ECMA TR 93-2007 Measuring Emissions from Modules《测定各模块的辐射 第1版》.pdf
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1、 ECMA TR/93 1stEdition / December 2007 Measuring Emissions from Modules Ecma International Rue du Rhne 114 CH-1204 Geneva T/F: +41 22 849 6000/01 www.ecma-international.org IW TR-093.doc 02/01/2008 14:39:00 Measuring Emissions from Modules Technical Report ECMA TR/93 1stEdition / December 2007 . Int
2、roduction Manufacturers need to know how the insertion of add-on modules affects the compliance of their products with applicable EMC requirements. VCCI, an Ecma member, developed a method to determine the RF disturbances generated by a module into its power feeding leads. This Ecma Technical Report
3、 develops that measurement method. Conducted RF disturbances determined according to that method can be used as a measure of the contribution of an add-on module to the RF disturbances generated by the host appliance. The method may be used to compare various modules or to estimate the interference
4、potential of a specific module, but is not intended to be used to assess compliance with applicable national or international standards. This Ecma Technical Report has been adopted by the General Assembly of December 2007. - i - Table of contents 1 Scope 1 2 References 1 3 Definitions and abreviatio
5、ns 1 3.1 Definitions 1 3.1.1 Magnetic probe 1 3.1.2 Module 1 3.2 Abbreviations 1 4 Measuring facility 1 4.1 Shielded room 1 4.2 Fixture for magnetic probe 1 4.3 Measuring instruments 2 4.3.1 Measuring receiver 2 4.3.2 Spectrum analyzer 2 4.3.3 Magnetic probe 2 4.4 Test board 4 5 Measuring Method 4 5
6、.1 Temperature 4 5.2 Power supply 4 5.3 Positioning of MUT and magnetic probe 4 5.3.1 Positioning of MUT 4 5.3.2 Space and positioning of magnetic probe 4 5.4 Measurement procedure 5 5.5 Reporting measurement results 6 6 Method for calibrating the magnetic probe 7 6.1 Application 7 6.2 Measuring ins
7、truments used for calibrating the magnetic probe 7 6.2.1 Preamplifier 7 6.2.2 Micro-strip line 7 6.2.3 Other measuring instruments 7 6.3 Calibration procedures 7 Annex A Conditions for measuring emissions from the Module Under Test 9 A.1 Test board 9 - ii - A.1.1 Layer placement 9 A.1.2 Decoupling c
8、apacitor 10 A.1.3 Other components 10 A.1.4 Measuring circuit 10 A.2 Integrated memory 11 A.2.1 Placement of MUT 11 A.2.2 Operating conditions 11 A.3 Integrated disk unit 12 A.3.1 Placement of MUT 12 A.3.2 Operating conditions 12 A.4 Interface board 14 A.4.1 Placement of MUT 14 A.4.2 Operating condi
9、tions 14 Annex B Current measurements with a magnetic probe 17 Annex C Influence of magnetic-probe placement on measured values 19 - 1 - 1 Scope This Ecma Technical Report provides guidelines for measuring electromagnetic emissions from modules, in view of assessing the impact of such modules on emi
10、ssions from products which may incorporate them. The present guidelines cover measurement methods as well as measuring facilities. Detailed technical conditions for testing are separately stipulated in Annex A. Modules covered by this document, as well as the equipment incorporating them have a supp
11、ly voltage rating not exceeding 600 VDC. 2 References IEC 61967-1 (2002) Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 1: General conditions and definitions IEC 61967-6 (2002) Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz -
12、 Part 6: Measurement of conducted emissions - Magnetic probe method CISPR 16-1-1 (2003) Specification for radio disturbance and immunity measuring apparatus and methods 3 Definitions and abbreviations 3.1 Definitions 3.1.1 Magnetic probe Non-contact current probe using magnetic coupling 3.1.2 Module
13、 A printed circuit board or other assembly intended to be buit-in into a device 3.2 Abbreviations FR-4 Flame Resistant 4 MUT Module Under Test RBW Resolution Bandwidth SNR Signal to Noise Ratio 4 Measuring facility This document assumes that current measurements are made using the magnetic probe def
14、ined in IEC 61967-6. 4.1 Shielded room To obtain accurate results, measurements should be carried out in a shielded room, which can eliminate the emissions from surrounding environment. However, at locations where the measured emissions from the surrounding environment are lower than the ones define
15、d in 2) of 5.4, the shielded room need not be used. 4.2 Fixture for magnetic probe A special fixture may be needed to fix a magnetic probe accurately and stably over the micro-strip line on a test board. - 2 - 4.3 Measuring instruments To obtain accurate and repeatable results, measuring instruments
16、 should meet the conditions stated in CISPR 16-1-1 (2003). These instruments - for example, measuring receivers, spectrum analyzers, and cables are be periodically calibrated and checked, ideally once a year. The method used for calibration is either directly or indirectly traceable to national stan
17、dards. The procedure for calibrating the magnetic probe is described in Clause 6. 4.3.1 Measuring receiver Table 1 Settings of frequency range and bandwidth of the measuring receiver Frequency range 10 MHz 30 MHz 30 MHz 1 GHz 6 dB bandwidth 9 kHz 120 kHz For details about the settings of the measuri
18、ng receiver, refer to CISPR 16-1-1 (2003). 4.3.2 Spectrum analyzer Table 2 Settings of frequency range and RBW of the spectrum analyzer Frequency range 10 MHz 30 MHz 30 MHz 1 GHz 3 dB RBW 10 kHz 100 kHz 4.3.3 Magnetic probe The magnetic probe is constructed with a shield against static electricity.
19、The structure of the magnetic probe is shown in Figures 1 through 4. Figure 1 Magnetic probe Layer 1 and 3 1.8 mm 30 mm 0.8 mm Via : Inner diameter 0.25 mm0.2 mm10 mm 8.4 mm 0.1 mm 10 mm Center ViaVia- 3 - Figure 2 Magnetic probe Figure 3 Magnetic probe Layer 2 : Copper foil SMA connectorLayer 1 Lay
20、er 2 Layer 3 30 mm Via Via 10 mm 30 mm Via 0.1 mm 10 mm 4.6 mm1.0 mm Center Via Inner diameter 0.25 mm 0.4 mm - 4 - Figure 4 Magnetic probe structure of each layer 4.4 Test board To measure emissions from a module a test board has to be used to which the MUT is attached. A micro-strip line to measur
21、e with the magnetic probe shall be provided on the test board. For the details, consult Annex A. 5 Measuring Method 5.1 Temperature The ambient temperature of the actual test facility is within the range of 15 C to 35 C. The temperature during measurement is being recorded. 5.2 Power supply The powe
22、r supply feeds the MUT with the required voltage and current for that MUT. 5.3 Positioning of MUT and magnetic probe 5.3.1 Positioning of MUT The MUT is positioned on the top layer of the test board, as detailed in Annex A. 5.3.2 Spacing and positioning of magnetic probe The magnetic probe is positi
23、oned in such a manner that: - the space between the tip of the magnetic probe and the micro-strip line is 1.0 mm 0.1 mm; Layer 3 Layer 2Layer 1 InsulatorStructure of each layer layer 1 : Thickness of copper foil 0.035 mmThickness of Insulator 0.2 mm layer 2 : Thickness of copper foil 0.035 mmThickne
24、ss of Insulator 0.2 mm layer 3: Thickness of copper foil 0.035 mmInsulatorCenter Insulator ( glass epoxy ) - 5 - - the positioning angle of the magnetic probe to the micro-strip line is less than 5 degrees; - the magnetic probe is at the center of the longer dimension of the micro-strip line. More d
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