBm/MHz for altitudes 1 000 metres or less above ground level. 10 § UWB radio transmitters used in contact-based material sensing devices.8 Contact-based UWB material sensing device means that the UWB transmitter is switched on only when it is in direct contact with the investigated material. 7 See note 3. 8 See note 3. 8 The concept of maximum mean power spectral density (indicated as EIRP at a specific frequency for the radio equipment) refers below to mean power per unit bandwidth (centred around the frequency) radiated in the direction of the maximum level during the specified conditions of measurement. Technical requirements for contact-based UWB material sensing devices Frequency range Maximum mean power Maximum peak power (EIRP) spectral density (EIRP) (Defined within 50 MHz) f ≤ 1.73 GHz -85 dBm/MHz 1) -45 dBm 1.73 < f ≤ 2.2 GHz -65 dBm/MHz -25 dBm 2.2 < f ≤ 2.5 GHz -50 dBm/MHz -10 dBm 1) 2) 2.5 < f ≤ 2.69 GHz -65 dBm/MHz -25 dBm 4) 3) 2.69 < f ≤ 2.7 GHz -55 dBm/MHz -15 dBm 1) 2.7 < f ≤ 2.9 GHz -70 dBm/MHz -30 dBm 1) 6) 7) 2.9 < f ≤ 3.4 GHz -70 dBm/MHz -30 dBm 3.4 < f ≤ 3.8 GHz 4) -50 dBm/MHz 2) 6) 7) -10 dBm 3.8 < f ≤ 4.8 GHz -50 dBm/MHz 6) 7) -10 dBm 4) 2) 3) 4.8 < f ≤ 5.0 GHz -55 dBm/MHz -15 dBm 5.0 < f ≤ 6.0 GHz -50 dBm/MHz -10 dBm 5) 6.0 < f ≤ 8.5 GHz -41.3 dBm/MHz 0 dBm 7) 8.5 < f ≤ 9.0 GHz -65 dBm -25 dBm 9.0 < f ≤ 10.6 -65 dBm -25 dBm f > 10.6 GHz -85 dBm/MHz -45 dBm (a) Equipment using the ‘Listen Before Talk’ (LBT) mechanism may be used in the frequency range 1.215-1.73 GHz with a maximum average power spectral density (EIRP) of -70dBm/MHz and in the frequency range 2.5-2.69 GHz and 2.7–3.4 GHz with a maximum mean power spectral density (EIRP) of -50 dBm/MHz and a maximum peak power (EIRP) of -10 dBm/50 MHz. The LBT mechanism is defined in clauses 4.5.2.1, 4.5.2.2 and 4.5.2.3 of ETSI standard EN 302 065-4 V1.1.1. Alternative mitigation technology may be used if it ensures at least an equivalent level of performance and spectrum protection level that meets the corresponding essential requirements of Directive 2014/53/EU and complies with the technical requirements of this Decision. b) In order to protect radio services, mobile installations must meet the following requirements for total radiated power spectral density: i) In the frequency ranges 2.5-2.26 GHz and 4.8-5 GHz the total spectral power density must be 10 dB below the maximum spectral power density (EIRP). ii) In the frequency range 3.4–3.8 GHz, the total spectral power density must be 5 dB below the maximum spectral power density (EIRP). c) To protect the frequency bands 2.69–2.7 GHz and 4.8–5 GHz for radio astronomy services (RAS), the total radiated spectral power density must be below -65 dBm/MHz. d) Limitation of the transmission cycle to 10% per second. e) No fixed outdoor facility is allowed. (f) Within the frequency band 3.1-4.8 GHz, equipment for conducting LDC mitigation technology is allowed to operate with a maximum mean power for spectral density (EIRP) of – 41.3 dBm/MHz and a maximum peak power (EIRP) for power density at 0 dBm/MHz defined in 50 MHz. LDC mitigation technology and its limit values are defined in clauses 4.5.3.1, 4.5.3.2 and 4.5.3.3 of ETSI standard EN 302 065-1 V2.1.1. Alternative mitigation technology may be used if it ensures at least an equivalent level of performance and spectrum protection that meets the corresponding essential requirements of 9 Directive 2014/53/EU and complies with the technical requirements of this Decision. Note 5 is applied when LDC is implemented. (g) Within the frequency bands 3.1–4.8 GHz and 8.5–9 GHz, equipment for implementing DAA mitigation technology is allowed to operate with a maximum mean power for spectral density (EIRP) of - 41.3 dBm/MHz and a maximum peak power (EIRP) of 0 dBm defined in 50 MHz. DAA mitigation technology and its limit values are defined in clauses 4.5.1.1, 4.5.1.2 and 4.5.1.3 of ETSI standard EN 302 065-1 V2.1.1. Alternative mitigation technology may be used if it ensures at least an equivalent level of performance and spectrum protection that meets the corresponding essential requirements of Directive 2014/53/EU and complies with the technical requirements of this Decision. Note 5 is applied when DAA is implemented. The exemption does not apply to radio transmitters used outdoors if the radio transmitter is connected to a fixed system, fixed infrastructure, or a fixed outdoor antenna. 11 § Radio transmitters for UWB used in non-contact-based material sensing.9 Non-contact-based means that the UWB transmitter is switched on only when it is in the vicinity of the examined material and the UWB transmitter is directed towards the investigated material (e.g. manually using a proximity sensor or by mechanical design). The concept of maximum mean power spectral density (indicated as EIRP at a specific frequency for the radio equipment) refers below to mean power per unit bandwidth (centred around the frequency) radiated in the direction of the maximum level during the specified conditions of measurement. The concept of peak power refers below to power within a bandwidth of 50 MHz at the frequency at which the highest mean radiated power occurs, radiated in the direction of the maximum level during the specified conditions of measurement. Technical requirements for non-contact-based UWB material sensing devices Frequency range Maximum mean power Maximum peak power (EIRP) spectral density (EIRP) (Defined within 50 MHz) f ≤ 1.73 GHz -85 dBm/MHz 1) -60 dBm 1.73 < f ≤ 2.2 GHz -65 dBm/MHz -45 dBm 2.2 < f ≤ 2.5 GHz -50 dBm/MHz -25 dBm 2.5 < f ≤ 2.69 GHz -65 dBm/MHz 1) 2) -40 dBm 2.69 < f ≤ 2.7 GHz 4) -55 dBm/MHz 3) -45 dBm 2.7 < f ≤ 2.9 GHz -70 dBm/MHz 1) -45 dBm 2.9 < f ≤ 3.4 GHz -70 dBm/MHz 1) 6) 7) -45 dBm 3.4 < f ≤ 3.8 GHz -50 dBm/MHz 2) 6) 7) -45 dBm 3.8< f ≤ 4.8 GHz -50 dBm/MHz 6) 7) -25 dBm 9 See note 3. 10 4.8 < f ≤ 5.0 GHz -55 dBm/MHz 2) 3) -30 dBm 5.0 < f ≤ 5.25 GHz -50 dBm/MHz -30 dBm 5.25 < f ≤ 5.65 GHz -50 dBm/MHz -25 dBm 5.65 < f ≤ 5.725 GHz -50 dBm/MHz -40 dBm 5.725 < f ≤ 6.0 GHz -50 dBm/MHz -35 dBm 6.0 < f ≤ 8.5 GHz -41.3 dBm/MHz 5) 0 dBm 8.5 < f ≤ 9.0 GHz -65 dBm/MHz 7) -25 dBm 9.0 < f ≤ 10.6 GHz -65 dBm/MHz -25 dBm f ≤ 10.6 GHz -85 dBm/MHz -45 dBm (a) Equipment using the ‘Listen Before Talk’ (LBT) mechanism may be used in the frequency range 1.215–1.73 GHz with a maximum average power spectral density (EIRP) of -70 dBm/MHz and in the frequency range 2.5–2.69 GHz and 2.7–3.4 GHz with a maximum mean power for spectral density (EIRP) of -50 dBm/MHz and a maximum peak power (EIRP) of -10 dBm/50 MHz. The LBT mechanism is defined in clauses 4.5.2.1, 4.5.2.2 and 4.5.2.3 of ETSI standard EN 302 065-4 V1.1.1. Alternative mitigation technology may be used if it ensures at least an equivalent level of performance and spectrum protection that meets the corresponding essential requirements of Directive 2014/53/EU and complies with the technical requirements of this Decision. b) In order to protect radio services, mobile installations must meet the following requirements for total radiated power spectral density: i) In the frequency ranges of 2.5–2.69 GHz and 4.8–5 GHz, the total spectral power density must be 10 dB below the maximum spectral power density (EIRP). ii) In the frequency range 3.4–3.8 GHz, the total spectral power density must be 5 dB below the maximum spectral power density (EIRP). c) To protect the frequency bands 2.69–2.7 GHz and 4.8–5 GHz for radio astronomy services (RAS), the total radiated spectral power density must be below -65 dBm/MHz. d) Limitation of the transmission cycle to 10% per second. e) No fixed outdoor facility is allowed. (f) Within the frequency band 3.1–4.8 GHz, equipment for conducting LDC mitigation technology is allowed to operate with a maximum mean power spectral density (EIRP) of -41.3 dBm/MHz and a maximum peak power (IERP) for power density at 0 dBm/MHz defined in 50 MHz. LDC mitigation technology and its limit values are defined in clauses 4.5.3.1, 4.5.3.2 and 4.5.3.3 of ETSI standard EN 302 065-1 V2.1.1. Alternative mitigation technology may be used if it ensures at least an equivalent level of performance and spectrum protection that meets the corresponding essential requirements of Directive 2014/53/EU and complies with the technical requirements of this Decision. Note 5 is applied when LDC is implemented. (g) Within the frequency bands 3.1–4.8 GHz and 8.5–9 GHz, equipment for implementing DAA mitigation technology is allowed to operate with a maximum mean power for spectral density (EIRP) of -41.3 dBm/MHz and a maximum peak power (EIRP) of 0 dBm defined in 50 MHz. DAA mitigation technology and its limit values are defined in clauses 4.5.1.1, 4.5.1.2 and 4.5.1.3 of ETSI standard EN 302 065-1 V2.1.1. Alternative mitigation technology may be used if it ensures at least an equivalent level of performance and spectrum protection that meets the corresponding essential 11 requirements of Directive 2014/53/EU and complies with the technical requirements of this Decision. Note 5 is applied when DAA is implemented. The exemption does not apply to radio transmitters used outdoors if the radio transmitter is connected to a fixed system, fixed infrastructure, or a fixed outdoor antenna. 12 § 9-148.5 kHz: Inductive transmission radio transmitters.10 Maximum field strength: 72 dBµA/m at a distance of 10 m within 9–30 KHz, then decreasing by 3 dB/octave to 148.5 KHz. 13 § 9-315 kHz: Radio transmitters for medical implants.11 Maximum field strength: 30 dBµA/m at 10 metres distance. Transmission cycle: ≤ 10 % 14 § 135.7-137.8 kHz: Radio transmitters for amateur radio communication. Maximum power: 1 W ERP. The technical properties of amateur radio transmitters are to be adjusted so that they do not disrupt or interfere with the use of other radio equipment. Those who use amateur radio transmitters are to have an amateur radio certificate. To obtain an amateur radio certificate, proficiency is required in accordance with Annex 6 to CEPT Recommendation T/R 61-02 ‘Harmonised Amateur Radio Examination Certificate’, Vilnius 2004, version 5, February 2016.12 Exemption from the amateur radio certificate requirement applies to those who, within a fixed time frame, are undergoing training to obtain such a certificate and those who temporarily use an amateur radio transmitter in a demonstration, provided that the use of the radio transmitter is supervised by a holder of an amateur radio certificate. All holders of an amateur radio certificate are to have their own call sign. This was previously indicated on the radio amateur licence; now, it is on the certificate. The call signs of the receiving and transmitting stations are to be broadcast at the beginning and end of each radio contact. The call signals are also to be repeated at short intervals during ongoing radio contact. During the training and demonstration occasions referenced in the above paragraph, the call sign to be used is that which belongs to the amateur radio certificate holder who supervises the use of the radio transmitter. In such occasions, the call sign that belongs to the amateur radio association or institution that organises the training or demonstration may also be used if representatives of the association or institution supervise the use of the radio transmitter. An automatic amateur radio transmitter such as a radio beacon, repeater, or positioning transmitter should always be identifiable by a regularly transmitted call signal via Morse code, a voice message, etc. The call sign shall indicate who is responsible for the automatic transmitter. Those who start or use an automatic amateur radio transmitter shall have their own amateur radio certificate and use their own call sign. Such starts and use do not require the person to hold an amateur radio 10 See Commission Decision 2006/771/EC of 9 November 2006 on harmonisation of the radio spectrum for use by short-range devices, as last amended by Commission Implementing Decision (EU) 2019/1345 of 2 August 2019 amending Decision 2006/771/EC on harmonisation of the radio spectrum for use by short-range devices. 