ETSI TS 100 718-1999 Electromagnetic Compatibility and Radio Spectrum Matters (ERM) Avalanche Beacons Transmitter-Receiver Systems《电磁兼容性和无线频谱事务(ERM) 雪崩信标 收发系统(版本1 1 1)》.pdf
《ETSI TS 100 718-1999 Electromagnetic Compatibility and Radio Spectrum Matters (ERM) Avalanche Beacons Transmitter-Receiver Systems《电磁兼容性和无线频谱事务(ERM) 雪崩信标 收发系统(版本1 1 1)》.pdf》由会员分享,可在线阅读,更多相关《ETSI TS 100 718-1999 Electromagnetic Compatibility and Radio Spectrum Matters (ERM) Avalanche Beacons Transmitter-Receiver Systems《电磁兼容性和无线频谱事务(ERM) 雪崩信标 收发系统(版本1 1 1)》.pdf(32页珍藏版)》请在麦多课文档分享上搜索。
1、STD-ETSI TS LOO 718-ENGL 1999 3400855 0383958 5BB = TS 1 O0 71 8 1.1.1 (1999-01) Technical Specification Electromagnetic compatibility and Radio spectrum Matters (ERM); Avalanche Beacons; Transm itter-receiver systems STD-ETSI TS LOO 7L-ENGL 1799 = 3400855 0383959 414 m TS 100 718 V1.l.l (1999-01) 2
2、 Reference RTS/ERM-O13 (6ncOOicr.PDF) Keywords radio, safety, SAR, testing ETSI Postal address F-O6921 Sophia Antipolis Cedex - FRANCE Office address 650 Route des Lucioles - Sophia Antipolis Valbonne - FRANCE Siret N“ 348 623 562 O0017 - NAF 742 C Association a but non lucratif enregistre la Sous-R
3、facture de Grasse (06) No 7803/88 Tel.: +33 4 92 94 42 00 Fax: +33 4 93 65 47 16 Internet secretariat etsi.fr Individual copies of this ETSI deliverable can be downloaded from http:/www.etsi.org If you find errors in the present document, send your comment to: editorQetsi.fr Copyright Notification N
4、o part may be reproduced except as authorized by written permission. The copyright and the foregoing restriction extend to reproduction in all media. Q European Telecommunications Standards Institute 1999. Ail rights reserved. ETSI . STDmETSI TS 100 718-ENGL 1999 = 3400855 03839b0 13b I 3 TS 1 O0 71
5、 8 V1.l.l (1 99941) Contents Intellectual Property Rights 6 Foreword 6 Introduction 6 1 Scope 7 2 References 7 3 Definitions, abbreviations and symbols . 7 3.1 Definitions . 7 3.2 Abbreviations . 8 4 General . 8 4.1 Presentation of equipment for testing . 8 4.2 Mechanical and electrical design . 8 4
6、.2.1 General . 8 4.2.2 Controls and indicators . 9 4.2.3 Switching over from transmit to receive . 9 Battery type 9 4.2.4 4.2.5 Operating time 9 4.2.6 Battery check 9 4.2.7 Carrying system 9 4.2.8 4.2.9 Operating instructions 10 4.2.10 4.3 Interpretation of the measurement results 10 5 5.1 Nod and e
7、xtreme test conditions . 10 5.2 External test power source . 11 5.3 Normal test conditions . 11 5.3.1 Normal tempera ture and humidity 11 5.3.2 Nod test voltage 11 5.4 Extreme test conditions 11 5.4.1 Extreme temperatures . 11 5.4.2 Extreme test voltages 11 5.4.3 5.4.3.1 6 General conditions . 12 6.
