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Electromagnetic compatibility - Testing and measurement techniques - Part 19: Test for immunity to conducted, differential mode disturbances and signaling in the frequency range 2 kHz to 150 kHz at a. c. power ports
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GB/T 17626.19-2022
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Basic data Standard ID | GB/T 17626.19-2022 (GB/T17626.19-2022) | Description (Translated English) | Electromagnetic compatibility - Testing and measurement techniques - Part 19: Test for immunity to conducted, differential mode disturbances and signaling in the frequency range 2 kHz to 150 kHz at a. c. power ports | Sector / Industry | National Standard (Recommended) | Classification of Chinese Standard | L06 | Classification of International Standard | 33.100.20 | Word Count Estimation | 30,391 | Date of Issue | 2022-12-30 | Date of Implementation | 2023-07-01 | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GB/T 17626.19-2022: Electromagnetic compatibility - Testing and measurement techniques - Part 19: Test for immunity to conducted, differential mode disturbances and signaling in the frequency range 2 kHz to 150 kHz at a. c. power ports
---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
ICS 33.100.20
CCSL06
National Standards of People's Republic of China
Electromagnetic Compatibility Test and Measurement Technology
Part 19.AC power port 2kHz~150kHz
Differential Mode Conducted Disturbance and Communication Signal Immunity Test
Released on 2022-12-30 and implemented on 2023-07-01
State Administration for Market Regulation
Released by the National Standardization Management Committee
table of contents
Preface III
Introduction V
1 Scope 1
2 Normative references 1
3 Terms, Definitions and Abbreviations 1
3.1 Terms and Definitions 1
3.2 Abbreviations 2
4 Overview 3
5 2kHz~150kHz test level and waveform 3
5.1 Test level 3 for differential mode voltage test
5.1.1 Overview 3
5.1.2 CW pulse test waveform with intermittent period 4
5.1.3 Rectangular modulation pulse test waveform 5
5.2 Test level 5 for differential mode current test
5.2.1 Overview 5
5.2.2 CW pulse test waveform with intermittent period 6
5.2.3 Rectangular modulation pulse test waveform 6
6 Test equipment 6
6.1 Test generator 6
6.1.1 Overview 6
6.1.2 Differential mode voltage test generator performance characteristics 6
6.1.3 Differential mode current test generator performance characteristics 7
6.2 Verification of test generator characteristics 7
6.2.1 General 7
6.2.2 Verification of generators 8
6.2.3 Verification of coupling/decoupling networks 8
7 Test arrangement 9
7.1 Test arrangement for differential mode voltage test 9
7.2 Test arrangement for differential mode current test 10
8 Test procedure 10
8.1 General 10
8.2 Laboratory reference conditions 10
8.2.1 Climatic conditions 10
8.2.2 Electromagnetic conditions 11
8.3 Test execution 11
9 Evaluation of test results 11
10 Test report 11
Appendix A (informative) Interfering sources, disturbed devices and their effects 13
Appendix B (Informative) Selection of Test Level 16
Appendix C (Informative) Meter Test Guide 17
C.1 Basic structure example of differential mode current test generator 17
C.2 Test circuit example 17
C.3 Actual layout example (including schematic diagram) 18
Appendix D (Informative) Test Waveform 19
Reference 20
foreword
This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules for Standardization Documents"
drafting.
This document is Part 19 of GB/T 17626 "Electromagnetic Compatibility Testing and Measurement Techniques". GB/T 17626 has issued the following
part.