11 See note 10. 12 CEPT Recommendation T/R 61-02 is available on the PTS website (www.pts.se). 12 certificate if such takes place under the supervision of an amateur radio certificate holder and their call sign is used. 15 § 148.5 kHz–5.0 MHz: Inductive transmission radio transmitters.13 Maximum field strength: -15 dBµA/m at a distance of 10 m in each 10 kHz band. Total field strength may not exceed -5 dBμA/m at a distance of 10 m if the system uses bandwidths larger than 10 KHz. 16 § 400-600 kHz: Radio transmitters for RFID.14 Maximum field strength: 8 dBµA/m at 10 metres distance. 17 § 442.2-450 kHz: Radio transmitter for unspecified short-range device. Applies only to radio transmitters for person detection and collision detection systems.15 Channel spacing: ≥ 150 kHz Maximum field strength: 7 dBµA/m at 10 metres distance. 18 § 456.9-457.1 kHz: Radio transmitters for locating people and valuable objects buried under rubble, avalanches, or the like.16 Maximum field strength: 7 dBµA/m at 10 metres distance. 19 § 472-479 kHz: Radio transmitters for amateur radio communication. Maximum power: 1 W EIRP. Otherwise, § 14(3)-(6) apply. 20 § 516–8 516 KHz: Radio transmitters in telematics equipment, permanently installed on a railway, which is used for data transfer to railway vehicles. The radio transmitter may only be used when a locomotive or equivalent is at the same location as the transmitter. Maximum field strength: 7 dBµA/m at 10 metres distance. 21 § 984-7 484 kHz: Radio transmitters for transport/traffic telematics equipment for Eurobalise transmissions in the vicinity of railway vehicles.17 Maximum field strength: 9 dBµA/m at 10 metres distance. Transmission cycle ≤ 1% 22 § 1 810-1 850 kHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 23 § 1 850-1 900 kHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 10 W PEP. Otherwise, § 14(3)-(6) apply. 24 § 1 900–1 950 kHZ: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 100 W PEP. Otherwise, § 14(3)-(6) apply. 13 See note 10. 14 See note 10. 15 See note 10. 16 See note 10. 17 See note 10. 13 25 § 1 950-2 000 kHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 10 W PEP. Otherwise, § 14(3)-(6) apply. 26 § 3.155-3.400 MHz: Inductive transmission radio transmitters.18 Maximum field strength: 13.5 dBµA/m at 10 metres distance. 27 § 3.5-3.8 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 28 § 5-30 MHz: Inductive transmission radio transmitters.19 Maximum field strength: -20 dBµA/m at a distance of 10 m in each kHz band. Total field strength may not exceed -5 dBμA/m at a distance of 10 m if the system uses bandwidths larger than 10 KHz. 29 § 5.3515-5.3665 MHz: Radio transmitters for amateur radio communication. Maximum power: 15 W EIRP. Otherwise, § 14(3)-(6) apply. 30 § 6.765-6.795 MHz: Inductive transmission radio transmitters.20 Maximum field strength: 42 dBµA/m at 10 metres distance. 31 § 7.0-7.2 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 32 § 7.3-23 MHz: Radio transmitters for transport/traffic telematics equipment for Euroloop transmissions in the vicinity of railway vehicles.21 Maximum field strength: -7 dBµA/m at 10 metres distance. Antenna restrictions that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 33 § 7.4-8.8 MHz: Inductive transmission radio transmitters.22 Maximum field strength: 9 dBµA/m at 10 metres distance. 34 § 10.10-10.15 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 150 W PEP. Otherwise, § 14(3)-(6) apply. 35 § 10.2-11.0 MHz: Inductive transmission radio transmitters.23 Maximum field strength: 9 dBµA/m at 10 metres distance. 36 § 13.553-13.567 MHz: Radio transmitters for unspecified areas of application.24 Maximum power: 10 mW ERP. 18 See note 10. 19 See note 10. 20 See note 10. 21 See note 10. 22 See note 10. 23 See note 10. 24 See note 10. 14 37 § 13.553-13.567 MHz: Inductive transmission radio transmitters.25 Maximum field strength: 42 dBµA/m at 10 metres distance. 38 § 13.553-567 MHz: Radio transmitters for RFID.26 Maximum field strength: 60 dBµA/m at 10 metres distance. The transmission mask and antenna requirements for all combined frequency segments must provide at least equivalent performance to the techniques described in harmonised standards adopted under Directive 2014/54/EU. 39 § 14.00-14.35 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 40 § 18.068-18.168 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 41 § 21.00-21.45 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 42 § 24.89-24.99 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 43 § 26.82-26.83 MHz: Radio transmitters for radio control and telemetry. Carrier frequency: 26.825 MHz Maximum power: 100 mW ERP. Channelisation: 10 kHz 44 § 26.85-26.86 MHz: Radio transmitters for alarm transmission. Frequency: 26.855 MHz Maximum power: 100 mW ERP. Channelisation: 10 kHz 45 § 26.86-26.94 MHz: Radio transmitters for radio control and telemetry. Carrier frequency in MHz: 26.865 26.885 26.935 Maximum power: 100 mW ERP. Channelisation: 10 kHz 46 § 26.957-27.283 MHz: Radio transmitters for unspecified areas of application.27 Maximum power: 10 mW ERP, which equals 42 dBA/m at a distance of 10 metres. 47 § 26.96-26.99 MHz: Radio transmitters for CB radio. Carrier frequency in MHz: 25 See note 10. 26 See note 10. 27 See note 10. 15 26.965 26.975 26.985 Maximum power: 4 W ERP for frequency modulation or phase modulation. 4 RMS ERP for double-sideband amplitude modulation. 12 PEP ERP for single- sideband and suppressed carrier. Channelisation: 10 kHz 48 § 26.99-27.00 MHz: Radio transmitters for unspecified areas of application.28 Maximum power: 100 mW ERP. Transmission cycle: ≤ 0.1 %. The duty cycle limits do not apply to equipment for model control devices. 49 § 26.99-27.00 MHz: Radio transmitters for wireless baby monitor systems. Carrier frequency: 26.995 MHz Maximum power: 10 mW Channelisation: 10 kHz 50 § 27.00-27.04 MHz: Radio transmitters for CB radio. Carrier frequency in MHz: 27.005 27.015 27.025 27.035 Maximum power: 4 W ERP for frequency modulation or phase modulation. 4 RMS ERP for double-sideband amplitude modulation. 12 PEP ERP for single- sideband and suppressed carrier. Channelisation: 10 kHz 51 § 27.04-27.05 MHz: Radio transmitters for unspecified areas of application.29 Maximum power: 100 mW ERP. Transmission cycle: ≤ 0.1 %. The duty cycle limits do not apply to equipment for model control devices. 52 § 27.04-27.05 MHz: Radio transmitters for wireless baby monitor systems. Carrier frequency: 27.045 MHz Maximum power: 10 mW Channelisation: 10 kHz 53 § 27.05-27.09 MHz: Radio transmitters for CB radio. Carrier frequency in MHz: 27.055 27.065 27.075 27.085 Maximum power: 4 W ERP for frequency modulation or phase modulation. 4 RMS ERP for double-sideband amplitude modulation. 12 PEP ERP for single- sideband and suppressed carrier. Channelisation: 10 kHz 28 See note 10. 29 See note 10. 16 54 § 27.09-27.10 MHz: Radio transmitters for unspecified areas of application.30 Maximum power: 100 mW ERP. Transmission cycle: ≤ 0.1 %. The duty cycle limits do not apply to equipment for model control devices. 55 § 27.09-27.10 MHz: Radio transmitters for wireless baby monitor systems. Carrier frequency: 27.095 MHz Maximum power: 10 mW Channelisation: 10 kHz 56 § 27.10-27.14 MHz: Radio transmitters for CB radio. Carrier frequency in MHz: 27.105 27.115 27.125 27.135 Maximum power: 4 W ERP for frequency modulation or phase modulation. 4 RMS ERP for double-sideband amplitude modulation. 12 PEP ERP for single- sideband and suppressed carrier. Channelisation: 10 kHz 57 § 27.14-27.15 MHz: Radio transmitters for unspecified areas of application.31 Maximum power: 100 mW ERP. Transmission cycle: ≤ 0.1 %. The duty cycle limits do not apply to equipment for model control devices. 58 § 27.14-27.15 MHz: Radio transmitters for wireless baby monitor systems. Carrier frequency: 27.145 MHz Maximum power: 10 mW Channelisation: 10 kHz 59 § 27.15-27.19 MHz: Radio transmitters for CB radio. Carrier frequency in MHz: 27.155 27.165 27.175 27.185 Maximum power: 4 W ERP for frequency modulation or phase modulation. 4 RMS ERP for double-sideband amplitude modulation. 12 PEP ERP for single- sideband and suppressed carrier. Channelisation: 10 kHz 60 § 27.19-27.20 MHz: Radio transmitters for unspecified areas of application.32 Maximum power: 100 mW ERP. Transmission cycle: ≤ 0.1 %. The duty cycle limits do not apply to equipment for model control devices. 61 § 27.19-27.20 MHz: Radio transmitters for wireless baby monitor systems. Carrier frequency: 27.195 MHz 30 See note 10. 31 See note 10. 32 See note 10. 17 Maximum power: 10 mW Channelisation: 10 kHz 62 § 27.20-27.41 MHz: Radio transmitters for CB radio. Carrier frequency in MHz: 27.205 27.245 27.285 27.325 27.365 27.405 27.215 27.255 27.295 27.335 27.375 27.225 27.265 27.305 27.345 27.385 27.235 27.275 27.315 27.355 27.395 Maximum power: 4 W ERP for frequency modulation or phase modulation. 4 RMS ERP for double-sideband amplitude modulation. 12 PEP ERP for single- sideband and suppressed carrier. Channelisation: 10 kHz 63 § 28.0-29.7 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 64 § 30.0-37.5 MHz: Radio transmitters for medical implants.33 Maximum power: 1 mW ERP. Transmission cycle: ≤ 10 % 65 § 30.015-30.025 MHz: Radio transmitters for radio control of traffic lights. Frequency: 30.02 MHz Maximum power: 100 mW ERP. Channelisation 10 kHz 66 § 30.265-30.355 MHz: Radio transmitters for radio control and telemetry. Maximum power: 100 mW ERP. Channelisation: 10 kHz 67 § 30.925-31.375 MHz: Radio transmitters for land mobile communications. Carrier frequency in MHz: 30.930 31.050 31.120 31.190 31.260 31.330 30.940 31.060 31.130 31.200 31.270 31.340 30.950 31.070 31.140 31.210 31.280 31.350 30.960 31.080 31.150 31.220 31.290 31.360 30.970 31.090 31.160 31.230 31.300 31.370 31.030 31.100 31.170 31.240 31.310 31.040 31.110 31.180 31.250 31.320 Maximum power: 5 W ERP. 33 See note 10. 18 Channelisation: 10 kHz Transmission cycle: ≤ 10 % 68 § 34.995-35.275 MHz: Radio transmitters for model airplane radio control. Maximum power: 100 mW ERP. Channelisation: 10 kHz 69 § 39.525-39.550 MHz: Radio transmitters for telemetry and remote control within electricity, gas, heating, cooling, and water distribution. Carrier frequency: 39.5375 MHz Maximum power: 5 W ERP. Transmission cycle: ≤ 20% Channelisation: 25 kHz The antenna height may not exceed 10 metres above ground level. 70 § 40.450-40.575: Radio transmitters for telemetry and remote control within electricity, gas, heating, cooling, and water distribution. Carrier frequency in MHz: 40.4625 40.5375 40.5625 Maximum power: 5 W ERP. Transmission cycle: ≤ 20% Channelisation: 25 kHz The antenna height may not exceed 10 metres above ground level. 71 § 40.66-40.70 MHz: Radio transmitters for unspecified areas of application.34 Maximum power: 10 mW ERP. 72 § 40.66-40.80 MHz: Radio transmitters for radio control and telemetry. Maximum power: 100 mW ERP. Channelisation: 10 kHz 73 § 41.0-43.6 MHz: Radio transmitters for sound transmission. Maximum power: 10 mW ERP. Channelisation: Up to 200 kHz 74 § 50.0-52.0 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 75 § 69.0-69.2 MHz: Radio transmitters for land mobile communications. Carrier frequency in MHz: 69.0125 69.0375 69.0625 69.0875 69.1125 69.1375 69.1625 69.1875 Maximum power: 25 W ERP. Transmission cycle: < 10 % 34 See note 10. 19 Channel range: 25 kHz On the 69.0125 MHz carrier frequency, only mobile transmitters may be used in Västra Götaland and Halland counties. 