ECMA TR 94-2007 Assessment of the Human Exposure to Electromagnetic Fields for Low Power Electronic and Electrical Apparatus according to EN 50371 2002《根据EN50371 2002评估低功率电子和电气设备电磁.pdf
《ECMA TR 94-2007 Assessment of the Human Exposure to Electromagnetic Fields for Low Power Electronic and Electrical Apparatus according to EN 50371 2002《根据EN50371 2002评估低功率电子和电气设备电磁.pdf》由会员分享,可在线阅读,更多相关《ECMA TR 94-2007 Assessment of the Human Exposure to Electromagnetic Fields for Low Power Electronic and Electrical Apparatus according to EN 50371 2002《根据EN50371 2002评估低功率电子和电气设备电磁.pdf(21页珍藏版)》请在麦多课文档分享上搜索。
1、 ECMA TR/94 1stEdition / December 2007 Assessment of the Human Exposure to Electromagnetic Fields for Low Power Electronic and Electrical Apparatus according to EN 50371:2002 Ecma International Rue du Rhne 114 CH-1204 Geneva T/F: +41 22 849 6000/01 www.ecma-international.org IW TR-094.doc 11.12.2007
2、 11:09:00 Assessment of the Human Exposure to Electromagnetic Fields for Low Power Electronic and Electrical Apparatus according to EN 50371:2002 Technical Report ECMA TR/94 1stEdition / December 2007 . Introduction Assessing compliance with a new standard usually requires additional measurements, w
3、hich increase cost and time-to-market. Compliance with EMF standards is now required under EU Directives. For low power electronic devices covered by EN 50371, there is an alternative way to demonstrate compliance, usually without additional measurements, provided that the product has previously pas
4、sed EMC measurements. This Ecma Technical report outlines the computations that allow determining compliance of a low power electronic device, based on an assessment of already available EMC measurement results. This Ecma Technical Report has been adopted by the General Assembly of December 2007. -
5、i - Table of contents 1 Scope 1 2 References 1 3 Acronyms 2 4 Assessment of the total emitted power (to be 1 GHz. 2 References EN 50371:2002 Generic standard to demonstrate the compliance of low power electronic and electrical apparatus with the basic restrictions related to human exposure to electr
6、omagnetic fields (10 MHz 300 GHz) General public EN 55011:1998 Limits and methods of measurement of radio disturbance characteristics of industrial, scientific and medical (ISM) radio-frequency equipment EN 55013:2001 Sound and television broadcast receivers and associated equipment. Radio disturban
7、ce characteristics. Limits and methods of measurement EN 55014-1:2007 Electromagnetic compatibility Requirements for household appliances, electric tools and similar apparatus Part 1: Emission EN 55016-1-3:2007 Specification for radio disturbance and immunity measuring apparatus and methods Part 1-3
8、: Radio disturbance and immunity measuring apparatus Ancillary equipment Disturbance power EN 55016-2-1:2005 Specification for radio disturbance and immunity measuring apparatus and methods Part 2-1: Methods of measurement of disturbances and immunity Conducted disturbance measurements EN 55022:1998
9、 Information technology equipment Radio disturbance characteristics Limits and methods of measurement EN 61000-6-3:2001 Electromagnetic compatibility (EMC) - Part 6-3: Generic standards - Emission standard for residential, commercial and light-industrial environments EN 61000-6-4:2001 Electromagneti
10、c compatibility (EMC) - Part 6-4: Generic standards - Emission standard for industrial environments ETSI TR 102273-2 V1.2.1:2001 Electromagnetic compatibility and Radio spectrum Matters (ERM); Improvement on Radiated Methods of Measurement (using test site) and evaluation of the corresponding measur
11、ement uncertainties; Part 2: Anechoic chamber ETSI TR 102273-3 V1.2.1.2001 Electromagnetic compatibility and Radio spectrum Matters (ERM); Improvement on Radiated Methods of Measurement (using test site) and evaluation of the corresponding measurement uncertainties; Part 3: Anechoic chamber with a g
12、round plane EU Council Recommentadion 1999/519/EC ICNIRP Guidelines (4-98) - 2 - 3 Acronyms CEN Comit Europen de Normalisation (in English: European Committee for Standardization) CENELEC Comit Europen de Normalisation Electrotechnique (in English: European Committee for Electrotechnical Standardiza
13、tion) EMF Electromagnetic Fields ETSI: European Telecommunications Standards Institute ICNIRP International Commission on Non-Ionizing Radiation Protection SAR Standard Absorption Rate 4 Assessment of the total emitted power (to be 1000 MHz limit: D class A: 60 / class B: 54 dbV/m (d) The total emit
14、ted power is assessed under the theoretical assumption that the EUT radiates with an equal distance between the spectral lines, which leads to following equations: Figure 5 Spectral lines and spectral line distance 10 MHz to 30 MHz In band a) a receiver (EN 55016) resolution bandwidth of 9kHz as the
15、 spectral line distance dsleads to the following maximum number of spectral lines: LinesSpectralkHzMHzMHz_222291030=30 MHz to 230 MHz and 230 MHz to 1000 MHz In bands b) and c) a receiver (EN 55016) resolution bandwidth of 120kHz as spectral distance ds leads to the following maximum numbers of spec
16、tral lines: LinesSpectralkHzMHzMHz_166712030230=Spectral line distance ds- 10 - And LinesSpectralkHzMHzMHz_64171202301000=1 GHz to 300 GHz In band d) a receiver (EN 55016) resolution bandwidth of 1 MHz as spectral distance dsleads to the following maximum number of spectral lines: LinesSpectralMHzGH
17、zGHz_29900011300=Under this assumption, over the whole frequency band from 10 MHz to 300 GHz; the total power of 309306 (= 299000 d + 6417c + 6417 b + 2222 a) spectral lines has to be determined. The radiated power is to be determined as follows: =nSLTotalPP1(7) PSL = EIRP of a single spectral line
18、n = total No of spectral lines EMC measurements provide electrical field strength measured at a given distance from the source of radiation. The relationship between field strength and source power is as follows: 64.1210=ZPsrE (8) The above equation is valid for far field free space conditions. The
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