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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Partial discharge control in a power electronic module using high permittivity non-linear dielectrics
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Partial discharge control in a power electronic module using high permittivity non-linear dielectrics

机译:使用高介电常数非线性电介质的功率电子模块中的局部放电控制

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摘要

High electric fields at the edge of the substrate metallization can give rise to partial discharge within power electronic modules and can lead to eventual failure. This paper examines the use of silicone gels filled with barium titanate to reduce the electric field enhancement at the edge of substrate metallization and therefore increase partial discharge inception voltages. The barium titanate filled gel produces a dielectric in which the relative permittivity is increased over a plain gel and that also exhibits a dependence on electric field. The theoretical electric field reduction that can be achieved in a power electronic module through the use of filled gels is demonstrated and compared against experimental measurements including the trial of the technique in some commercial modules. As promising results are achieved, consideration is also given to the effect of the barium titanate filler on the viscosity of the gel and the thermal conductivity, two key manufacturing issues.
机译:基板金属化边缘的高电场会导致功率电子模块内的局部放电,并可能导致最终故障。本文研究了填充钛酸钡的有机硅凝胶的使用,以减少基板金属化边缘处的电场增强,从而提高局部放电起始电压。填充钛酸钡的凝胶产生电介质,其中相对介电常数相对于普通凝胶增加,并且还表现出对电场的依赖性。演示了通过使用填充的凝胶可在功率电子模块中实现的理论电场减小,并将其与包括在某些商用模块中试用该技术在内的实验测量结果进行了比较。当获得有希望的结果时,还考虑了钛酸钡填料对凝胶粘度和导热性的影响,这是两个关键的制造问题。

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