76 § 69.600-69.725 MHz: Mobile radio transmitters. Maximum power: 5.0 W ERP. Transmission cycle: ≤ 10% Channel range: 12.5 kHz Carrier frequency in MHz: 69.60625 69.63125 69.65625 69.68125 69.70625 69.61875 69.64375 69.66875 69.69375 69.71875 77 § 87.5-108.0 MHz: Radio transmitters for sound transmission.35 Maximum power: 50 nW ERP. Channelisation: Up to 200 kHz 78 § 144-146 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 79 § 148.00-150.05 MHz: Radio transmitters for satellite terminals. The satellite terminal shall be included in the reported satellite network with which communication occurs. 80 § 151.52-151.53 MHz: Radio transmitters for direction finding and position transfer regarding people and animals. Carrier frequency: 151.525 MHz Maximum power: 100 mW ERP. Channelisation:10 kHz These frequencies work best within the following counties: Stockholm, Uppsala, Södermanland, Östergötland, Gotland, Värmland, Örebro, Västmanland, Dalarna, and Gävleborg. 81 § 151.545-151.555 MHz: Radio transmitters for direction finding and position transfer regarding people and animals. Carrier frequency: 151.55 MHz Maximum power: 100 mW ERP. Channelisation: 10 kHz 82 § 152.0075-152.2675 MHz: Radio transmitters for direction finding and position transfer regarding animals. Carrier frequency in MHz: 152.0125 152.0625 152.1125 152.1625 152.2125 152.0375 152.0875 152.1375 152.1875 152.2625 Maximum power: 100 mW ERP. 35 See note 10. 20 Channelisation: 10 kHz 83 § 155.3875-155.5375 MHz: Mobile radio transmitters for agriculture, forestry, and hunting. Carrier frequency in MHz: 155.400 155.425 155.450 155.475 155.500 155.525 Maximum power: 5 W ERP. Channelisation: 25 kHz The frequencies 155.400, 155.425, 155.450, and 155.475 MHz may not be used in Swedish internal waters and Swedish territorial waters. 84 § 155.9875-156.0125 MHz: Portable radio transmitters for land mobile communications. Frequency: 156 000 MHz Maximum power: 5 W ERP. Channelisation: 25 kHz 85 § 169.375-169.400 MHz: Radio transmitters for unspecified areas of application. Carrier frequency: 169.3875 MHz Maximum power: 500 mW ERP. Channelisation: 25 kHz 86 § 169.400-169.475 MHz: Radio transmitters for unspecified areas of application.36 Maximum power: 500 mW ERP. Channelisation: Up to 50 kHz Transmission cycle: ≤ 1%, for measuring equipment up to 10% 87 § 169.400-169.475 MHz: Radio transmitters for hearing aids.37 Maximum power: 500 mW ERP. Channelisation: Up to 50 kHz 88 § 169.4000-169.4875 MHz: Radio transmitters for unspecified areas of application.38 Maximum power: 10 mW ERP. Transmission cycle: ≤ 0.1% Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 89 § 169.4875-169.5875 MHz: Radio transmitters for hearing aids.39 Maximum power: 500 mW ERP. Channelisation: Up to 50 kHz 36 See note 10. 37 See note 10. 38 See note 10. 39 See note 10. 21 90 § 169.4875-169.5875 MHz: Radio transmitters for unspecified areas of application.40 Maximum power: 10 mW ERP. Transmission cycle: ≤ 0.001%. A duty cycle of ≤ 0.1% may be used between 00.00 and 06.00. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 91 § 169.5875-169.8125 MHz: Radio transmitters for unspecified areas of application.41 Maximum power: 10 mW ERP Transmission cycle: ≤ 0.1% Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 92 § 173.965-216 MHz: Radio transmitters for hearing aids.42 Maximum power: 10 mW ERP. Channelisation: maximum 50 KHz. Equipment shall be capable of covering the entire frequency range on a tuning range basis. A threshold of 35 dBμV/m is required to ensure the protection of a DAB receiver located 1.5 metres from an assistive listening device and the DAB signal strength shall be measured around the area in which the assistive listening device is used. Under all circumstances, assistive listening devices should be used at least 300 KHz from a DAB channel that is used. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. DAB (Digital Audio Broadcasting) refers to technology for terrestrial digital sound broadcasting. 93 § 401-406 MHz: Radio transmitters for medical implants.43 1. 401–402 MHz and 405–406 MHz Maximum power: 25 μ W ERP 25 KHz channel separation. Radio transmitters can combine several adjacent channels for increased bandwidth up to 100 KHz. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used; alternatively, a duty cycle of ≤ 0.1% may be used. 2. 402-405 MHz 40 See note 10. 41 See note 10. 42 See note 10. 43 See note 10. 22 Maximum power: 25 μ W ERP 25 kHz channelisation Radio transmitters can combine several adjacent channels for increased bandwidth if harmful interference does not occur on other services. 94 § 406.0-406.1 MHz: Radio transmitters intended for emergency alarms to a satellite system. The exemption also applies to radio transmitters for positioning systems in the frequency band of 121.45–121.55 MHz, if the transmitter is included in the same installation as a transmitter that is exempt according to the first paragraph. 95 § 429.4375-429.4625 MHz: Radio transmitters for alarm transmission. Carrier frequency: 429.45 MHz Maximum power: 500 mW ERP. Channelisation: 25 kHz 96 § 430-440 MHz: Radio transmitter for collecting medical data.44 -50 dBm/100 kHz ERP in power density, which, however, may not exceed a total power of -40 dBm/10 MHz (both limit values refer to measurements outside the patient’s body). The exception applies only to ULP WMCE applications (Ultra-Low Power Wireless Medical Capsule Endoscopy). 97 § 432-438 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 98 § 433.05-434.79 MHz: Radio transmitters for unspecified areas of application.45 Maximum power: 15 mW ERP. 99 § 439.6875-439.9875 MHz: Radio transmitters for radio control and telemetry. Carrier frequency in MHz: 439.700 439.750 439.800 439.850 439.900 439.950 439.725 439.775 439.825 439.875 439.925 439.975 Maximum power: 500 mW ERP. Channelisation: 25 kHz The frequency band can also be used as a channel. 100 § 443.9875-444.4125 MHz: Radio transmitters for telemetry and remote control within electricity, gas, heating, cooling, and water distribution. Carrier frequency in MHz: 444.00 444.05 444.40 Maximum power: 100 mW ERP for antenna heights that exceed 10 metres above ground level. 500 mW ERP for lower antenna heights. 44 See note 10. 45 See note 10. 23 Transmission cycle: ≤ 20% Channelisation: 25 kHz The maximum permitted field strength on the 444.00 MHz frequency at the borders with Norway and Finland is 25 dBμV/m and on the 444.05 and 444.40 MHz frequencies it is 17 dBμV/m. 101 § 444.5875-444.9875 MHz: Radio transmitters for land mobile communications. Carrier frequency in MHz: Channel band width Channel band width Channel band width 25kHz 12.5 kHz 6.25 kHz 444.590625 444.59375 444.596875 444.600 444.603125 444.60625 444.609375 444.640625 444.64375 444.646875 444.650 444.653125 444.65625 444.659375 444.665625 444.66875 444.671875 (not applicable) 444.678125 444.68125 444.684375 444.790625 444.79375 444.796875 444.800 444.803125 444.80625 444.809375 444.815625 444.81875 444.821875 444.825 444.828125 444.83125 444.834375 444.840625 444.84375 444.846875 444.850 444.853125 444.85625 444.859375 444.865625 444.86875 444.875 444.871875 444.88125 444.878125 24 444.884375 444.915625 444.91875 444.921875 444.925 444.928125 444.93125 444.934375 444.965625 444.96875 444.971875 444.975 444.978125 444.98125 444.984375 Maximum power: 2 W ERP. Transmission cycle: ≤ 10% 102 § 446.0-446.2 MHz: Radio transmitters for PMR446 equipment.46 Maximum power: 500 mW ERP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. PMR446 equipment is handheld (no base station or repeater use) and uses integrated antennae only in order to maximise sharing and minimise interference. PMR446 equipment is used for short range peer-to-peer communication and shall not be used as a part of infrastructure networks nor as repeaters. 103 § 713-733 MHz: Terminals connected to terrestrial electronic communications networks.47 Mobile or nomadic terminals: maximum mean power 23 dBm TRP Fixed or installed terminals: maximum mean power 23 dBm EIRP In the case of fixed or installed terminals with a directional antenna, the power limit of 23 dBm EIRP may be exceeded, under the conditions specified in the fifth and sixth paragraphs. Terminals with a directional antenna may not have an impact on terrestrial television reception in the frequency band of 470-694 MHz in households where there are persons who have their registered residence at the address concerned. ‘Impact’ means that the field strength from the terminal within its frequency block (dBμV/m/5 MHz) exceeds the field strength from the television transmitter within the concerned television channel (dBμV/m/8 MHz) by more than 41 dB when measured at 10 metres above ground level at the impacted household. Such impact as described in the above paragraph is only considered to exist if the television reception satisfies the following: The measured field strength at 10 metres above ground level from the television transmitter exceeds 44 + 20 log10(fMHz/500) dBμV/m/8 MHz, where fMHz is the centre frequency in MHz for the television channel concerned. 46 See note 10. 47 See Commission Implementing Decision (EU) 2016/687 of 28 April 2016 on the harmonisation of the 694-790 MHz frequency band for terrestrial systems capable of providing wireless broadband electronic communications services and for flexible national use in the Union. 25 In this provision, ‘directional antenna’ means a passive directional antenna with a maximum input power of 23 dBm. 104 § 823-832 MHz: Radio transmitters for sound transmission. 1. 823-826 MHz Bandwidth: ≤ 200 KHz Maximum power for handheld device: 10 mW ERP. Maximum power for a bodywear device: 50 mW ERP. 2. 826-832 MHz Bandwidth: ≤ 200 KHz Maximum power: 50 mW ERP. 105 § 823-832 MHz: Radio transmitters for wireless audio PMSE equipment.48 1. 823-826 MHz Maximum power for handheld device: 13 dBm (20 mW) EIRP Maximum power for a bodywear device: 20 dBm (100 mW) EIRP 2. 826-832 MHz Maximum power: 20 dBm (100 mW) EIRP ‘Wireless audio PMSE equipment’ means radio equipment used for transmission of analogue or digital audio signals between a limited number of transmitters and receivers, such as wireless microphones, in-ear monitor systems, or wireless microphone and in-ear communication and which is used mainly for the production of television or radio programmes or private or public social or cultural events. 106 § 832-862MHz: Terminals connected to terrestrial electronic communications networks.49 Mobile or nomadic terminals: maximum mean power 23 dBm TRP Fixed or installed terminals: maximum mean power 23 dBm EIRP In the case of fixed or installed terminals with a directional antenna, the power limit of 23 dBm EIRP may be exceeded, under the conditions specified in the fifth and sixth paragraphs. Terminals with a directional antenna may not have an impact on terrestrial television reception in the frequency band of 470-694 MHz in households where there are persons who have their registered residence at the address concerned. ‘Impact’ means that the field strength from the terminal within its frequency block (dBμV/m/5 MHz) exceeds the field strength from the television transmitter within the concerned television channel (dBμV/m/8 MHz) by more than 47 dB when measured at 10 metres above ground level at the impacted household. Such impact as described in the above paragraph is only considered to exist if the television reception satisfies the following: The measured field strength at 10 metres above ground level from the television transmitter exceeds 44 + 20 log10 48 See Commission Implementing Decision 2014/641/EU of 1 September 2014 on harmonised technical conditions of radio spectrum use by wireless audio programme making and special events equipment in the Union. 49 See Commission Decision 2010/267/EU of 6 May 2010 on harmonised technical conditions of use in the 790–862 MHz frequency band for terrestrial systems capable of providing electronic communications services in the European Union. 