直流磁场作用下印刷电路板的表面击穿

B. Du
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引用次数: 7

摘要

研究了印刷电路板(PCB)在直流磁场作用下的表面介电击穿现象,采用395 mT的直流磁场,外加60kv /mm、100kv /mm、300kv /mm的电场。实验采用频率为50 ~ 150 Hz的直流脉冲电压进行。采用环氧树脂层压板为实验材料,研究了磁场、电场密度和外加电压频率对环氧树脂层压板放电量的影响。研究了直流磁场作用下绝缘击穿时间与电场的关系。表面介电击穿是由样品表面的碳分解引起的,这是由于电极之间发生的放电电流产生的热量而沉淀的。研究表明,在磁场作用下,击穿时间减小,随着电场密度的增大而减小。用功率谱密度法讨论了放电电流的特性。结果表明:在磁场作用下,放电电流的功率谱密度随电场密度的增大而增大;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface breakdown of printed circuit board under dc magnetic field
Surface dielectric breakdown phenomenon of printed circuit board (PCB) under dc magnetic field was investigated, we employed a dc magnetic field, which was made at 395 mT, and the electrical field was made at 60 kV/mm, 100 kV/mm and then up to 300 kV/mm. The experiment was carried out by dc pulse voltage with the frequencies in the range of 50 Hz to 150 Hz. PCB of epoxy resin laminate have been employed to investigate the effects of the magnetic field, the density of electrical field and the frequencies of applied voltage on discharge quantity. The relation between the time to insulation breakdown and the electrical fields under dc magnetic field were examined. Surface dielectric breakdown is caused by decomposed carbon on the sample surface, which is precipitated due to heat from discharge currents occurred between the electrodes. The study revealed that the time to breakdown decreases under magnetic field and decreases with increasing the density of electrical field. The characteristics of discharge currents were discussed by using a power spectral density. The results show that the power spectral density of discharge currents increases under magnetic field and with increasing the density of electrical fields.
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