Electromagnetic compatibility (EMC) - Part 1-1: General - Application and interpretation of fundamental definitions and terms

IEC TR 61000-1-1:2023 which is a Technical Report, aims to describe and interpret various terms considered to be of basic importance to concepts and practical application in the design and evaluation of electromagnetically compatible equipment and systems. In addition, attention is drawn to the distinction between electromagnetic compatibility (EMC) tests carried out in a standardized set-up and those carried out at other locations, for example at premises where a device, equipment or system is manufactured or at the location where a device, equipment or system is installed (in situ tests or measurements). This second edition cancels and replaces the first edition published in 1992. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition:
a) the general description of the electromagnetic environment has been updated in accordance with IEC TR 61000-2-5;
b) the description of source, of potentially susceptible equipment/systems and of coupling mechanism has been updated,
c) elements from IEC TR 61000-2-3, that is intended to be withdrawn, as well as from IEC TR 61000-2-5, have been incorporated into this document.

General Information

Status
Published
Publication Date
06-Feb-2023
Drafting Committee
Current Stage
PPUB - Publication issued
Start Date
09-Mar-2023
Completion Date
07-Feb-2023
Ref Project

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IEC TR 61000-1-1:2023 - Electromagnetic compatibility (EMC) - Part 1-1: General - Application and interpretation of fundamental definitions and terms Released:2/7/2023
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IEC TR 61000-1-1 ®
Edition 2.0 2023-02
TECHNICAL
REPORT
colour
inside
BASIC EMC PUBLICATION
Electromagnetic compatibility (EMC) –
Part 1-1: General – Application and interpretation of fundamental definitions and
terms
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IEC TR 61000-1-1 ®
Edition 2.0 2023-02
TECHNICAL
REPORT
colour
inside
BASIC EMC PUBLICATION
Electromagnetic compatibility (EMC) –

Part 1-1: General – Application and interpretation of fundamental definitions and

terms
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
ICS 33.100.01 ISBN 978-2-8322-6435-5

– 2 – IEC TR 61000-1-1:2023 © IEC 2023
CONTENTS
FOREWORD . 4
1 Scope . 7
2 Normative references . 7
3 Terms, definitions and abbreviated terms . 7
3.1 Terms and definitions . 7
3.2 Abbreviated terms . 10
4 The electromagnetic environment . 10
4.1 General . 10
4.2 Coupling between emitting and susceptible devices . 11
5 Application of EMC terms and definitions . 12
5.1 General . 12
5.2 Relation between various types of levels . 12
5.2.1 Emissions and immunity level (and limit). 12
5.2.2 Compatibility level . 13
5.2.3 Examples to illustrate the concepts of using levels and limits. 14
5.3 Probability aspects and margins . 16
5.3.1 Compatibility levels and uncertainties . 16
5.3.2 Standardized test. 17
5.3.3 In situ test – Superposition . 18
5.3.4 Lack of data . 20
6 Models and their limitations . 21
6.1 General . 21
6.2 Source models . 21
6.2.1 Conducted emissions . 21
6.2.2 Radiated emissions . 22
6.3 Coupling models . 23
6.3.1 General . 23
6.3.2 Common impedance coupling . 23
6.3.3 Coupling by induction . 24
6.3.4 Radiative coupling . 27
6.4 Susceptible device models . 27
Annex A (informative) Interpretation of EMC terms and definitions . 28
A.1 General . 28
A.2 Units and decibels . 28
A.3 Electromagnetic interference, compatibility and environment . 29
A.3.1 General . 29
A.3.2 Electromagnetic interference (EMI) . 29
A.3.3 Electromagnetic compatibility (EMC) . 30
A.3.4 The electromagnetic environment . 30
A.4 Susceptibility/immunity. 31
A.5 Level and limit . 31
A.6 Emission and immunity . 32
A.7 Compatibility level and margin . 34
Annex B (informative) Standardized and in situ tests . 37
Annex C (informative) Review of the historical assignment of radiated disturbance
degrees . 38

C.1 General . 38
C.2 Theoretical analysis of radiated disturbance degrees . 38
C.3 Detailed derivations . 40
C.3.1 Derivation of Formula (C.4). 40
C.3.2 Derivation of Formula (C.5). 41
Bibliography . 43

Figure 1 – Coupling paths between emitting and susceptible devices . 11
Figure 2 – Limits and levels for a single emitter and susceptible device as a function of
some independent variable (e.g., frequency) . 13
Figure 3 – Emission/immunity limits and compatibility levels, with an example of
emission/immunity levels for a single emitter and susceptible device as a function of
some independent variable (e.g., frequency) . 13
Figure 4 – Compatibility levels U for the odd harmonics in a public low-voltage
c
network and examples of associated emission and immunity limits . 15
Figure 5 – Limits, compatibility levels and margins, as a function of any independent
variable (e.g., frequency) . 17
Figure 6 – Example of the probability densities for an emission level and an immunity
level, at one single value of the independent variable . 18
Figure 7 – Example of superposition of disturbances . 20
Figure 8 – Example of probability densities for an ultimate disturbance level (the sum
of disturbance levels produced by various emitters) and the immunity levels of two
types of susceptible device . 20
Figure 9 – Source model for conducted emissions (source loaded by Z and Z ) . 22
L1 L2
Figure 10 – Electric and magnetic dipole elements . 23
Figure 11 – Capacitance per unit length as a function of conductor separation . 25
Figure 12 – Flux density from parallel conductors . 26
Figure A.1 – The basic form of an EMI problem . 29
Figure A.2 – Subdivision of EMC in its key aspects . 30
Figure A.3 – Overview of various EMC terms and measuring conditions . 34
Figure A.4 – Examples of probability densities p(D), p(I) and the resulting p(I – D) . 35
Figure C.1 – Problem geometry . 39

Table C.1 – Radiated disturbance degrees . 38

– 4 – IEC TR 61000-1-1:2023 © IEC 2023
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
ELECTROMAGNETIC COMPATIBILITY (EMC) –

Part 1-1: General – Application and interpretation
of fundamental definitions and terms

FOREWORD
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