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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Derivation of equivalent circuits for multilayer printed circuit board discontinuities using full wave models
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Derivation of equivalent circuits for multilayer printed circuit board discontinuities using full wave models

机译:使用全波模型推导多层印刷电路板间断的等效电路

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摘要

Recent advances in increasing transmission rates for digital communication systems necessitates special attention during printed circuit board (PCB) design. This contribution provides a methodology for developing appropriate simple equivalent circuits to describe the discontinuities in multilayer boards. The effects of inhomogeneous substrate material, via holes, crossovers and coupled lines are examined. The incorporation of substrate loss in the difference equation system is additionally treated. The equivalent circuits are intended for system simulation, where minimal computational overhead is desired. The Finite Difference Frequency Domain (FDFD) and Finite Difference Time Domain (FDTD) methods provide in conjunction the basis for calculating the scattering parameters [S] and fields of the discontinuities, from which equivalent circuits are derived. Excellent S parameter agreement between field computation and equivalent circuit is achieved up to 20 GHz for all structures considered. Measurements are indicated where appropriate.
机译:在数字通信系统的传输速率提高方面的最新进展需要在印刷电路板(PCB)设计期间给予特别关注。这一贡献为开发适当的简单等效电路以描述多层板中的不连续性提供了一种方法。检查不均匀衬底材料,通孔,交叉点和耦合线的影响。在差分方程系统中还处理了基板损失的合并问题。等效电路用于需要最小计算开销的系统仿真。有限差分频域(FDFD)和有限差分时域(FDTD)方法结合在一起提供了计算散射参数[S]和不连续性场的基础,从中可以得出等效电路。对于所有考虑的结构,在高达20 GHz的频率下,现场计算与等效电路之间均具有出色的S参数一致性。在适当的地方标出测量值。

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