Effect of layered media on the parallel plate impedance of printed circuit boards

David Dahl, S. Muller, C. Schuster
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引用次数: 5

Abstract

This paper evaluates the impact of layered media on the parallel plate impedance of printed circuit boards. In the parallel plate impedance computation using the radial waveguide method (RWM) for infinite planes and a contour integral method (CIM) for finite planes, the layered nature of investigated structures can be accounted for by effective wave numbers. Here, the effective wave numbers are obtained using either an exact solution from the transverse resonance method (TRM) or adopting approximations based on the assumption of quasi-TEM fields and the applicability of suitable averages. The wave numbers obtained with these techniques are compared for typical structures of interest, and the parallel plate impedance computed with effective wave numbers is evaluated and compared to a full wave solution. The results show that a comparatively simple approximation for the effective wave number is sufficient for an accurate parallel plate impedance calculation.
层状介质对印刷电路板平行板阻抗的影响
本文研究了层状介质对印刷电路板平行板阻抗的影响。在用径向波导法(RWM)计算无限平面平行板阻抗和用轮廓积分法(CIM)计算有限平面平行板阻抗时,研究结构的层状特性可以用有效波数来解释。本文采用横向共振法(TRM)的精确解或基于准瞬变电磁场假设和适当的平均值适用性的近似方法来获得有效波数。用这些方法得到的波数与我们感兴趣的典型结构进行了比较,并用有效波数计算的平行板阻抗进行了评估,并与全波解进行了比较。结果表明,对有效波数的一个比较简单的近似足以精确地计算平行板阻抗。
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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