--- General introduction to immunity test (GB/T 17626.1);
--- Electrostatic discharge immunity test (GB/T 17626.2);
---Radio frequency electromagnetic field radiation immunity test (GB/T 17626.3);
--- Electrical fast transient burst immunity test (GB/T 17626.4);
--- Surge (shock) immunity test (GB/T 17626.5);
--- Conducted disturbance immunity induced by radio frequency field (GB/T 17626.6);
---Guidelines for the measurement of harmonics and interharmonics of power supply systems and connected equipment and measuring instruments (GB/T 17626.7);
--- Power frequency magnetic field immunity test (GB/T 17626.8);
--- Pulse magnetic field immunity test (GB/T 17626.9);
--- Damped oscillation magnetic field immunity test (GB/T 17626.10);
--- Immunity test for voltage dips, short interruptions and voltage changes (GB/T 17626.11);
---Ring wave immunity test (GB/T 17626.12);
--- Low-frequency immunity test of AC power port harmonics, inter-harmonics and grid signals (GB/T 17626.13);
--- Voltage fluctuation immunity test (GB/T 17626.14);
---Scintillation instrument function and design specifications (GB/T 17626.15);
---0Hz~150kHz Common Mode Conducted Disturbance Immunity Test (GB/T 17626.16);
--- DC power input port ripple immunity test (GB/T 17626.17);
--- Damped oscillatory wave immunity test (GB/T 17626.18);
--- Part 19.AC power port 2kHz~150kHz differential mode conducted disturbance and communication signal immunity test (GB/T 17626.19);
--- Emission and immunity test in transverse electromagnetic wave (TEM) waveguide (GB/T 17626.20);
--- Mixing chamber test method (GB/T 17626.21);
---Radiated emission and immunity measurement in fully anechoic chamber (GB/T 17626.22);
---Test method for HEMP conducted disturbance protection device (GB/T 17626.24);
---Three-phase voltage unbalance immunity test (GB/T 17626.27);
--- Power frequency frequency change immunity test (GB/T 17626.28);
--- Immunity test for voltage dips, short interruptions and voltage changes at DC power input ports (GB/T 17626.29);
--- Power quality measurement method (GB/T 17626.30);
--- Part 31.AC power port broadband conducted disturbance immunity test (GB/T 17626.31);
--- Voltage sag, short interruption and voltage change immunity test for equipment with main power supply current greater than 16A per phase (GB/T 17626.34).
This document is modified to adopt IEC 61000-4-19.2014 "Electromagnetic Compatibility (EMC) Part 4-19.Testing and Measurement Techniques Alternating Current
Source Port 2kHz~150kHz Differential Mode Conducted Disturbance and Communication Signal Immunity Test".
The technical differences between this document and IEC 61000-4-19.2014 and their reasons are as follows.
--- Replace IEC 61000-4-13 (see Chapter 1) with the normatively referenced GB/T 17626.13, and the normatively referenced
IEC 61000-4-16 was changed to an informative reference and included in the references (see Chapter 1, Appendix B) to adapt to my country's technical
technical conditions and improve operability.
--- Changed the content of the compatibility level (see Chapter 4, Appendix A), IEC 61000-4-19.2014 mentions the content of the compatibility level
At the time of the content, it gave the information that these contents are still under research, and now IEC has completed the relevant research work and incorporated it into the
IEC 61000-2-2.2002 Amendment 1 (2017), Amendment 2 (2018) and IEC 61000-2-5.2017;
--- Deleted content related to grid frequency 60Hz and grid voltage 280V (see Chapter 4 of IEC 61000-4-19.2014,
5.1.3, Appendix A), because these contents are not applicable to my country's public grid system.
The following editorial changes have been made to this document.
--- In order to coordinate with existing standards, change the name of the standard to "Electromagnetic Compatibility Testing and Measurement Techniques Part 19.AC Power Terminals
2kHz~150kHz differential mode conduction disturbance and communication signal immunity test";
--- In Chapter 4, IEC 61000-2-2 and GB/T 18039.9 are replaced by the informative referenced GB/T 18039.3
IEC 61000-2-12;
---In 3.1.9, the note of load current has been added;
---Change "Coupling Network" in 6.1.2 to "CDN" to be consistent with the expression in Figure 4;
--- The editing error in IEC 61000-4-19.2014 has been modified, and the output port of the signal generator in Figure 4 and Figure 7 is half
Move the circular socket symbol to the CDN port directly connected to it; reverse the input and output ports of the meter in Figure C.3;
---Change L1,2,3-N in 8.3 to L1-N, L2-N, L3-N;
--- Add a paragraph of explanatory text at the bottom of Figure A.1 and Figure A.2;
---Move the content of the "Note" paragraph after Figure A.2 of IEC 61000-4-19.2014 to the paragraph before Figure A.1.
Please note that some contents of this document may refer to patents. The issuing agency of this document assumes no responsibility for identifying patents.
This document is proposed and managed by the National Electromagnetic Compatibility Standardization Technical Committee (SAC/TC246).
This document is drafted by. China Institute of Electronic Technology Standardization, China Electric Power Research Institute Co., Ltd., Suzhou Taisite Electronics Division
Technology Co., Ltd., Shanghai Institute of Metrology and Testing Technology.
The main drafters of this document. Chen Shigang, Wan Baoquan, Yin Ting, Hu Xiaojun, Li Ni, Zhao Wenhui, Fu Jun, Zhu Sai.
Introduction
Electromagnetic compatibility is the ability of electrical and electronic equipment or systems to function properly in their electromagnetic environment without causing adverse effects to anything in that environment.
