A more accurate electromagnetic modeling of WBG power modules

Ivana Kovačević-Badstübner, U. Grossner, D. Romano, G. Antonini, J. Ekman
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引用次数: 7

Abstract

A major requirement for further development of wide-band gap (WBG) power devices and their applications is the optimization of packages and PCB layouts to enable fast-switching capabilities. Electromagnetic modelling allows the prediction of parasitic inductances, capacitances, and resistances of the current paths within power modules, which cannot be easily approached in measurements. As a result, electromagnetic-circuit-coupled modeling enables the optimization of package layouts and interconnections before manufacturing actual power modules. The accuracy and limitations of present numerical techniques for three-dimensional (3D) electromagnetic modeling of power modules is still neither well understood nor verified. This paper presents the extraction of parasitics of power semiconductor packages using two electromagnetic modelling approaches. The first approach is based on a well-established 3D electromagnetic quasi-static solver, ANSYS Q3D Extractor. For the second approach, a numerical solver based on the Partial Element Equivalent Circuit (PEEC) method is developed and assessed in terms of modelling accuracy required by fast switching WBG-based power converters. The PEEC method is presented as a promising numerical technique, which can potentially be used to overcome the limitations of the EM modeling based on the ANSYS Q3D Extractor.
更精确的WBG电源模块电磁建模
宽带隙(WBG)功率器件及其应用进一步发展的一个主要要求是优化封装和PCB布局,以实现快速开关功能。电磁建模可以预测功率模块内电流路径的寄生电感、电容和电阻,这些在测量中不容易接近。因此,电磁电路耦合建模可以在制造实际功率模块之前优化封装布局和互连。目前功率模块三维(3D)电磁建模的数值技术的准确性和局限性仍然没有得到很好的理解和验证。本文介绍了利用两种电磁建模方法提取功率半导体封装的寄生特性。第一种方法是基于一个成熟的三维电磁准静态求解器ANSYS Q3D Extractor。对于第二种方法,开发了基于部分元件等效电路(PEEC)方法的数值求解器,并根据基于wbg的快速开关功率变换器所需的建模精度进行了评估。PEEC方法是一种很有前途的数值技术,可以克服基于ANSYS Q3D Extractor的电磁建模的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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