球隙静电放电引起的瞬态电场峰值距离特性研究

K. Kawamata, S. Ishigami, O. Fujiwara
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引用次数: 1

摘要

脉冲宽带电磁噪声是由静电放电产生的。瞬态电磁噪声是导致设备故障和失效的一个棘手问题。因此,为了验证该辐射模型对探讨静电放电引起电磁噪声辐射机理的有效性,采用宽带光场探头对一对球形电极中静电放电引起的电场峰值的距离特性进行了检测。结果表明,电场峰值在放电间隙附近按距离d的1/d3衰减,在较远的距离处按距离d的1/d2和1/d衰减。由此证实,用短偶极子模型可以解释球面电极对静电放电引起的电磁场辐射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distance Characteristics of Field Peak Value of Transient Electric Field Caused by Sphere-Gap ESD Using a Optical E-Field Probe
Impulsive wideband electromagnetic noise is occurred by ESD (Electrostatic Discharge). The transient EM noise is an awkward problem that causes equipment malfunctions and failures. Therefore, in order to confirm the validity of the radiation model for discussing the mechanism of EM noise radiation by ESD, and the distance characteristic of the electric field peak value caused by ESD in a pair of spherical electrodes was examined using a wideband optical field probe. As a result, the field peak value was attenuated according to 1/d3 of the distance d in the very vicinity of the discharge gap, and was attenuated according to 1/d2 and 1/$d$ at the far distance. From this result, it was confirmed that the EM field radiation caused by ESD of the pair of spherical electrodes can be explained by using the short dipole model.
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