26 (fMHz/500) dBμV/m/8 MHz, where fMHz is the centre frequency in MHz for the television channel concerned. In this provision, ‘directional antenna’ means a passive directional antenna with a maximum input power of 23 dBm. 107 § 862-863 MHz: Radio transmitters for unspecified areas of application.50 Maximum power: 25 mW ERP. Bandwidth: ≤ 350 kHz Transmission cycle: ≤ 0.1% 108 § 863-865 MHz: Radio transmitters for wireless audio transmission and multimedia streaming.51 Maximum power: 10 mW ERP. 109 § 863-865 MHz: Radio transmitters for unspecified areas of application.52 Maximum power: 25 mW ERP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used; alternatively, a duty cycle of ≤ 0.1% may be used. 110 § 863-868 MHz: Radio transmitters for short-range devices for broadband in data networks.53 Maximum power: 25 mW ERP. Bandwidth: 600 kHz to ≤ 1 MHz. Transmission cycle: ≤ 10% for network termination points. Transmission cycle: ≤ 2.8% in other cases. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 111 § 865-868 MHz: Radio transmitters for unspecified areas of application.54 Maximum power: 25 mW ERP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used; alternatively, a duty cycle of ≤ 1 % may be used. 112 § 865-868 MHz: RFID radio transmitters that were placed on the market before 1 January 2018.55 1. 865-865.6 MHz Maximum power: 100 mW ERP. 2. 865.6-867.6 MHz 50 See note 10. 51 See note 10. 52 See note 10. 53 See note 10. 54 See note 10. 55 See Commission Decision 2006/804/EC of 23 November 2006 on harmonisation of the radio spectrum for radio frequency identification (RFID) devices operating in the ultra-high frequency (UHF) band. 27 Maximum power: 2 W ERP. 3. 867.6-868 MHz Maximum power: 500 mW ERP. Channelisation: Up to 200 kHz Radio transmitters can use all frequency bands. 113 § 865-868 MHz: Radio transmitters for RFID.56 Maximum power: 2 W ERP. Transmission from RFID readers is limited to four channels with 865.7 MHz, 866.3 MHz, 866.9 MHz, and 867.5 MHz as the centre frequencies. The maximum bandwidth per channel is 200 KHz. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 114 § 865-868 MHz: Radio transmitters for data networks.57 Maximum power: 500 mW ERP. Transmission cycle: ≤ 10% for network termination points. Transmission cycle: ≤ 2.5% in other cases. Transmission from RFID readers is limited to four channels with 865.6– 865.8 MHz, 866.2–866.4 MHz, 866.8–867.0 MHz, and 867.4–867.6 MHz as the centre frequencies. The maximum bandwidth per channel is 200 KHz. Adaptive power control (APC) is required, alternatively, other mitigation technique with at least an equivalent level of spectrum compatibility. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 115 § 868.0-868.6 MHz: Radio transmitters for unspecified areas of application.58 Maximum power: 25 mW ERP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used; alternatively, a duty cycle of ≤ 1 % may be used. 116 § 868.6-868.7 MHz: Radio transmitters for alarm transmission.59 Maximum power: 10 mW ERP. Channelisation: 25 kHz Transmission cycle: < 1.0% The frequency band can also be used as a channel. 56 See note 10. 57 See note 10. 58 See note 10. 59 See note 10. 28 117 § 868.7-869.2 MHz: Radio transmitters for unspecified areas of application.60 Maximum power: 25 mW ERP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used; alternatively, a duty cycle limit of ≤ 0.1% may also be used. 118 § 869.20-869.25 MHz: Radio transmitters for medical alerts.61 Maximum power: 10 mW ERP. Channelisation: 25 kHz Transmission cycle: ≤ 0.1% 119 § 869.25-869.40 MHz: Radio transmitters for alarm transmission.62 Maximum power: 10 mW ERP. Channelisation: 25 kHz Transmission cycle: ≤ 0.1% applies to the frequency band of 869.24–869.3 MHz and ≤ 1.0% to the frequency band of 869.3–869.4 MHz. 120 § 869.40-869.65 MHz: Radio transmitters for unspecified areas of application.63 Maximum power: 500 mW ERP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used; alternatively, a duty cycle limit of ≤ 10% may also be used. 121 § 869.65-869.70 MHz: Radio transmitters for alarm transmission.64 Maximum power: 25 mW ERP. Channelisation: 25 kHz Transmission cycle: ≤ 10% 122 § 869.7-870.0 MHz: Radio transmitters for unspecified areas of application.65 Maximum power: 5 mW ERP. The technical characteristics of any voice applications used shall be adapted so that they do not disrupt or interfere with the use of other radio installations. The exemption does not apply to audio and video applications. 123 § 869.7-870.0 MHz: Radio transmitters for unspecified areas of application.66 Maximum power: 25 mW ERP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used; alternatively, a duty cycle limit of ≤ 1% may be used. 124 § 870.5375-870.6625 MHz: Radio transmitters for telemetry and remote control within electricity, gas, heating, cooling, and water industry. 60 See note 10. 61 See note 10. 62 See note 10. 63 See note 10. 64 See note 10. 65 See note 10. 66 See note 10. 29 Carrier frequency in MHz: 870.55 870.60 870.65 Maximum power: 100 mW ERP for antenna heights that exceed 10 metres above ground level. 500 mW ERP for lower antenna heights. Transmission cycle: ≤ 20% Channelisation: 25 kHz 125 § 880-915 MHz: Radio transmitters for GSM communications that transmit from a terminal to a base station on board a vessel registered in Sweden and where the terminal is connected to and controlled by the base station (see Chapter 3, § 126 below) on the vessel in the frequency band of 925–960 MHz.67 The exemption also applies to such radio transmitters for GSM communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 126 § 925-960 MHz: Radio transmitters for GSM communications in Swedish territorial sea that transmit from a base station to a terminal on board a vessel registered in Sweden.68 Radio transmitters may not be used closer to the baseline than two nautical miles in accordance with the United Nations Convention on the Law of the Sea (UNCLOS). Between two and twelve nautical miles from the baseline, vessel base stations may only transmit signals through antennae that are placed inside the vessel. The vessel base station shall ensure that the output power of GSM terminals on board the vessel does not exceed 5 dBm. Outdoors on the vessel, the radiated power from the vessel base station may not exceed -80 dBm/200 KHz with a measured antenna gain of 0 dBi. The communications system shall avoid harmful interference by using the following mitigation factors or other methods that provide equivalent protection. – Between two and three nautical miles from the baseline, the receiver’s sensitivity and disconnection threshold for the mobile terminal used on board the vessel is to be equal to or greater than -70 dBm/200 KHz. – Between three and twelve nautical miles from the baseline, the receiver’s sensitivity and disconnection threshold for the mobile terminal used on board the vessel is to be equal to or greater than -75 dBm/200 KHz. – Discontinuous transmission is to be activated in the system’s uplink direction. – The vessel base station’s timing advance value shall be set as low as possible. 67 See Commission Decision 2010/166/EU of 19 March 2010 on harmonised conditions of use of radio spectrum for mobile communication services on board vessels (MCV services) in the European Union, as amended by Commission Implementing Decision (EU) 2017/191 of 1 February 2017 amending Decision 2010/166/EU, in order to introduce new technologies and frequency bands for mobile communication services on board vessels (MCV services) in the European Union, as well as Commission Recommendation 2010/167/EU of 19 March 2010 on the authorisation of systems for mobile communication services on board vessels (MCV services). 68 See note 63. 30 The exemption also applies to such radio transmitters for GSM communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 127 § 1 240–1 300 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 128 § 1 610-1 626.5 MHz: Radio transmitters for satellite terminals in satellite systems that operate without a downlink at 1 613.8-1 626.5 MHz (such as GlobalStar). The satellite terminal shall be included in the reported satellite network with which communication occurs. The radioastronomical observations at Onsala space observatory shall not cause harmful interference in the 1 610.6-1 613.8 MHz frequency band. 129 § 1 613.8-1 626.5 MHz: Radio transmitters for satellite terminals. Maximum power: 30 dBm EIRP. Transmission cycle: ≤ 1% The satellite terminal shall be included in the reported satellite network with which communication occurs and be so designed that reasonable freedom from interference is ensured for other uses in the frequency band. 130 § 1 621.35-1 626.5 MHz: Radio transmitters for satellite terminals in satellite systems that operate with a downlink at 1 613.8-1 626.5 MHz (such as IRIDIUM). The satellite terminal shall be included in the reported satellite network with which communication occurs. The radioastronomical observations at Onsala space observatory shall not cause harmful interference in the 1 610.6-1 613.8 MHz frequency band. 131 § 1 626.5-1 645.5 MHz: Radio transmitters for satellite terminals. The satellite terminal shall be included in the reported satellite network with which communication occurs. 132 § 1 646.5–1 660.5 MHz: Radio transmitters for satellite terminals. The satellite terminal shall be included in the reported satellite network with which communication occurs. 133 § 1 710–1 785 MHz: Radio transmitters for GSM and LTE FDD communications that transmit from a terminal to a base station on board an aircraft registered in Sweden and where the terminal is connected to and controlled by the base station (see Chapter 3, § 140 below) on the aircraft in the frequency band of 1 805–1 880 Mhz.69 69 See Commission Decision 2008/294/EC of 7 April 2008 on harmonised conditions of spectrum use for the operation of mobile communication services on aircraft (MCA services) in the Community, as amended by Commission Implementing Decision 2013/654/EU, as amended by Commission Implementing Decision (EU) 2016/2317 of 16 December 2016 amending Decision 2008/294/EC and Implementing Decision 2013/654/EU, in order to simplify the operation of mobile communications on board aircraft (MCA services) in the Union, and Commission Recommendation 2008/295/EC of 7 April 2008 on authorisation of mobile communication services on aircraft (MCA services) in the European Community. 31 The exemption also applies to such radio transmitters on foreign-registered aircraft if the registration state of the aircraft has issued a licence, or equivalent, to use the radio transmitter. 134 § 1 710-1 785 MHz: Radio transmitters for GSM communications that transmit from a terminal to a base station on board a vessel registered in Sweden and where the terminal is connected to and controlled by the base station (see Chapter 3, § 141 below) on the vessel in the frequency band of 1 805–1 880 MHz.70 The exemption also applies to such radio transmitters for GSM communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 135 § 1 710-1 785 MHz: Radio transmitters for LTE communications that transmit from a terminal to a base station on board a vessel registered in Sweden and where the terminal is connected to and controlled by the base station (see Chapter 3, § 142 below) on the vessel in the frequency band of 1 805–1 880 MHz.71 The exemption also applies to such radio transmitters for LTE communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 136 § 1 780.0–1 785.0 with centre frequency 1 782.6 MHz: Radio transmitters for indoors UMTS communications that transmit from a terminal to a base station and where the terminal is connected to and controlled by the indoors base station (see Chapter 3, § 143 below) in the frequency band of 1 875.0–1 880.0 MHz.72 Maximum power: 23 dBm EIRP. Radio transmitters shall meet the requirements described in specific harmonised standards for the current uplink connection technology for UMTS with the centre frequency 1 782.6 MHz. 137 § 1 780.1-1 785.0 MHz: Radio transmitters for indoors LTE communications that transmit from a terminal to a base station and where the terminal is connected to and controlled by the indoors base station (see Chapter 3, § 144 below) in the frequency band of 1 875.1–1 880.0 MHz.73 Maximum power: 23 dBm EIRP. LTE with channel width of 1.4 MHz: Centre frequency in the range of 1 780.8– 1 784.3 MHz. LTE with channel width of 3.0 MHz: Centre frequency in the range of 1 781.6– 1 783.5 MHz. Radio transmitters shall meet the requirements described in specific harmonised standards for uplink connections in LTE communication with the lower and upper ends of the signal’s spectrum in the 1 780.1–1 785.0 MHz band. 70 See note 63. 