EN 60801-2-1993 en Electromagnetic Compatibility for Industrial-Process Measurement and Control Equipment Part 2 Electrostatic Discharge Requirements《工业过程测量和控制设备的电磁兼容性 第2部分 静电放电要求(.pdf
《EN 60801-2-1993 en Electromagnetic Compatibility for Industrial-Process Measurement and Control Equipment Part 2 Electrostatic Discharge Requirements《工业过程测量和控制设备的电磁兼容性 第2部分 静电放电要求(.pdf》由会员分享,可在线阅读,更多相关《EN 60801-2-1993 en Electromagnetic Compatibility for Industrial-Process Measurement and Control Equipment Part 2 Electrostatic Discharge Requirements《工业过程测量和控制设备的电磁兼容性 第2部分 静电放电要求(.pdf(32页珍藏版)》请在麦多课文档分享上搜索。
1、3404583 0060659 222 EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 60801-2 March 1993 UDC 621.3.011-5 Supersedes HD 481.2 S1 : 1987 Descriptors: Industrial-process measurement and control, electromagnetic compatibility, electrostatic interference, test protocol with respect to electrostatic in
2、terference, severity levels with respect to electrostatic interference English version Electromagnetic compatibility for industrial-process measurement and control equipment Part 2 : Electrostatic discharge requirements (IEC 801-2 : 1991) Compatibilit lectromagntique pour les matriels de mesure et d
3、e commande dans les processus industriels Partie 2 : Prescriptions relatives aux dcharges lectrostatiques (IEC 801-2 : 1991) Elektromagnetische Vertrglichkeit von Me VCP: Vertical Coupling Plane. 4.9 holding time: Interval of time within which the decrease of the test voltage due to leakage, prior t
4、o the discharge, is not greater than 10 %. 4.10 static electricity discharge; ESD: A transfer of electrostatic charge between bodies of different electrostatic potential, in proximity or through direct contact IEV 161 -01 -221. COPYRIGHT European Committee for Electrotechnical StandardizationLicense
5、d by Information Handling Services9 3qOY583 00bObb3 753 Page 5 EN 60801-2 : 1993 4.11 immunity (to a disturbance): The ability of a device, equipment or system to perform without degradation in the presence of an electromag- netic disturbance IEV 161 -01 -201. 4.12 contact discharge method: A method
6、 of testing, in which the elec- trode of the test generator is held in contact with the EUT, and the discharge actuated by the discharge switch within the generator. 4.13 air discharge method: A method of testing, in which the charged electrode of the test generator is approached to the EUT, and the
7、 dis- charge actuated by a spark to the EUT. 4.14 direct application: Application of the test directly to the EUT. 4.15 indirect application: Application of the test to a coupling plane in the vicinity of the EUT, and simulation of personnel discharge to objects which are adjacent to the EUT. 5 Seve
8、rity levels The severity levels shown in table 1 are recommended for the ESD test. All lower levels must be satisfied. Details concerning the various parameters which may influence the voltage level to which the human body may be charged are given in clause A.2 of annex A. Annex A.4 also contains ex
9、amples of the application of the severity levels related to environmental (installation) classes. Contact discharge is the preferred test method. Air discharges shall be used where contact discharge cannot be applied. Voltages for each test method are given in tables 1.a and l.b. The voltages shown
10、are different for each method due to the differing methods of test. It is not intended to imply that the test severity is equivalent between test methods. Further information is given in clauses A.3, A.4 and A.5 of annex A. Table 1.a - Severity levels Table 1.b - Severity levels Test vol tage Air di
11、scharge “xW is an open level. The level is subject to negotiations and has to be specified in the dedicated equipment specification. If higher voltages than those shown are specified, special test equipment may be needed. COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by I
12、nformation Handling Services3404583 00bObb4 bT Page 6 EN 60801-2 : 1993 6 Test generator (ESD) The test generator consists, in itsmain parts, of: - charging resistor Rch; - energy-storage capacitor Cs; - distributed capacitance cd; - discharge resistor Rd; - voltage indicator; - discharge switch; -
13、interchangeable tips of the disch rge electrod (see figure 4); - discharge return cable; - power supply unit. A simplified diagram of tional details are not of 6.1 and 6.2. the ESD generator is given in figure 1. Construc- given. The generator shall meet the requirements 6.1 Characteristics and perf
14、ormance of the ESO generator - - - - energy storage capacitance (Cs + cd): 150 pF 110 8; discharge resistance (Rd): 330 R 210 8; charging resistance (Rch): between 50 MR and 100 MQ; output voltage (see note 1): up to 8 kV (nominal) for contact discharge; up to 15 kV (nominal) for air discharge; - to
15、lerance of the output voltage indication: 15 &; - polarity of the output voltage: positive and negative; - holding time: at least 5 s; - discharge, mode of operation (see note 2): single discharge (time between successive discharges at least 1 s); - waveshape of the discharge current: see 6.2. NOTES
16、 1 Open circuit voltage measured at the energy storage capacitor. 2 The generator should be able to generate at a repetition rate of at least 20 discharges per second for exploratory purposes only. The generator shall be provided with means of preventing unintended radiated or conducted emissions, o
17、f either pulse or continuous type, so as not to disturb the EUT or auxiliary test equipment by parasitic effects. COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by Information Handling Servicesm 3404583 00bObb5 526 = level Page 7 EN 60801-2 : 1993 I ndi - First peak cat ed
18、 current of voltage discharge f10 % The energy storage capacitor, the discharge resistor, and the discharge switch shall be placed as close as possible to the discharge electrode. The dimensions of the discharge tips are given in figure 4. For the air discharge test method the same generator is used
19、 and the discharge switch has to be closed. The tip of the generator has to be the round IEC tip. Current (230 %I at 30 ns A The discharge return cable of the test generator shall be in general 2 m long, and constructed to allow the generator to meet the waveform specifi- cation. It shall be suffici
20、ently insulated to prevent the flow of the discharge current to personnel or conducting surfaces other than via its termination, during the ESO test. Current (f30 %I at 60 ns A In cases where a 2 m (e.9. for tall EUTs), a ance with the waveform 1 2 3 4 6.2 Verification of the 2 7,s 4 15 6 22,s 8 30
21、ength of the discharge return cable is insufficient length not exceeding 3 m may be used, but compli- specification shall be verified. 4 8 12 characteristics of the ESO generator 2 4 6 In order to compare the test results obtained from different test genera- tors, the characteristics shown in table
22、2 shall be verified using the discharge return cable to be used in the testing. Table 2 - Waveform parameters I I Rise time f with discharge sui tch ns I A I kv I 017 to 1 0,7 to 1 0,7 to 1 097 to 1 I The waveform of the output current of the ESO generator for the verification procedure shall confor
23、m to figure 3. The values of the parameters of the discharge current shall be verified with 1 o00 MHz bandwidth measuring instrumentation. A lower bandwidth implies limitations in the measurement of rise time and amplitude of the first current peak. For verification, the tip of the discharge electro
24、de shall be contacted directly to the current-sensing transducer, and the generator operated in the contact discharge mode. COPYRIGHT European Committee for Electrotechnical StandardizationLicensed by Information Handling Services3404583 00bObbb 4b2 W Page 8 EN 60801-2 : 1993 The constructional arra
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