8、1 Normal test signais . 12 6.2 Test fixture . 12 6.3 Test sites and general arrangements for radiated measurements 12 6.4 Measuring receiver 12 3.3 Symbols . 8 Frequencies and power . 9 Equipment identification and short form operating instruction 10 Test conditions, power sources and ambient temper
9、atures 10 Procedure for tests at extreme temperatures . 11 Procedure for equipment designed for intermittent operation 12 7 7.1 7.2 7.2.1 7.2.2 7.3 7.3.1 7.3.2 7.3.3 7.4 7.4.1 Environmental tests 13 Procedure . 13 Drop test on hard surface . 13 Definition . 13 Method of measurement . 13 Temperature
10、tests . 13 General . 13 Dry heat cycle . 13 Low temperature cycle . 14 Immersion test 14 Method of measurement . 14 E TSI 4 TS 100 718 V1.1.1 (199941) 7.4.2 Requirements 14 7.5 Solar radiation 14 7.5.1 Method of measurement . 14 7.5.2 Requirements 14 7.6 Tensile test . 14 7.6.1 Method of measurement
11、 . 14 7.6.2 Requirements 14 8 Methods of measurement and limits for transmitter parameters . 15 8.1 8.2 8.2.1 8.2.2 8.2.3 8.3 8.3.1 8.3.2 8.3.3 8.4 8.4.1 8.4.2 8.4.2.1 8.4.2.2 8.4.3 8.4.3.1 8.4.3.2 Modulation and carrier keying . 15 Frequency enuf 15 Definition . 15 Method of measurement . 15 Limits
12、 . 15 Output field strength (H-field) . 16 Definition . 16 Method of measurement . 16 Limits . 16 Spurious emissions . 16 Dehition . 16 H-field strength 17 Method of measurement (e 30 MHz) . 17 Limits 17 Effective radiated power 17 Method of measurement (2 30 MHz) . 17 Limits 18 9 9.1 Receiver sensi
13、tivity 18 9.1.1 Definition . 18 9.1.2 Method of measurement . 19 9.2 Changes in the received signal . 19 9.2.1 Definition . 19 9.2.2 Requirement . 19 10 Measurement uncertainty . 20 Annex A (normative): Radiated measurements 21 A . 1 A.l.l A.l.l.l A.1.2 Test antenna . 22 A . 1.2.1 Below 30 MHz . 22
14、A.1.2.2 Above 30 MHz . 22 A.1.3 Substitution antenna . 22 A.1.4 Optional additional indoor site . 23 A.2 Guidance on the use of radiation test sites . 24 A.2.1 Measuring distance 24 A.2.2 Test antenna . 24 A.2.3 Substitution antenna . 24 A.2.4 Artificial antenna . 24 A.2.5 Auxiliary cables . 24 A.3
15、Further optional alternative indoor test site using an anechoic chamber . 24 A.3.1 A.3.2 A.3.3 Methods of measurement and limits for receiver parameters 18 9.1.3 Limits . 19 Test sites and general arrangements for measurements involving the use of radiated fields 21 Test support for body worn equipm
16、ent . 21 A.1.1.2 Standard position 21 Outdoor test site . 21 Example of the construction of a shielded anechoic chamber 25 Influence of parasitic reflections in anechoic chambers . 25 Calibration of the shielded Rp anechoic chamber 25 ETSI STD-ETSI TS LOO 7L-ENGL 1999 3400855 03839b2 TO9 m 5 TS 100
17、718 V1.l.l (1999-01) Annex B (normative): Annex C (normative): Spurious limits, H-field at 10 m distances . 28 Simulated solar radiation source . 29 Annex D (informative): E-fields in the near field at low frequencies 30 History 32 E TSI 6 TS 100 718 V1.l.l (199941) Intellectual Property Rights IPRs
18、 essential or potentially essential to the present document may have been declared to ETSI. The information pertaining to these essential IPRs, if any, is publicly available for ETSI members and non-members, and can be found in SR O00 314: iTntellectua1 Property Rights (ZPRs); Essential, orpotential
19、ly Essential, ZPRs notified to ETSZ in respect of ETSZ standards“, which is available free of charge from the ETSI Secretariat. Latest updates are available on the ETSI Web server (http:/www.etsi.org/ipr). purniant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried ou
20、t by ETSI. No guarantee can be given as to the existence of other IPRs not referenced in SR O00 314 (or the updates on the ETSI Web server) which are, or may be, or may become, essential to the present document. Foreword This Technical Specification (TS) has been produced by ETSI Technical Committee
21、 Electromagnetic compatibility and Radio spectrum Matters 0. The present document corrects a technical error that was identified in ETS 300 718 (1997). The requkernent for the maximum weight of the apparatus (subclause 4.2.1) has been deleted. It is intended that this TS should be used as a basis fo
22、r a future revision of ETS 300 718 (1997). I n t rod uct i o n There are currently two frequency allocations for the radio location of avalanche victims: - 2275Hz;and - 457kHz. It is expected that the allocation at 2 275 Hz will be removed after a tramition penod. The present document therefore cove
23、rs duai-frequency equipment and equipment intended to operate on 457 ICHZ only. It is the purpose of the present document to ensure the practical interoperability and reliability of products from different manufacturers. ETSI 7 TS 100 718 V1.l.l (1999-01) 1 Scope The present document covers requirem
24、ents for avalanche beacons. Avalanche beacons are radio location systems used for searching for andor ndiug avalanche victims, for the purpose of direct rescue. These systems comprise a transmitter as well as a receiver part. The present document distinguishes between two types of beacons: - type i:
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