71 See note 63. 72 See Commission Implementing Decision (EU) 2018/637 of 20 April 2018 amending Decision 2009/766/EC on the harmonisation of the 900 MHz and 1800 MHz frequency bands for terrestrial systems capable of providing pan-European electronic communications services in the Community as regards relevant technical conditions for the Internet of Things. 73 See note 68. 32 LTE also includes LTE-MTC and LTE-eMTC. 138 § 1 780.1-1 785.0 MHz: Radio transmitters for indoors WiMAX communications that transmit from a terminal to a base station and where the terminal is connected to and controlled by the indoors base station (see Chapter 3, § 145 below) in the frequency band of 1 875.1–1 880.0 MHz.74 Maximum power: 23 dBm EIRP. Radio transmitters shall meet the requirements described in specific harmonised standards for uplink connections in WiMAX with the lower and upper ends of the signal’s spectrum in the 1 780.1–1 785.0 MHz band. 139 § 1 780.3-1 784.9 MHz: Radio transmitters for indoors GSM communications or Narrowband IoT that transmit from a terminal to a base station and where the terminal is connected to and controlled by the indoors base station (see Chapter 3, § 146 below) in the frequency band of 1 875.3–1 879.9 MHz.75 Maximum power: 23 dBm EIRP. Radio transmitters shall meet the requirements described in specific harmonised standards for uplink connections in GSM communications with the centre frequency in the 1 780.4–1 784.8 MHz range. The GSM also includes EC-GSM IoT. 140 § 1 805-1 880 MHz: Radio transmitters for GSM and LTE FDD communications on board aircraft registered in Sweden that transmit from a base station to a terminal.76 1. General terms The radio transmitter may only be used when the aircraft’s height exceeds 3 000 metres above the ground. The exemption also applies to radio transmitters on foreign-registered aircraft if the registration state of the aircraft has issued a licence, or equivalent, to use the radio transmitter. 2. Use of base stations/Node B The base station in an aircraft shall ensure that the nominal output power of GSM terminals in the aircraft does not exceed 0 dBm/200 KHz at all stages of communication, including initial access. In the case of LTE FDD terminals, Node B in an aircraft shall ensure that the output power of the terminals does not exceed a nominal value of 5 dBm/5 MHz at all stages of communication. Outside the aircraft, the EIRP from the base station/Node B may not exceed the values in Table 1. 74 See note 68. 75 See note 68. 76 See note 65. 33 Table 1 Height above Maximum system EIRP outside the aircraft in dBm/channel ground (metres) Network control Aircraft’s base Aircraft’s base unit (NCU) station/Node B station/Node B and network control unit Band: 900 Mhz Band: 1 800 MHz Band: 2 100 MHz Channel Channel band width Channel band width bandwidth = = 200 kHZ = 3,84 MHz 3.84 MHz 3 000 -6.2 -13.0 1.0 4 000 -3.7 -10.5 3.5 5 000 -1.7 -8.5 5.4 6 000 -0.1 -6.9 7.0 7 000 1.2 -5.6 8.3 8 000 2.3 -4.4 9.5 3. Use of terminals During the portion of a flight in which mobile communication services on aircraft (MCA services) may be used, the terminals that receive signals in the frequency bands of 925–960 MHz and 2 110–2 170 MHz must be prevented from connecting to terrestrial UMTS mobile networks. This can be achieved by installation of a network control unit that increases the noise level in the mobile receiving frequencies inside the cabin and/or a sufficient shielding to further weaken the signal to or from the airframe. The values in Table 2 may not be exceeded. Table 2 Height above ground (metres) Maximum EIRP outside the Maximum EIRP outside the aircraft from a GSM mobile aircraft from a LTE mobile terminal in dBm/200 kHz terminal in dBm/5 MHz GSM 1 800 LTE 1 800 3 000 -3.3 1.7 4 000 -1.1 3.9 5 000 0.5 5 6 000 1.8 5 7 000 2.9 5 8 000 3.8 5 MCA operators may decide to use a network control unit that increases the noise level in the mobile receiving frequencies inside the cabin, even in the frequency bands specified in Table 3. 34 Table 3 Frequency band (MHz) Terrestrial system 460-470 LTE: 791-821 LTE: 1 805-1 880 GSM, LTE 2 570–2 620 LTE: 2 620– 2 690 LTE: When an MCA operator decides to use a network control unit in the frequency bands specified in Table 3, the maximum values specified in Table 4 shall be applied to the EIRP outside of the aircraft from the network control unit/aircraft’s base station/aircraft’s Node B, together with the values specified in Table 1. Table 4 Maximum EIRP outside the aircraft from the network control unit/aircraft’s base station/aircraft’s Node B Height above 460-470 MHz 791-821 MHz 1 805–1 880 MHz 2 570–2 690 MHz ground (metres) dBm/1.25 MHz dBm/10 MHz dBm/200 kHz dBm/4.75 MHz 3 000 -17.0 -0.87 -13.0 1.9 4 000 -14.5 1.63 -10.5 4.4 5 000 -12.6 3.57 -8.5 6.3 6 000 -11.0 5.15 -6.9 7.9 7 000 -9.6 6.49 -5.6 9.3 8 000 -8.5 7.65 -4.4 10.4 141 § 1 805-1 880 MHz: Radio transmitters for GSM communications in Swedish territorial sea that transmit from a base station to a terminal on board a vessel registered in Sweden.77 Radio transmitters may not be used closer to the baseline than two nautical miles in accordance with the United Nations Convention on the Law of the Sea (UNCLOS). Between two and twelve nautical miles from the baseline, vessel base stations may only transmit signals through antennae that are placed inside the vessel. The vessel base station shall ensure that the maximum radiated power of GSM terminals on board the vessel does not exceed 0 dBm. Outdoors on the vessel, the radiated power from the vessel base station may not exceed -80 dBm/200 KHz with a measured antenna gain of 0 dBi. The communications system shall avoid harmful interference by using the following mitigation factors or other methods that provide equivalent protection. 77 See note 63. 35 – Between two and three nautical miles from the baseline, the receiver’s sensitivity and disconnection threshold for the mobile terminal used on board the vessel is to be equal to or greater than -70 dBm/200 KHz. – Between three and twelve nautical miles from the baseline, the receiver’s sensitivity and disconnection threshold for the mobile terminal used on board the vessel is to be equal to or greater than -75 dBm/200 KHz. – Discontinuous transmission is to be activated in the system’s uplink direction. – The vessel base station’s timing advance value shall be set as low as possible. The exemption also applies to such radio transmitters for GSM communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 142 § 1 805-1 880 MHz: Radio transmitters for LTE communications in Swedish territorial sea that transmit from a base station to a terminal on board a vessel registered in Sweden.78 Radio transmitters shall not be used within four nautical miles of the baseline in accordance with the United Nations Convention on the Law of the Sea (UNCLOS). Between four and twelve nautical miles from the baseline, vessel base stations may only transmit signals through antennae that are placed inside the vessel. Only a bandwidth of up to 5 MHz (duplex) may be used in the frequency band. The vessel base station shall ensure that the maximum radiated power of LTE terminals on board the vessel does not exceed 0 dBm. Vessel base station transmissions on deck may not exceed -98 dBm/5 MHz. The communications system shall avoid harmful interference by using the following mitigation factors or other methods that provide equivalent protection: – Between four and twelve nautical miles from the baseline, the quality criterion (minimum necessary received signal level in the cell) for the mobile terminal used on board the vessel shall be equal to or higher than -83 dBm/5 MHz. – The Public Land Mobile Network selection timer shall be set to 10 minutes. – The Radio Resource Control user inactivity release timer shall be set to 2 seconds. – The timing advance value of the vessel base station shall be set according to a cell range for the MCV distributed antenna system equal to 400 metres. – The centre frequency used by MCV operators shall not coincide with those of land-based networks. The exemption also applies to such radio transmitters for LTE communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 143 § 1 875.0–1 880.0 with centre frequency 1 877.6 MHz: Radio transmitters for indoors UMTS communications that transmit from a base station to a terminal.79 Maximum power: 20 dBm EIRP. 78 See note 63. 79 See note 68. 36 Radio transmitters shall meet the requirements described in specific harmonised standards for downlink connection for UMTS with the centre frequency of 1 877.6 MHz. 144 § 1 875.1-1 880.0 MHz: Radio transmitters for indoors LTE communications that transmit from a base station to a terminal.80 Maximum power: 20 dBm EIRP. LTE with channel bandwidth of 1.4 MHz: Centre frequency in the range of 1 875.8–1 879.3 MHz. LTE with channel bandwidth of 3 MHz: Centre frequency in the range of 1 876.6–1 878.5 MHz. Radio transmitters shall meet the requirements described in specific harmonised standards for downlink connections in LTE with the lower and upper ends of the signal’s spectrum in the 1 875.1–1 880.0 MHz band. LTE also includes LTE-MTC and LTE-eMTC. 145 § 1 875.1-1 880.0 MHz: Radio transmitters for indoors WiMAX communications that transmit from a base station to a terminal.81 Maximum power: 20 dBm EIRP. Radio transmitters shall meet the requirements described in specific harmonised standards for downlink connections in WiMAX with the lower and upper ends of the signal’s spectrum in the 1 875.1–1 880.0 MHz band. 146 § 1 875.3-1 879.9 MHz: Radio transmitters for indoors GSM communications or Narrowband IoT that transmit from a base station to a terminal.82 Maximum power: 20 dBm EIRP. Radio transmitters shall meet the requirements described in specific harmonised standards for downlink connection for GSM with centre frequency in the range of 1 875.4–1 879.8 MHz. The GSM also includes EC-GSM IoT. 147 § 1 880-1 900 MHz: Radio transmitters in a DECT system. 148 § 1 920–1 980 MHz: Radio transmitters for UMTS FDD communications that transmit from a terminal to a base station on board an aircraft registered in Sweden and where the radio transmitter is connected to and controlled by the base station (see Chapter 3, § 152 below) on the aircraft in the frequency band of 2 110– 2 170 MHz.83 The exemption also applies to such radio transmitters on foreign-registered aircraft if the registration state of the aircraft has issued a licence, or equivalent, to use the radio transmitter. 149 § 1 920-1 980 MHz: Radio transmitters for UMTS communications in Sweden territorial sea that transmit from a terminal to a base station on board a vessel registered in Sweden and where the terminal is connected to and controlled by the 80 See note 68. 81 See note 68. 82 See note 68. 83 See note 65. 