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Rapid Inductance Calculation for Interconnects Containing Current Returning, Grounded, Floating Conductors

机译:互连的快速电感计算,其互连返回,接地,浮动导体

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This paper describes an accurate and efficient method to calculate parasitic inductance of complicated interconnects. Whereas the differential/integral equations-based numerical algorithms excel at obtaining accurate representation of parasitic inductance, their inherent numerical approach requires long CPU execution time and thus undermines their otherwise superb parasitic extraction capability. An algorithm capable of rapidly decomposing complicated trace structures using the theory of partial inductance and computes the decomposed structures using established analytical formulas will be demonstrated. It will be shown that the described technique achieves accuracy comparable to that obtained from a commercial field solver. A realistic package will have grounded, floating conductors and current returning conductors. Techniques of extracting inductance of interconnects containing grounded conductors, floating conductors and current returning paths from the inductance matrix generated using the method described earlier will be discussed as well.
机译:本文介绍了计算复杂互连的寄生电感的准确有效的方法。而基于差分/积分方程的数值算法Excel在获得寄生电感的准确表示时,其固有的数值方法需要长CPU执行时间,从而破坏其否则寄生的提取能力。一种能够使用部分电感理论快速分解复杂迹线结构的算法,并将证明使用建立的分析公式计算分解结构。结果表明,所描述的技术实现了与从商业场求解器获得的精度相当的精度。现实包装将接地,浮动导体和电流返回导体。还将讨论从使用前面描述的方法生成的接地导体的互连,浮动导体和电流返回路径的互连电感的技术。

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