Ability to withstand electromagnetic disturbances. Electromagnetic compatibility is one of the important factors affecting the environment and product quality, and its standardization work has
aroused widespread attention at home and abroad. In this regard, the IEC 61000 series of publications developed by the International Electrotechnical Commission (IEC)
Common standards in the fields of industry, electrical engineering and energy, transportation, social undertakings and health, quality and safety of consumer goods, etc., divided into
There are 6 categories. generalization, environment, limit values, testing and measurement techniques, installation and mitigation guidelines, and general standards. my country has launched a series of publications
The domestic transformation work has been carried out, and the corresponding national standard system has been established.
In this standard system, GB/T 17626 "Electromagnetic Compatibility Test and Measurement Technology" is about the field of electromagnetic compatibility test and measurement technology
It is a basic standard in terms of aspects, aiming to describe the immunity test of electromagnetic compatibility phenomena such as conduction disturbance and radiation disturbance, etc., and it is proposed to be composed of 39 parts
constitute.
--- General introduction to immunity test (GB/T 17626.1). The purpose is to provide the use of relevant testing and measurement techniques in EMC standards
usability guidance and provide general advice on the selection of relevant tests.
--- Electrostatic discharge immunity test (GB/T 17626.2). The purpose is to establish a common and reproducible benchmark for evaluating electrical and
Performance of electronic equipment when subjected to electrostatic discharge.
---Radio frequency electromagnetic field radiation immunity test (GB/T 17626.3). The purpose is to establish electrical and electronic equipment subject to radio frequency electromagnetic fields
Basis for evaluating immunity against radiation.
--- Electrical fast transient burst immunity test (GB/T 17626.4). The purpose is to establish a common and reproducible benchmark against which to evaluate
Estimate the power supply ports, signal, control and ground ports of electrical and electronic equipment when they are disturbed by electrical fast transient bursts
Immunity performance.
--- Surge (shock) immunity test (GB/T 17626.5). The purpose is to establish a common and reproducible benchmark for evaluating electrical
And the immunity performance of electronic equipment when subjected to surge (shock).
--- Conducted disturbance immunity induced by radio frequency field (GB/T 17626.6). The purpose is to establish a common and reproducible benchmark against which to evaluate
Evaluate the immunity performance of electrical and electronic equipment when subjected to conducted disturbances induced by radio frequency fields.
---Guidelines for the measurement of harmonics and interharmonics of power supply systems and connected equipment and measuring instruments (GB/T 17626.7). The purpose is to provide
It is used to test the equipment item by item according to the emission limits given by certain standards, and to test the harmonic current and voltage in the actual power supply system
measuring instruments.
--- Power frequency magnetic field immunity test (GB/T 17626.8). The purpose is to establish a common and reproducible benchmark for evaluating household,
Immunity performance of commercial and industrial electrical and electronic equipment exposed to power frequency (continuous and short-duration) magnetic fields.
--- Pulse magnetic field immunity test (GB/T 17626.9). The purpose is to establish common and reproducible benchmarks for assessing residence,
Immunity performance of commercial and industrial electrical and electronic equipment exposed to pulsed magnetic fields.
--- Damped oscillation magnetic field immunity test (GB/T 17626.10). The purpose is to establish a general and reproducible benchmark against which to evaluate
Immunity performance of electrical and electronic equipment in damped oscillating magnetic fields in medium and high voltage substations.
--- Immunity test for voltage dips, short interruptions and voltage changes (GB/T 17626.11). The aim is to create general and reproducible
A benchmark for evaluating the immunity of electrical and electronic equipment to voltage dips, short interruptions and voltage variations.
---Ring wave immunity test (GB/T 17626.12). The purpose is to establish a general and reproducible benchmark to evaluate the experimental
Immunity performance of electrical and electronic equipment for residential, commercial and industrial use in indoor environments, also applies to power stations and substations
equipment.
--- Low-frequency immunity test of AC power port harmonics, inter-harmonics and grid signals (GB/T 17626.13). purpose is to establish
Universal and reproducible reference for evaluating the low frequency immunity of electrical and electronic equipment to harmonics, interharmonics and grid signal frequencies
performance.
--- Voltage fluctuation immunity test (GB/T 17626.14). The purpose is to establish a common and reproducible benchmark for evaluating electrical
Immunity performance of electrical and electronic equipment when subjected to positive and negative low-amplitude voltage fluctuations.