37 base station (see Chapter 3, § 153) on the vessel in the frequency band of 2 110– 2 170 MHz.84 The exemption also applies to such radio transmitters for UMTS communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 150 § 1 980–2 010 MHz: Radio transmitters for non-airborne satellite terminals.85 The satellite terminal shall be included in the reported satellite network with which communication occurs. The notified network, which includes the terminals, shall provide mobile satellite services in accordance with Decision No 626/2008/EC of the European Parliament and of the Council. 151 § 1 980-2 010 MHz: Radio transmitters for airborne satellite terminals.86 Radio transmitters that communicate with the satellite may only be used when the flight altitude exceeds 3 000 metres above ground level. Radio transmitters that communicate with the satellite network’s complementary ground-based stations used at fixed locations may only be used when the flight altitude exceeds 1 000 metres above ground level and with a maximum of 40 dBm EIRP. The satellite terminal shall be included in the reported satellite network with which communication occurs. The notified network, which includes the terminals, shall provide mobile satellite services in accordance with Decision No 626/2008/EC of the European Parliament and of the Council. 152 § 2 110-2 170 MHz: Radio transmitters for UMTS FDD communications on board aircraft registered in Sweden that transmit from a base station to a terminal.87 1. General terms The radio transmitter may only be used when the aircraft’s height exceeds 3 000 metres above the ground. The exemption also applies to radio transmitters on foreign-registered aircraft if the registration state of the aircraft has issued a licence, or equivalent, to use the radio transmitter. 2. Use of Node B The aircraft Node B, while in operation, must limit the transmit power of all UMTS terminals that transmit in the 2 100 MHz band to a nominal value of - 6 dBm/3.84 MHz. This applies to all stages of communication. The maximum number of users may not exceed 20. Outside the aircraft, the EIRP from Node B may not exceed the values in Table 1. 84 See note 65. 85 See Commission Decision 2007/98/EC of 14 February 2007 on the harmonised use of radio spectrum in the 2 GHz frequency bands for the implementation of systems providing mobile satellite services. 86 See note 81. 87 See note 65. 38 Table 1 Height Maximum system EIRP outside the aircraft in dBm/channel above ground Network control unit Aircraft’s Node B Aircraft’s Node B and (metres) (NCU) network control unit Band: 900 MHz Band: 1 800 MHz Band: 2 100 MHz Channel bandwidth = Channel bandwidth = Channel bandwidth = 3.84 MHz 200 kHz 3.84 MHz 3 000 -6.2 -13.0 1.0 4 000 -3.7 -10.5 3.5 5 000 -1.7 -8.5 5.4 6 000 -0.1 -6.9 7.0 7 000 1.2 -5.6 8.3 8 000 2.3 -4.4 9.5 3. Use of terminals During the portion of a flight in which mobile communication services on aircraft (MCA services) may be used, the terminals that receive signals in the frequency bands of 925–960 MHz and 2 110–2 170 MHz must be prevented from connecting to terrestrial UMTS mobile networks. This can be achieved by installation of a network control unit that increases the noise level in the mobile receiving frequencies inside the cabin and/or a sufficient shielding to further weaken the signal to or from the airframe. The values in Table 2 below may not be exceeded. Table 2 Height above ground (metres) Maximum EIRP outside the aircraft from a UMTS mobile terminal in dBm/3.84 MHz UMTS 2 100 MHz 3 000 3.1 4 000 5.6 5 000 7 6 000 7 7 000 7 8 000 7 MCA operators may decide to use a network control unit that increases the noise level in the mobile receiving frequencies inside the cabin, even in the frequency bands specified in Table 3. 39 Table 3 Frequency band (MHz) Terrestrial system 460-470 LTE: 791-821 LTE: 1 805-1 880 GSM, LTE 2 570–2 620 LTE: 2 620-2 690 LTE: When an MCA operator decides to use a network control unit in the frequency bands specified in Table 3, the maximum values specified in Table 4 shall be applied to the EIRP outside of the aircraft from the network control unit/aircraft’s base station/aircraft’s Node B, together with the values specified in Table 1. Table 4 Maximum EIRP outside the aircraft from the network control unit/aircraft’s base station/aircraft’s Node B Height above 460-470 MHz 791-821 MHz 1 805–1 880 MHz 2 570–2 690 MHz ground (metres) dBm/1.25 MHz dBm/10 MHz dBm/200 kHz dBm/4.75 MHz 3 000 -17.0 -0.87 -13.0 1.9 4 000 -14.5 1.63 -10.5 4.4 5 000 -12.6 3.57 -8.5 6.3 6 000 -11.0 5.15 -6.9 7.9 7 000 -9.6 6.49 -5.6 9.3 8 000 -8.5 7.65 -4.4 10.4 153 § 2 110-2 170 MHz: Radio transmitters for UMTS communications in Swedish territorial sea that transmit from a base station to a terminal on board a vessel registered in Sweden.88 Radio transmitters may not be used closer to the baseline than two nautical miles in accordance with the United Nations Convention on the Law of the Sea (UNCLOS). Between two and twelve nautical miles from the baseline, vessel base stations may only transmit signals through antennae that are placed inside the vessel. Only a bandwidth of up to 5 MHz (duplex) may be used. The vessel base station shall ensure that the output power of UMTS terminals on board the vessel does not exceed 0 dBm/5 MHz. Vessel base station transmissions on deck may not exceed - 102 dBm/5 MHz (Common Pilot Channel). The communications system shall avoid harmful interference by using the following mitigation factors or other methods that provide equivalent protection: 88 See note 65. 40 – Between two and twelve nautical miles from the baseline, the quality criterion (minimum necessary received signal level in the cell) for the mobile terminal used on board the vessel shall be equal to or higher than -87 dBm/5 MHz. – The Public Land Mobile Network selection timer shall be set to 10 minutes. – The Radio Resource Control user inactivity release timer shall be set to 2 seconds. – The timing advance value of the vessel base station shall be set according to a cell range for the MCV distributed antenna system equal to 600 metres. – The centre frequency used by MCV operators shall not coincide with those of land-based networks. – The exemption also applies to such radio transmitters for UMTS communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 154 § 2 400–2 450 MHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 100 mW PEP. Otherwise, § 14(3)-(6) apply. 155 § 2 400.0-2 483.5 MHz: Radio transmitters for unspecified areas of application.89 Maximum power: 25 mW EIRP. 156 § 2 400.0-2 483.5 MHz: Radio transmitters for radio determination.90 Maximum power: 25 mW EIRP. 157 § 2 400.0-2 483.5 MHz: Radio transmitters for data transfer.91 Maximum power: 100 mW EIRP The power density when frequency hopping modulation is used shall be a maximum of 100 mW/100 KHz EIRP and for other types of modulation it shall not exceed 10 mW/MHz EIRP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 158 § 2 446–2 454 MHz: Radio transmitters for RFID.92 Maximum power: 500 mW EIRP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 159 § 2 483.5-2 500.0 MHz: Radio transmitters for MBAN systems.93 1. MBAN systems for indoor applications in healthcare facilities. Maximum power: 1 mW EIRP Bandwidth: ≤ 3 MHz. Transmission cycle: ≤ 10% 89 See note 10. 90 See note 10. 91 See note 10. 92 See note 10. 93 See note 10. 41 2. MBAN systems for indoor applications in patients’ homes. Maximum power: 10 mW EIRP Bandwidth: ≤ 3 MHz. Transmission cycle: 2% Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. A Medical Body Area Network System (MBANS) in this context is a system that is used for medical data acquisition and intended to be used in healthcare facilities or patients’ homes. They are low power radio systems used for the transmission of non- voice data to and from medical devices for the purposes of monitoring, diagnosing, and treating patients as prescribed by duly authorised healthcare professionals and are defined in the context of medical applications only. 160 § 2 483.5-2 500.0 MHz: Radio transmitters for medical implants.94 Maximum power: 10 mW EIRP. Channel spacing: 1 MHz. The whole frequency band may also be used dynamically as a channel for high-speed data transfer. Transmission cycle: ≤ 10% Peripheral master units may only be used indoors. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 161 § 2 500–2 570 MHz: Radio transmitters for LTE communications that transmit from a terminal to a base station on board a vessel registered in Sweden and where the terminal is connected to and controlled by the base station (see Chapter 3, § 162 below) on the vessel in the frequency band of 2 620–2 690 MHz.95 The exemption also applies to such radio transmitters for LTE communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 162 § 2 620–2 690 MHz: Radio transmitters for LTE communications in Swedish territorial sea that transmit from a base station to a terminal on board a vessel registered in Sweden.96 Radio transmitters shall not be used within four nautical miles of the baseline in accordance with the United Nations Convention on the Law of the Sea (UNCLOS). Between four and twelve nautical miles from the baseline, vessel base stations may only transmit signals through antennae that are placed inside the vessel. Only a bandwidth of up to 5 MHz (duplex) may be used in the frequency band. The vessel base station shall ensure that the maximum radiated power of LTE terminals on board the vessel does not exceed 0 dBm. Vessel base station transmissions on deck may not exceed -98 dBm/5 MHz. 94 See note 10. 95 See note 63. 96 See note 63. 42 The communications system shall avoid harmful interference by using the following mitigation factors or other methods that provide equivalent protection: – Between four and twelve nautical miles from the baseline, the quality criterion (minimum necessary received signal level in the cell) for the mobile terminal used on board the vessel shall be equal to or higher than -83 dBm/5 MHz. – The Public Land Mobile Network selection timer shall be set to 10 minutes. – The Radio Resource Control user inactivity release timer shall be set to 2 seconds. – The timing advance value of the vessel base station shall be set according to a cell range for the MCV distributed antenna system equal to 400 metres. – The centre frequency used by MCV operators shall not coincide with those of land-based networks. The exemption also applies to such radio transmitters for LTE communications on foreign-registered vessels if the registration state of the vessel has issued a licence or equivalent, with the same conditions as those above, to use the radio transmitter. 163 § 2.9 GHz–3.1 GHz: Radio transmitters for navigation radar on vessels. Highest pulse power: 5 mW EIRP. 164 § 4.5-7.0 GHz: Radio transmitters for level measurement in closed vessels or spaces.97 Radiation outside the vessel or space may not exceed -41.3 dBm/MHz. 165 § 5.15-5.35 GHz: Radio transmitters for data transfer indoors.98 Maximum radiated mean power: 200 mW EIRP. Maximum mean EIRP density: 10 mW/MHz EIRP in all 1 MHz bands. The TPC (Transmitter Power Control) mitigation technique with an average mitigation factor of at least 3 dB of the system’s maximum permitted output power shall be used for radio transmitters in the 5.25-5.35 GHz frequency band. If the TPC mitigation technique is not used, the maximum radiated mean power and the corresponding mitigations of the mean EIRP density shall be reduced by 3 dB. In the 5.25-5.35 GHz frequency band, dynamic frequency selection with even distribution over all channels shall be used for compatibility with radiodetermination in accordance with the relevant harmonised standard, or other technology that provides equivalent protection. 166 § 5.47-5.65 GHz: Radio transmitters for navigation radar on vessels. Highest pulse power: 5 mW EIRP. 167 § 5.470-5.725 GHz: Radio transmitters for data transfer.99 Maximum radiated mean power: 1 W EIRP. Maximum mean EIRP density: 50 mW/MHz in all 1 MHz bands. The mitigation technique TPC (Transmitter Power Control) with an average mitigation factor of at least 3 dB of the system’s maximum permitted output power 97 See note 10. 