BS IEC 62153-4-15-2015 Metallic Communication Cable test methods Electromagnetic compatibility (EMC) Test method for measuring transfer impedance and screening attenuation or coupl.pdf
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1、BSI Standards PublicationM e t a l l i c C o m m u n i c a t i o nC a b l e t e s t m e t h o d sPart 4-15: Electromagnetic compatibility (EMC) Test method for measuring transfer impedance and screening attenuation or couplingattenuation with triaxial cellBS IEC 62153-4-15:2015National forewordThis
2、British Standard is the UK implementation of IEC 62153-4-15:2015.The UK participation in its preparation was entrusted to TechnicalCommittee EPL/46, Cables, wires and waveguides, radio frequency connectors and accessories for communication and signalling.A list of organizations represented on this c
3、ommittee can be obtained onrequest to its secretary.This publication does not purport to include all the necessary provisions ofa contract. Users are responsible for its correct application. The British Standards Institution 2015.Published by BSI Standards Limited 2015ISBN 978 0 580 82281 0ICS 33.10
4、0; 33.120.10 Compliance with a British Standard cannot confer immunity fromlegal obligations.This British Standard was published under the authority of theStandards Policy and Strategy Committee on 31 December 2015.Amendments/corrigenda issued since publicationDate Text affectedBRITISH STANDARDBS IE
5、C 62153-4-15:2015IEC 62153-4-15 Edition 1.0 2015-12 INTERNATIONAL STANDARD Metallic communication cable test methods Part 4-15: Electromagnetic compatibility (EMC) Test method for measuring transfer impedance and screening attenuation or coupling attenuation with triaxial cell INTERNATIONAL ELECTROT
6、ECHNICAL COMMISSION ICS 33.100; 33.120.10 ISBN 978-2-8322-3056-5 Registered trademark of the International Electrotechnical Commission Warning! Make sure that you obtained this publication from an authorized distributor. colourinsideBS IEC 62153-4-15:2015 2 IEC 62153-4-15:2015 IEC 2015 CONTENTS FORE
7、WORD . 5 1 Scope 7 2 Normative references . 7 3 Terms and definitions. 8 4 Physical background 10 5 Principle of the test methods 10 5.1 General . 10 5.2 Transfer impedance 11 5.3 Screening attenuation 12 5.4 Coupling attenuation . 12 5.5 Tube in tube method . 13 6 Test procedures . 13 6.1 General .
8、 13 6.2 Triaxial cell . 13 6.3 Cut off frequencies, higher order modes 13 6.4 Test equipment . 14 6.5 Calibration procedure 14 6.6 Test leads and connecting cables to DUT 15 7 Sample preparation 15 7.1 Coaxial connector or assembly or quasi-coaxial component . 15 7.2 Balanced or multipin connector o
9、r component 15 7.3 Cable assemblies 16 7.4 Other screened devices . 17 8 Transfer impedance (short matched) . 17 8.1 General . 17 8.2 Principle block diagram of transfer impedance . 17 8.3 Measuring procedure . 18 8.4 Evaluation of test results . 18 8.5 Test report 18 9 Screening attenuation 19 9.1
10、General . 19 9.2 Impedance matching . 19 9.3 Measuring with matched conditions . 19 9.3.1 Procedure 19 9.3.2 Evaluation of test results 19 9.4 Measuring with mismatch 20 9.4.1 General . 20 9.4.2 Evaluaton of test results . 20 9.5 Test report 21 10 Coupling attenuation 21 10.1 Procedure . 21 10.2 Exp
11、ression of results . 21 10.3 Test report 22 11 Coupling transfer function 22 Annex A (informative) Principle of the triaxial test procedure . 23 BS IEC 62153-4-15:2015IEC 62153-4-15:2015 IEC 2015 3 Annex B (informative) Triaxial cell 25 Annex C (informative) Cut off frequencies, higher order modes .
