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Waveform Comparison and Difference Factors in Discharge Currents for Air Discharges from Different ESD Generators

机译:来自不同ESD发电机的空气排放放电电流的波形比较与差异因素

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摘要

Electrostatic discharge (ESD) generators must be calibrated for contact discharges with the current waveform specified in International Electro-technical Commission (IEC) 61000-4-2; however, there are no requirements in current waveforms due to their bad reproducibility for air discharges in the IEC standard. Nevertheless, the air discharge immunity testing is under obligation in the present standard. This implies that different ESD generators are likely to provide significantly different test results for air discharge testing. In this study, two types of different ESD generators were used to measure discharge currents both for contact and air discharges with respect to charge voltages from 2 kV to 8 kV under the same conditions of experimental environment. As a result, we confirmed that the measured waveforms were almost identical for contact discharges regardless of charge voltages, while we found that they are quite different for air discharges with the same approaching speed when the charge voltages are increased. The latter result is because the generator has different impedance characteristics deriving from its structure, and because the spark lengths from the generators with the same charge voltage are different. A formula for calculating the discharge current from an ESD generator through an ideal switch in lieu of a spark, which was previously derived by us, was also employed to obtain the current waveform peculiar to the generator, in order to reveal that the formula provides the different upper limit of air discharge current peaks according to the generator. (C) 2017 Wiley Periodicals, Inc.
机译:必须校准静电放电(ESD)发电机,以便在国际电技术委员会(IEC)61000-4-2中指定的电流波形进行接触放电;然而,由于IEC标准中的空气排放的不良重复性,目前波形没有任何要求。尽管如此,空气放电免疫检测是本标准的义务。这意味着不同的ESD发电机可能为空气放电测试提供显着不同的测试结果。在本研究中,使用两种类型的不同ESD发生器来测量在与实验环境的相同条件下相对于2kV至8kV的电荷电压的接触和空气放电的放电电流。结果,我们确认测量的波形几乎与接触放电几乎相同,而不管电荷电压如何,我们发现当电荷电压增加时它们对于具有相同接近速度的空气放电非常不同。后一种结果是因为发电机具有从其结构中得出的不同阻抗特性,因为来自具有相同电压电压的发电机的火花长度是不同的。通过理想的开关来计算来自ESD发电机的放电电流的公式,以便以先前推导的火花,以获得发电机特有的电流波形,以揭示公式提供根据发电机的空气放电电流峰的不同上限。 (c)2017 Wiley期刊,Inc。

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