98 See Commission Decision 2005/513/EC of 11 July 2005 on the harmonised use of radio spectrum in the 6 GHz frequency band for the implementation of wireless access systems including radio local area networks (WAS/RLANs), as amended by Commission Decision 2007/90/EC. 99 See note 104. 43 shall be used. If the TPC mitigation technique is not used, the maximum radiated mean power and the corresponding mitigations of the mean EIRP density shall be reduced by 3 dB. Dynamic frequency selection with even distribution over all channels shall be used for compatibility with radiodetermination in accordance with the relevant harmonised standard, or other technology that provides equivalent protection. 168 § 5.65-5.85 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 169 § 5.725-5.875 GHz: Radio transmitters for unspecified areas of application.100 Maximum power: 25 mW EIRP. 170 § 5.795-5.815 GHz: Radio transmitters for road and vehicle telemetry. Maximum power: 2 W EIRP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 171 § 5.855-5.875 GHz: Radio transmitters for non-safety related applications in intelligent road transport systems. Maximum average power density: 23 dBm/MHz EIRP. Maximum total average transmitting power: 33 dBm EIRP. Minimum power regulation interval: 30 dB. The exemption applies only to vehicle-to-vehicle, vehicle-to-infrastructure and infrastructure-to-vehicle communication systems. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 172 § 5.875-5.925 GHz: Radio transmitters for safety-related applications in intelligent road transport systems.101 Frequency band: 5.875–5.905 and 5.905–5.925 GHz Maximum average power density: 23 dBm/MHz EIRP. Maximum total average transmitting power: 33 dBm EIRP. Minimum power regulation interval: 30 dB. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 173 § 6.0-8.5 GHz: Radio transmitters for level measurement.102 Maximum power: 7 dBm/MHz peak EIRP density and -33 dBm/MHz mean EIRP density. Techniques for adaptive power control and antenna requirements as well as equivalent techniques to access spectrum and mitigate interference that provide at 100 See note 10. 101 Frequency band 5.875-5.905 GHz: See Commission Decision 2008/671/EC of 5 August 2008 on the harmonised use of radio spectrum in the 5 875–5 905 MHz frequency band for safety-related applications of Intelligent Transport Systems (ITS). 102 See note 10. 44 least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. The radioastronomical observations at Onsala space observatory shall not be exposed to harmful interference. 174 § 8.5-10.6 GHz: Radio transmitters for level measurement in closed vessels or spaces.103 Radiation outside the vessel or space may not exceed -41.3 dBm/MHz. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 175 § 9.225-9.500 GHz: Radio transmitters for navigation radar on vessels. Highest pulse power: 5 mW EIRP. 176 § 10.0-10.5 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 177 § 10.25-10.28 GHz: Radio transmitters for radiodetermination. Maximum power: 500 mW EIRP. If the antenna gain is greater than 20 dBi, the power may not exceed 5 W EIRP. 178 § 10.35-10.38 GHz: Radio transmitters for radiodetermination. Maximum power: 500 mW EIRP. If the antenna gain is greater than 20 dBi, the power may not exceed 5 W EIRP. 179 § 10.51-10.58 GHz: Radio transmitters for radiodetermination. Maximum power: 500 mW EIRP. If the antenna gain is greater than 20 dBi, the power may not exceed 5 W EIRP. 180 § 13.4-14.0 GHz: Radio transmitters for radiodetermination. Maximum power: 25 mW EIRP. 181 § 14.0-14.5 GHz: Radio transmitters for satellite terminals on land. Maximum power: 60 dBW EIRP. The following power restrictions apply in the vicinity of aerodromes. Maximum power EIRP. (dBW) Shortest distance from the airport area (metres) < 34 0 34-50 500 50-55.3 1 800 55.3-57 2 300 57-60 3 500 Satellite terminals shall be included in the reported satellite network with which communication occurs. 103 See note 10. 45 182 § 14.0-14.5 GHz: Radio transmitters for satellite terminals on vessels. Maximum power: 50 dBW EIRP. The antenna diameter shall be greater than 0.6 metres. The satellite terminal shall be included in the reported satellite network with which communication occurs. 183 § 14.0-14.5 GHz: Radio transmitters for satellite terminals on aircraft (AES). Maximum power: 50 dBW EIRP. The satellite terminal shall be included in the reported satellite network with which communication occurs. 184 § 17.1-17.3 GHz: Radio transmitters for data transfer. Maximum power: 100 mW EIRP. 185 § 17.1-17.3 GHz: Radio transmitters for radio determination.104 Maximum power: 26 dBm EIRP. The exemption applies only in terrestrial systems. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 186 § 24.00-24.25 GHz: Radio transmitters for unspecified areas of application.105 Maximum power: 100 mW EIRP. 187 § 24.00-24.25 GHz: Radio transmitters for radiodetermination. Maximum power: 100 mW EIRP. 188 § 24.00-24.25 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 189 § 24.05-24.075 GHz: Radio transmitters for transport/traffic telematics equipment. Maximum power: 100 mW EIRP. 190 § 24.05-26.5 GHz: Radio transmitters for level measurement.106 Maximum power: 26 dBm/50 MHz peak value for power density EIRP and -14 dBm/MHz mean power density EIRP. Techniques for adaptive power control and antenna requirements as well as equivalent techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. The radioastronomical observations at Onsala space observatory shall not be exposed to harmful interference. 191 § 24.05-27.00 GHz: Radio transmitters for level measurement in closed vessels or spaces.107 Radiation outside the vessel or space may not exceed -41.3 dBm/MHz. 104 See note 10. 105 See note 10. 106 See note 10. 107 See note 10. 46 Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 192 § 24.075-24.15 GHz: Radio transmitters for transport/traffic telematics equipment intended for terrestrial vehicle radar.108 Maximum power: 100 mW EIRP. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. Dwell time limits and frequency modulation range apply as specified in harmonised standards. 193 § 24.075-24.15 GHz: Radio transmitters for transport/traffic telematics equipment.109 Maximum power: 0.1 mW EIRP. 194 § 24.15-24.25 GHz: Radio transmitters for transport/traffic telematics equipment.110 Maximum power: 100 mW EIRP. 195 § 24.25-26.65 GHz: Vehicle-mounted radio transmitters for radar functions.111 Maximum mean power density is -41.3 dBm/MHz EIRP with an upper limit of 0 dBm/50 MHz EIRP. The radio transmitter shall only be in operation when the vehicle is in use. The exemption does not apply within a 12 km radius of the Onsala radioastronomical observatory (57°23’45’’ N 11°55’35’’ E). For vehicles that have been brought into operation in the EU after 30 June 2007, the radio transmitter shall automatically be deactivated within a radius of 12 km from Onsala radioastronomical observatory. The exemption applies through 1 January 2018. The 1 January 2018 date will, however, be extended by 4 years for automotive short-range radar equipment for which an application for type approval has been submitted in accordance with Article 6.6 of Directive 2007/46/EC of the European Parliament and of the Council and granted before 1 January 2018. 196 § 29.5-30.0 GHz: Radio transmitters for satellite communications. Maximum power: 60 dBW EIRP. The following power restrictions apply in the vicinity of aerodromes. Maximum power EIRP. (dBW) Shortest distance from the airport area < 34 0 34-50 500 50-55.3 1 800 108 See note 10. 109 See note 10. 110 See note 10. 111 See Commission Decision 2005/50/EC of 17 January 2005 on the harmonisation of the 24 GHz range radio spectrum band for the time-limited use by automotive short-range radar equipment in the Community, as amended by Commission Decision 2011/485/EU. 47 55.3-57 2 300 57-60 3 500 The satellite terminal shall be included in the reported satellite network with which communication occurs. 197 § 47.0-47.2 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 198 § 57-64 GHz: Radio transmitters for unspecified areas of application.112 Maximum power: 100 mW EIRP Maximum transmit power: 10 dBm Maximum EIRP power spectral density: 13 dBm/MHz. 199 § 57-64 GHz: Radio transmitters for level measurement in closed vessels or spaces.113 Radiation outside the vessel or space may not exceed -41.3 dBm/MHz. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 200 § 57-64 GHz: Radio transmitters for level measurement.114 Maximum power: 35 dBm/50 MHz peak value for power density EIRP and -2 dBm/MHz mean power density EIRP. Techniques for adaptive power control and antenna requirements as well as equivalent techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. The radioastronomical observations at Onsala space observatory shall not be exposed to harmful interference. 201 § 57-66 GHz: Fixed radio transmitter. Maximum power: 25 dBW EIRP. Antenna gain shall be at least 30 dBi in the 63-64 GHz frequency range. 202 § 57-71 GHz: Radio transmitters for data transfer.115 Maximum power: 40 dBm EIRP. Maximum power density: 23 dBm/MHz EIRP. The exemption does not apply to fixed installations outdoors. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 203 § 57-71 GHz: Radio transmitters for data transfer.116 Maximum power: 40 dBm EIRP. 112 See note 10. 113 See note 10. 114 See note 10. 115 See note 10. 116 See note 10. 48 Maximum power density: 23 dBm/MHz EIRP and a maximum transmit power of 27 dBm at the antenna port(s). Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 204 § 57-71 GHz: Radio transmitters for data transfer.117 Maximum power: 55 dBm EIRP. Maximum power density: 38 dBm/MHz EIRP. Transmitter antenna gain ≥ 30 dBi The exemption applies only to fixed outdoor applications. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 205 § 61.0-61.5 GHz: Radio transmitters for unspecified areas of application.118 Maximum power: 100 mW EIRP. 206 § 63.72-65.88 GHz: Radio transmitters for vehicle-to-vehicle, vehicle-to- infrastructure and infrastructure-to-vehicle communication systems. Maximum power: 40 dBm EIRP. 207 § 75-85 GHz: Radio transmitters for level measurement in closed vessels or spaces.119 Radiation outside the vessel or space may not exceed -41.3 dBm/MHz. Techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. 208 § 75-85 GHz: Radio transmitters for level measurement.120 Maximum power: 34 dBm/50 MHz peak value for power density EIRP and -3 dBm/MHz mean power density EIRP. Techniques for adaptive power control and antenna requirements as well as equivalent techniques to access spectrum and mitigate interference that provide at least equivalent performance to the techniques described in the harmonised standards adopted under Directive 2014/53/EU shall be used. The radioastronomical observations at Onsala space observatory shall not be exposed to harmful interference. 209 § 75.5-81.0 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 210 § 76-77 GHz: Radar transmitters for radar functions in vehicles or road traffic installations. Maximum average power: 100 W EIRP. Maximum peak power: 316 W EIRP. 117 See note 10. 118 See note 10. 119 See note 10. 120 See note 10. 49 211 § 76-77 GHz: Radio transmitters for terrestrial vehicle and infrastructure systems.121 Maximum average power: 55 dBm peak EIRP density and 50 dBm mean EIRP density as well as 23.5 dBm mean EIRP density for pulse radar. 