---Scintillation instrument function and design specifications (GB/T 17626.15). The purpose is to display the correct
Flicker perceived level.
--- 0Hz~150kHz Common Mode Conducted Disturbance Immunity Test (GB/T 17626.16). The purpose is to build electrical and electronic equipment
Generic and repeatable guidelines for common mode conducted disturbance testing.
--- DC power input port ripple immunity test (GB/T 17626.17). The purpose is to establish a general and reproducible basis
Standard for charging electrical and electronic equipment under laboratory conditions from sources such as rectifier systems and/or batteries superimposed on
Immunity test for ripple voltage on DC power supplies.
--- Damped oscillatory wave immunity test (GB/T 17626.18). The purpose is to establish a general and reproducible benchmark for evaluating electrical
Immunity performance of gas and electronic equipment when subjected to damped oscillatory waves.
--- Part 19.AC power port 2kHz~150kHz differential mode conducted disturbance and communication signal immunity test (GB/T 17626.19).
The purpose is to establish a general and reproducible benchmark for evaluating electrical and electronic equipment subjected to differential mode conduction at AC mains ports.
Immunity performance against disturbance and communication signals.
--- Emission and immunity test in transverse electromagnetic wave (TEM) waveguide (GB/T 17626.20). The purpose is to give the properties of the TEM waveguide
Capability, confirmation method of TEM waveguide for electromagnetic compatibility test, radiated emission and immunity test in TEM waveguide
test layout, procedures and requirements.
--- Mixing chamber test method (GB/T 17626.21). The purpose is to establish the use of mixing chambers to evaluate electrical and electronic
General specifications for performance in magnetic fields and for determining the radiated emission levels of electrical and electronic equipment.
---Radiated emission and immunity measurement in a fully anechoic chamber (GB/T 17626.22). The purpose is to stipulate that in the same full radio wave dark
General confirmation procedures for indoor radiated emission and radiated immunity, test arrangement requirements for equipment under test and full anechoic chamber test
Quantitative method.
--- Part 23.Test methods for HEMP and other radiation disturbance protection devices (GB/T 17626.23). The purpose is to describe the
Describe the basic principle of HEMP test, as well as the theoretical basis (test concept), test configuration, required equipment,
Important concepts such as test procedures and data processing.
--- Test methods for HEMP conducted disturbance protection devices (GB/T 17626.24). The purpose is to specify HEMP conducted disturbance protection
Test methods for protective devices, including tests for voltage breakdown and voltage limiting characteristics, and residuals when voltage and current rapidly change
How to measure voltage.
--- Part 25.Equipment and systems HEMP immunity test methods (GB/T 17626.25). The purpose is to establish general and
Reproducible benchmarks for evaluating exposure to HEMP radiation environments and their generation on power supplies, antennas, I/O signal lines, and control lines
Performance of electrical and electronic equipment when subjected to conducted transient disturbances.
---Three-phase voltage unbalance immunity test (GB/T 17626.27). intended for electrical and electronic equipment subjected to unbalanced
Establish a reference for immunity evaluation at supply voltage.
--- Power frequency frequency change immunity test (GB/T 17626.28). The purpose is to provide electrical and electronic equipment subjected to power frequency changes
It provides a basis for the immunity evaluation of the chemical time.
--- Immunity test for voltage sags, short interruptions and voltage changes at DC power input ports (GB/T 17626.29). The purpose is
It is used to establish a general standard for evaluating the immunity of DC electrical and electronic equipment when they are subjected to voltage dips, short interruptions and voltage changes.
guidelines.
--- Power quality measurement method (GB/T 17626.30). The purpose is to specify the measurement parameters of power quality in 50Hz AC power supply system.
measurement methods and interpretation of measurement results.
--- Part 31.AC power port broadband conducted disturbance immunity test (GB/T 17626.31). The purpose is to create a general
Benchmark for evaluating AC power ports of electrical and electronic equipment subjected to conducted disturbances from intentional and/or unintentional broadband signal sources
immunity to noise.
--- Part 32.Overview of high-altitude nuclear electromagnetic pulse (HEMP) simulator (GB/T 17626.32). The aim is to provide international
There are system-level HEMP simulators and the related information they need as immunity test and verification equipment.
--- Part 33.Measurement methods of high power transient parameters (GB/T 17626.33). The purpose is to give high power electromagnetic transient response
Information about the measurement method and characteristic parameters of the waveform.
--- Voltage sag, short interruption and voltage change immunity test for equipment with main power supply current greater than 16A per phase (GB/T 17626.34).