12、 27 Annex D (informative) Coupling transfer function 30 Annex E (informative) Attenuation versus scattering parameter S2132 Annex F (informative) Application of a moveable shorting plane 34 F.1 Effect of the measurement length on the measurement cut-off frequency . 34 F.2 Details of the movable shor
13、ting plane 34 F.3 Measurement results . 36 Annex G (informative) Correction in case the receiver input impedance R is higher than the characteristic impedance of the outer circuit Z237 Bibliography 39 Figure 1 Definition of ZT. 8 Figure 2 Principle depiction of the triaxial cell to measure transfer
14、impedance and screening attenuation 11 Figure 3 Principle depiction of the triaxial cell to measure transfer impedance and screening attenuation of assemblies with tube in tube according to IEC 62153-4-7 11 Figure 4 Preparation of balanced or multipin connectors for transfer impedance and screening
15、attenuation 16 Figure 5 Preparation of balanced or multipin connectors for coupling attenuation measurement 16 Figure 6 Test set-up (principle) for transfer impedance measurement according to test method B of IEC 62153-4-3 17 Figure A.1 Principle test set-up to measure transfer impedance and screeni
16、ng attenuation 23 Figure A.2 Equivalent circuit of the principle test set-up in Figure A.1 23 Figure B.1 Principle depiction of the triaxial cell to measure transfer impedance and screening attenuation at HV-assemblies with tube in tube according to IEC 62153-4-7 25 Figure B.2 Example of different d
17、esigns of triaxial cells 26 Figure C.1 Comparison of the measurements with tube and with triaxial cell of a RG 11 cable with single braid construction, linear scale . 28 Figure C.2 Comparison of the measurements with tube and with triaxial cell of a cable RG 11 with single braid construction, log sc
18、ale 29 Figure D.1 Measured coupling transfer function of a braided screen vs. frequency with the triaxial cell 30 Figure E.1 Measurement with HP8753D of S21of a 3dB attenuator 32 Figure E.2 Measurement with ZVRE of S21of a 3dB attenuator . 33 Figure F.1 Crosssection of triaxial cell with movable sho
19、rting plane. 34 Figure F.2 Crosscut of plane shortening housing and tube-in-tube 35 Figure F.3 Detail H of figure F.2: contact between plane and housing 35 Figure F.4 Detail G of figure F.2: contact between plane and tube-in-tube . 36 Figure F.5 Compilation of transfer impedance test results with di
20、fferent shorting plane distances 36 Figure G.1 Example of forward transfer scattering parameter S21for different impedances in the outer circuit where the receiver input impedance is 50 37 Figure G.2 DUT with uniform cylindrical shape in the centre of the cell 38 BS IEC 62153-4-15:2015 4 IEC 62153-4
21、-15:2015 IEC 2015 Table 1 IEC 62153-4-x, Metallic communication cable test methods Test procedures with triaxial test set-up 10 Table C.1 Resonance frequencies of different triaxial cells . 27 BS IEC 62153-4-15:2015IEC 62153-4-15:2015 IEC 2015 5 INTERNATIONAL ELECTROTECHNICAL COMMISSION _ METALLIC C
22、OMMUNICATION CABLE TEST METHODS Part 4-15: Electromagnetic compatibility (EMC) Test method for measuring transfer impedance and screening attenuation or coupling attenuation with triaxial cell FOREWORD 1) The International Electrotechnical Commission (IEC) is a worldwide organization for standardiza
23、tion comprising all national electrotechnical committees (IEC National Committees). The object of IEC is to promote international co-operation on all questions concerning standardization in the electrical and electronic fields. To this end and in addition to other activities, IEC publishes Internati
24、onal Standards, Technical Specifications, Technical Reports, Publicly Available Specifications (PAS) and Guides (hereafter referred to as “IEC Publication(s)”). Their preparation is entrusted to technical committees; any IEC National Committee interested in the subject dealt with may participate in
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