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Analysis of signal propagation in high-speed differential signal lines with full-wave time-domain technique

机译:全波时域技术分析高速差分信号线中的信号传播

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With the advancements in electronics, interests in interconnect of high-speed digital circuits and IC packaging have greatly increased in EMC community for signal integrity (SI). However, in order to take complex electromagnetic effects such as radiation, reflection and coupling into account, full-wave numerical techniques must be resorted, which usually result in intensive computation. This paper presents the investigation in electrical performance of differential signaling transmission lines, an increasingly used high-speed interconnect, by using the finite-difference time-domain (FDTD) method. The MPI-based parallel FDTD implementation is firstly discussed and a simple FDTD thin sheet algorithm is considered for imperfectly conductive strip lines. The characteristic impedance of, current distributions in, the reflection from the termination in, the effects of through via in, and the radiation from differential signal lines for even and odd modes are then investigated. The deep insights acquired is useful to optimize interconnect designs with differential signaling transmission lines for SI and EMC purposes.
机译:随着电子技术的进步,EMC社区对于信号完整性(SI)的高速数字电路和IC封装互连的兴趣大大增加。但是,为了考虑复杂的电磁效应,例如辐射,反射和耦合,必须采用全波数值技术,这通常会导致计算量大。本文通过使用有限差分时域(FDTD)方法,对差分信号传输线(一种日益广泛使用的高速互连)的电气性能进行了研究。首先讨论了基于MPI的并行FDTD实现,并考虑了针对不完全导电的带状线的简单FDTD薄片算法。然后研究偶数和奇数模式的特征阻抗,电流分布in,来自终端输入的反射,通孔in的影响以及差分信号线的辐射。所获得的深刻见解对于优化具有SI和EMC目的的差分信号传输线的互连设计非常有用。

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