The purpose is to establish a general method for evaluating the immunity of electrical and electronic equipment when subjected to voltage dips, short interruptions and voltage changes.
guidelines.
--- Part 35.Overview of high power electromagnetic (HPEM) simulators (GB/T 17626.35). The aim is to provide internationally existing
System-level HPEM narrowband (narrow spectrum) and wideband (broadband, sub-ultra-broadband, and ultra-broadband) simulators and their use as immunity tests
Relevant information needed to authenticate the device.
--- Part 36.IEMI immunity test for equipment and systems (GB/T 17626.36). The purpose is to evaluate devices and systems
Immunity to sources of intentional electromagnetic interference provides a means of determining test levels.
--- Part 37.Harmonic emission test system calibration and verification protocol (GB/T 17626.37). The purpose is to provide manufacturers, terminals
Users, independent laboratories, and other organizations provide systematic guidance to specify the applicable compliance within a certain range of harmonic current emissions.
regulatory status.
--- Part 38.Testing, verification and calibration protocols for voltage fluctuation and flicker compliance test systems (GB/T 17626.38). Purpose
The aim is to provide guidelines and methods for periodic calibration and verification of systems consisting of type test equipment.
--- Part 39.Near-field radiation immunity test (GB/T 17626.39). The purpose is to establish common benchmarks for assessing exposure
Immunity requirements for electrical and electronic equipment in radiated radio frequency electromagnetic fields from sources at close range.
--- Part 40.Digital measurement methods for modulated or distorted signal power (GB/T 17626.40). The purpose is to introduce two applicable
A digital algorithm for power quantity measurement under fluctuating or non-periodic loads is presented, and the working principle of the proposed algorithm is explained.
The formulation of this document focuses on the 2kHz~150kHz differential mode conduction disturbance of the public power grid and the impact of communication signals (such as PLC) on the power grid.
The impact of sub- and electrical equipment is clearly defined, and the corresponding test methods are specified, including differential mode voltage test and differential mode current test.
The added test waveforms include continuous wave pulse test waveforms with intermittent periods and rectangular modulated pulse test waveforms. The performance of the test equipment is specified.
performance, signal coupling mode, test conditions, test steps, test result judgment and test report, etc., thereby improving product tolerance
The ability to harass from the 2kHz~150kHz frequency band of the public power grid can better meet the needs of the market.
Electromagnetic Compatibility Test and Measurement Technology
Part 19.AC power port 2kHz~150kHz
Differential Mode Conducted Disturbance and Communication Signal Immunity Test
1 Scope
This document specifies the immunity of electrical and electronic equipment to AC power port 2kHz~150kHz differential mode conduction disturbance and communication signals
Degree requirements and test methods.
The purpose of this document is to establish a general and reliable test for the AC power ports of electrical and electronic equipment to withstand differential mode conducted disturbances and communication signals.
Repeatability Guidelines. This document specifies.
--- Test waveform;
--- Test grade range;
--- test equipment;
--- Test arrangement;
--- Test procedure;
--- Validation procedure.
The provisions of this document are intended to confirm that electrical and electronic equipment operates at a voltage not higher than 220V (phase-neutral; if there is no neutral, phase-
When working with a power supply with a frequency of 50 Hz, it is subjected to differential mode conduction from power electronics, power line communication systems (PLC), etc.
Harassment immunity.
The differential mode immunity of harmonics, interharmonics and carrier communication of AC power ports not higher than 2kHz is in accordance with GB/T 17626.13.
Emissions in the 2kHz to 150kHz frequency range usually include both differential and common mode components. This document is only for differential mode disturbance
And communication signal provides immunity test. For common mode tests, see IEC 61000-4-16.
2 Normative references
The contents of the following documents constitute the essential provisions of this document through normative references in the text. Among them, dated references
For documents, only the version corresponding to the date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to
this document.
GB/T 17626.13 Electromagnetic compatibility test and measurement technology AC power port harmonics, interharmonics and low frequency immunity of grid signals
Interference test (GB/T 17626.13-2006, IEC 61000-4-13.2002, IDT)
3 Terms, Definitions and Abbreviations
3.1 Terms and Definitions
The following terms and definitions apply to this document.
Note. Terms and definitions are limited to 2kHz~150kHz differential mode conduction disturbance and communication signal fields (not all terms and definitions are included in
GB/T 4365-2003).
3.1.1
auxiliary equipment auxiliary equipment; AE
During the test, it is used to set all the functions of the equipment under test (EUT) and evaluate whether the performance (operation) is normal or not.
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