Efficient calculation of external fringing capacitances for physics-based PCB modeling

A. Hardock, David Dahl, H. Bruns, C. Schuster
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引用次数: 4

Abstract

This paper presents an efficient computation of the static capacitance related to external fringing fields of vias (plated through holes) in printed circuit boards (PCBs). For this purpose, a numerical approach based on an integral equation for the surface charge density of axially symmetric geometries is used. The proposed method is validated with a commercial quasi-static tool. The capacitance model is applied to the modeling of typical PCB via stubs in the frequency range between 1 and 40 GHz. The results from the physics-based modeling are confirmed with a full-wave solver.
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基于物理的PCB建模中外部边缘电容的有效计算
本文提出了一种有效计算印刷电路板(pcb)中过孔(镀通孔)外部边缘场静态电容的方法。为此,采用了一种基于轴对称几何表面电荷密度积分方程的数值方法。用商用准静态工具对该方法进行了验证。电容模型应用于典型的PCB线路板的建模,通过1至40 GHz的频率范围内的插脚。用全波求解器验证了基于物理模型的模拟结果。
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