212 § 76-77 GHz: Radio transmitters for obstacle detection systems for rotorcraft.122 Maximum power: 30 dBm peak EIRP density and 3 dBm/MHz mean power spectral density. Transmission cycle: ≤ 56% /s. The following restrictions apply around the Onsala radioastronomical observatory. Distance from Onsala Helicopter altitude123 Comments 0-10 km - Radar may not be used within this area 10-25 km < 50 m AGL 25-35 km < 100 m AGL 35-55 km < 300 m AGL > 55 km No restriction 213 § 77-81 GHz: Radio transmitters for vehicle-mounted radio transmitters for radar functions.124 Maximum mean power density is -3 dBm/MHz EIRP with an upper limit of 55 dBm EIRP. The maximum mean power density that is generated by a radio transmitter may not exceed --9 dBm/MHz EIRP on a vehicle exterior. 214 § 122-122.25 GHz: Radio transmitters for unspecified areas of application.125 Maximum power density: 10 dBm EIRP/250 MHz Maximum power density over 30° height: -48 dBm/MHz 215 § 122.25-123.00 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 216 § 122.25-123.00 GHz: Radio transmitters for unspecified areas of application.126 Maximum power: 100 mW EIRP. 217 § 134-141 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 121 See note 10. 122 See note 10. 123 The altitude is specified as metres above ground level [AGL]. However, if the helicopter is out over open sea, it instead means metres above mean sea level (MSL). 124 See Commission Decision 2004/545/EC of 8 July 2004 on the harmonisation of radio spectrum in the 79 GHz range for the use of automotive short-range equipment in the Community. 125 See note 10. 126 See note 10. 50 218 § 241-250 GHz: Radio transmitters for amateur radio communication. Maximum power applied to the antenna system: 200 W PEP. Otherwise, § 14(3)-(6) apply. 219 § 244-246 GHz: Radio transmitters for unspecified areas of application. Maximum power: 100 mW EIRP. 1. This statute comes into force on 1 januari 2021. 2. The statute supersedes Swedish Post and Telecom Authority regulations (PTSFS 2018:3) on exemptions from the licence requirement for certain radio transmitters. On behalf of the Swedish Post and Telecom Authority DAN SJÖBLOM Karolina Asp 51 PTSFS 2020: Annex 1 List of provisions on exemptions from the licence requirement, grouped by area of application. Application Frequency band Provision Amateur radio traffic 135.7 – 137.8 kHz Chapter 3, § 14 472 – 479 kHz Chapter 3, § 19 1 810 – 1 850 kHz Chapter 3, § 22 1 850 – 1 900 kHz Chapter 3, § 23 1 900 – 1 950 kHz Chapter 3, § 24 1 950 – 2 000 kHz Chapter 3, § 25 3.5 – 3.8 MHz Chapter 3, § 27 5.3515 – 5.3665 MHz Chapter 3, § 29 7 – 7.2 MHz Chapter 3, § 31 10.10 – 10.15 MHz Chapter 3, § 34 14 – 14.35 MHz Chapter 3, § 39 18.068 – 18.168 MHz Chapter 3, § 40 21 – 21.45 MHz Chapter 3, § 41 24.89 – 24.99 MHz Chapter 3, § 42 28 – 29.7 MHz Chapter 3, § 63 50 – 52 MHz Chapter 3, § 74 144 – 146 MHz Chapter 3, § 78 432 – 438 MHz Chapter 3, § 97 1 240 – 1 300 MHz Chapter 3, § 127 2 400 – 2 450 MHz Chapter 3, § 154 5.65 – 5.85 GHz Chapter 3, § 168 10 – 10.5 GHz Chapter 3, § 178 24.00 – 24.25 GHz Chapter 3, § 188 47.0 – 47.2 GHz Chapter 3, § 197 75.5 – 81.0 GHz Chapter 3, § 207 52 122.25 – 123.00 GHz Chapter 3, § 213 134 – 141 GHz Chapter 3, § 215 241 – 250 GHz Chapter 3, § 216 Data network 863 – 868 MHz Chapter 3, § 110 865 – 868 MHz Chapter 3, § 114 Data transfer 2 400 – 2 483.5 MHz Chapter 3, § 157 5.15 – 5.35 GHz Chapter 3, § 165 5.470 – 5.725 GHz Chapter 3, § 167 17.1 – 17.3 GHz Chapter 3, § 184 57 – 71 GHz Chapter 3, § 202 DECT system 1 880 – 1 900 MHz Chapter 3, § 147 Fixed radio transmitter 57 – 66 GHz Chapter 3, § 201 Vehicle-mounted transmitter for radar functions 24.25 – 26.65 GHz Chapter 3, § 195 76 – 77 GHz Chapter 3, § 208 77 – 81 GHz Chapter 3, § 211 GSM, UMTS, LTE, and WiMAX communications For vessels GSM 880 – 915 MHz Chapter 3, § 125 For vessels GSM 925 – 960 MHz Chapter 3, § 126 53 For aircraft GSM and LTE 1 710 – 1 785 MHz Chapter 3, § 133 For vessels GSM 1 710 – 1 785 MHz Chapter 3, § 134 For vessels LTE 1 710 – 1 785 MHz Chapter 3, § 135 Indoor UMTS 1 780.0 – 1 785.0 MHz Chapter 3, § 136 Indoor LTE 1 780.1 – 1 785.0 MHz Chapter 3, § 137 Indoor WiMAX 1 780.1 – 1 785.0 MHz Chapter 3, § 138 Indoor GSM 1 780.3 – 1 784.9 MHz Chapter 3, § 139 For aircraft GSM and LTE 1 805 – 1 880 MHz Chapter 3, § 140 For vessels GSM 1 805 – 1 880 MHz Chapter 3, § 141 For vessels LTE 1 805 – 1 880 MHz Chapter 3, § 142 Indoor UMTS 1 875.0 – 1 880.0 MHz Chapter 3, § 143 Indoor LTE 1 875.0 – 1 880.0 MHz Chapter 3, § 144 Indoor WiMAX 1 875.1 – 1 880.0 MHz Chapter 3, § 145 Indoor GSM 1 875.3 – 1 879.9 MHz Chapter 3, § 146 For aircraft UMTS 1 920 – 1 980 MHz Chapter 3, § 148 For vessels UMTS 1 920 – 1 980 MHz Chapter 3, § 150 For aircraft UMTS 2 110 – 2 170 MHz Chapter 3, § 152 For vessels UMTS 2 110 – 2 170 MHz Chapter 3, § 153 For vessels LTE 2 500 – 2 570 MHz Chapter 3, § 161 For vessels LTE 2 620 – 2 690 MHz Chapter 3, § 162 Inductive transfer 9.0 – 148.5 kHz Chapter 3, § 12 148.5 – 5 000 kHz Chapter 3, § 15 54 3.155 – 3.4000 MHz Chapter 3, § 26 5 – 30 MHz Chapter 3, § 28 6.765 – 6.795 MHz Chapter 3, § 30 7.4 – 8.8 MHz Chapter 3, § 33 10.2 – 11.0 MHz Chapter 3, § 35 13.553 – 13.567 MHz Chapter 3, § 37 Intelligent road transport systems For non-safety related 5.855 – 5.875 GHz Chapter 3, applications § 171 For safety-related applications 5.875 – 5.925 GHz Chapter 3, § 172 Hearing aids 169.4000 – 169.475 MHz Chapter 3, § 87 169.4875 – 169.5875 MHz Chapter 3, § 89 173.965 – 216 MHz Chapter 3, § 92 Land mobile radio 30.925 – 31.375 MHz Chapter 3, § 67 69.0 – 69.2 MHz Chapter 3, § 75 For mobile radio transmitters 69.600 – 69.725 MHz Chapter 3, § 76 For agriculture, forestry and 155.3875 – 155.5375 MHz Chapter 3, § 83 hunting For portable radio transmitters 155.9875 – 156.0125 MHz Chapter 3, § 84 444.5875 – 444.9875 MHz Chapter 3, § 101 For PMR446 equipment 446.0 – 446.2 MHz Chapter 3, § 102 Alarm transfer 26.85 – 26.86 MHz Chapter 3, § 44 429.4375 – 429.4625 MHz Chapter 3, § 95 868.6 – 868.7 MHz Chapter 3, § 116 869.25 – 869.40 MHz Chapter 3, § 119 869.65 – 869.70 MHz Chapter 3, § 121 Locating people and valuable objects 456.9 – 457.1 kHz Chapter 3, § 18 55 Sound transmission 41.0 – 43.6 MHz Chapter 3, § 73 87.5 – 108.0 MHz Chapter 3, § 77 823 – 832 MHz Chapter 3, § 104 For wireless audio PMSE 823 – 832 MHz Chapter 3, equipment § 105 Maritime and aviation communications For vessels Chapter 3, § 3 For aircraft Chapter 3, § 4 Medical implants 9 – 315 kHz Chapter 3, § 13 30 – 37.5 MHz Chapter 3, § 64 401 – 406 MHz Chapter 3, § 93 2 483.5 – 2,500.0 MHz Chapter 3, § 160 MBAN systems 2 483.5 – 2,500.0 MHz Chapter 3, § 159 Navigation radar on vessels 2.9 – 3.1 GHz Chapter 3, § 163 5.47 – 5.65 GHz Chapter 3, § 166 9.225 – 9.500 GHz Chapter 3, § 175 Level measuring Closed vessels or spaces 4.5 – 7 GHz Chapter 3, § 164 6.0 – 8.5 GHz Chapter 3, § 173 Closed vessels or spaces 8.5 – 10.6 GHz Chapter 3, § 174 24.05 – 26.5 GHz Chapter 3, § 190 Closed vessels or spaces 24.05 – 27.00 GHz Chapter 3, § 191 Closed vessels or spaces 57 – 64 GHz Chapter 3, § 199 56 57 – 64 GHz Chapter 3, § 200 Closed vessels or spaces 75 – 85 GHz Chapter 3, § 205 75 – 85 GHz Chapter 3, § 206 Emergency alarms – vessels and aircraft 121.45 – 121.55 MHz Chapter 3, § 94 406.0 – 406.1 MHz Chapter 3, § 94 Unspecified area of application 13.553 – 13.567 MHz Chapter 3, § 36 26.957 – 27.283 MHz Chapter 3, § 46 26.99 – 27.00 MHz Chapter 3, § 48 27.04 – 27.05 MHz Chapter 3, § 51 27.09 – 27.10 MHz Chapter 3, § 54 27.14 – 27.15 MHz Chapter 3, § 57 27.19 – 27.20 MHz Chapter 3, § 60 40.66 – 40.70 MHz Chapter 3, § 71 169.375 – 169.400 MHz Chapter 3, § 85 169.400 – 169.475 MHz Chapter 3, § 86 169.4000 – 169.4875 MHz Chapter 3, § 88 169.4875 – 169.5875 MHz Chapter 3, § 90 169.5875 – 169.8125 MHz Chapter 3, § 91 433.05 – 434.79 MHz Chapter 3, § 98 862 – 863 MHz Chapter 3, § 107 863 – 865 MHz Chapter 3, § 109 865 – 868 MHz Chapter 3, § 111 868.0 – 868.6 MHz Chapter 3, § 115 868.7 – 869.2 MHz Chapter 3, § 117 869.40 – 869.65 MHz Chapter 3, § 120 867.7 – 870.0 MHz Chapter 3, § 122 869.7 – 870.0 MHz Chapter 3, § 123 57 2 400 – 2 483.5 MHz Chapter 3, § 155 5.725 – 5.875 GHz Chapter 3, § 169 24 – 24.25 GHz Chapter 3, § 186 57 – 64 GHz Chapter 3, § 198 61.0 – 61.5 GHz Chapter 3, § 203 122 – 122.25 GHz Chapter 3, § 212 122.25 – 123.00 GHz Chapter 3, § 214 244 – 246 GHz Chapter 3, § 217 CB radio 26.96 – 26.99 MHz Chapter 3, § 47 27 – 27.04 MHz Chapter 3, § 50 27.05 – 27.09 MHz Chapter 3, § 53 27.10 – 27.14 MHz Chapter 3, § 56 27.15 – 27.19 MHz Chapter 3, § 59 27.20 – 27.41 MHz Chapter 3, § 62 Radar in vehicles and road traffic installations 76 – 77 GHz Chapter 3, § 208 76 – 77 GHz Chapter 3, § 209 Radiodetermination 2 400 – 2 483.5 MHz Chapter 3, § 156 10.25 – 10.28 GHz Chapter 3, § 177 10.35 – 10.38 GHz Chapter 3, § 178 10.51 – 10.58 GHz Chapter 3, § 179 13.4 – 14.0 GHz Chapter 3, § 180 17.1 – 17.3 GHz Chapter 3, § 185 58 24.00 – 24.25 GHz Chapter 3, § 187 Direction finding and position transfer For humans and animals 151.52 – 151.53 MHz Chapter 3, § 80 For humans and animals 151.545 – 151.555 MHz Chapter 3, § 81 For animals 152.0075 – 152.2675 MHz Chapter 3, § 82 Radio control and telemetry 26.82 – 26.83 MHz Chapter 3, § 43 26.86 – 26.94 MHz Chapter 3, § 45 For radio control of traffic 30.015 – 30.025 MHz Chapter 3, § 65 lights 30.265 – 30.355 MHz Chapter 3, § 66 For model airplane radio 34.995 – 35.275 MHz Chapter 3, § 68 control 40.66 – 40.80 MHz Chapter 3, § 72 439.6875 – 439.9875 MHz Chapter 3, § 99 RFID: 400 – 600 kHz Chapter 3, § 16 13.553 – 13.567 MHz Chapter 3, § 38 865 – 868 MHz Chapter 3, § 112 865 – 868 MHz Chapter 3, § 113 2,446 – 2,454 MHz Chapter 3, § 158 Rescue equipment Chapter 3, § 5 Satellite terminals 148.00 – 150.05 MHz Chapter 3, § 79 1 610.0 – 1 626.5 MHz Chapter 3, § 128 1 613.8 – 1 626.5 MHz Chapter 3, § 129 1 621.35 – 1 626.50 MHz Chapter 3, § 130 1 626.5 – 1 645.5 MHz Chapter 3, § 131 59 1 646.5 – 1 660.5 MHz Chapter 3, § 132 Non-airborne 1 980 – 2 010 MHz Chapter 3, § 150 Airborne 1 980 – 2 010 MHz Chapter 3, § 151 On land 14.0 – 14.5 GHz Chapter 3, § 181 For vessels 14.0 – 14.5 GHz Chapter 3, § 182 For aircraft 14.0 – 14.5 GHz Chapter 3, § 183 29.5 – 30.0 GHz Chapter 3, § 196 Telemetry and remote control within electricity, gas, heating, cooling, and water distribution 39.525 – 39.550 MHz Chapter 3, § 69 40.450 – 40.575 MHz Chapter 3, § 70 443.9875 – 444.4125 MHz Chapter 3, § 100 870.5375 – 870.6625 MHz Chapter 3, § 124 Terminals in terrestrial electronic communications networks Chapter 3, § 2 713 – 733 MHz Chapter 3, § 103 832 – 862 MHz Chapter 3, § 106 Transport/traffic telematics equipment For equipment permanently 516 – 8 516 kHz Chapter 3, § 20 installed on a railway For Eurobalise 984 – 7 484 kHz Chapter 3, § 21 For Euroloop 7.3 – 23.0 MHz Chapter 3, § 32 Road and vehicle telemetry 5.795 – 5.815 GHz Chapter 3, § 170 24.05 – 24.075 GHz Chapter 3, § 189 Ground-based vehicle radar 24.075 – 24.15 GHz Chapter 3, § 192 24.075 – 24.15 GHz Chapter 3, § 193 24.15 – 24.25 GHz Chapter 3, § 194 60 Ground-based vehicle radar 24.25 – 24.50 GHz Chapter 3, § 195 Medical alerts 869.20 – 869.25 MHz Chapter 3, § 118 Wireless babysitting systems 26.99 – 27 MHz Chapter 3, § 49 27.04 – 27.05 MHz Chapter 3, § 51 27.09 – 27.10 MHz Chapter 3, § 55 27.14 – 27.15 MHz Chapter 3, § 58 27.19 – 27.20 MHz Chapter 3, § 61 UWB: Generic use Chapter 3, § 6 For tracking and tracing Chapter 3, § 7 For motor vehicles and Chapter 3, § 8 railway vehicles For aircraft Chapter 3, § 9 For material detection Chapter 3, § 10 For building material analysis Chapter 3, § 11 61 Maret Ots Saatja: Karl Stern <[email protected]> Saatmisaeg: teisipäev, 1. september 2020 12:02 Adressaat: Mart Laas; Maret Ots Teema: teatised Manused: 2020361S.docx; 2020385HU.docx Tere Saadan kaks teatist: 1) Rootsi 361 „Rootsi posti- ja sideameti eeskirjad teatavate raadiosaatjate kasutamise litsentsi nõudest vabastamiste kohta“. Ooteaeg lõpeb 18.09; 2) Ungari 385 „Riikliku meedia- ja teabeedastusameti määrus, millega muudetakse riiklikku sagedusjaotust ja sagedusalade kasutamise eeskirju käsitlevat riikliku meedia- ja teabeedastusameti 13. novembri 2015. aasta määrust nr 7/2015“. Ooteaeg lõpeb 28.09. Karl 1
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