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Minimization of the equivalent parallel capacitance in planar magnetic EMI filters

机译:最小化平面电磁EMI滤波器中的等效并联电容

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The magnetic planar technology is nowadays an attractive solution for designing the electrical devices due to its efficiency at high frequencies and its mechanical robustness. On the other hand, the general trend of reducing the dimensions of the integrated structures one inherently leads to the increase of their structural parasitic effects. In this light, the paper proposes a new method for the minimization of the equivalent parallel capacitance (EPC) of these structures based on optimal design. The paper describes the optimization algorithm developed by the authors designed to determine the optimal placement of the structure's conductor routes that minimize the structural inter-winding capacitance. In the first part of the paper the theoretical background is presented while in the second part the optimization algorithm validation and the usage of the OptimCond package for complex planar magnetic integrated structures are outlined, followed by the final conclusions.
机译:如今,磁性平面技术由于其在高频下的效率及其机械强度而成为设计电气设备的一种有吸引力的解决方案。另一方面,减小集成结构尺寸的总趋势固有地导致其结构寄生效应的增加。有鉴于此,本文提出了一种基于优化设计的最小化这些结构的等效并联电容(EPC)的新方法。本文介绍了由作者开发的优化算法,旨在确定结构的导体路径的最佳位置,以最大程度地减小结构绕组间的电容。在本文的第一部分中,介绍了理论背景,在第二部分中,概述了优化算法的验证以及用于复杂平面磁​​集成结构的OptimCond软件包的用法,最后给出了结论。

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