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A physical model for the transient response of capacitively loaded distributed rlc interconnects

机译:电容负载分布式rlc互连的瞬态响应的物理模型

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Rapid approximation of the transient response of high-speed global interconnects is needed to estimate the time delay, crosstalk, and overshoot in a GSI multilevel wiring network. This paper outlines a rigorous and physical solution for transients in a capacitively-loaded distributed rlc interconnect using a convergent series of modified Bessel functions. Compact models for time delay and repeater insertion are derived. The single-line model is extended to evaluate crosstalk in two-coupled lines. These solutions are validated by HSPICE simulation, and have potential applications to rapid rlc timing analysis, global wire sizing and repeater insertion, signal integrity estimation, and reliability modeling (e.g. voltage overshoot and high current density concerns).
机译:需要快速近似高速全局互连的瞬态响应,以估计GSI多级布线网络中的时间延迟,串扰和过冲。本文概述了一系列收敛的修正贝塞尔函数,为容性负载分布式rlc互连中的瞬态提供了严格的物理解决方案。得出了用于时间延迟和中继器插入的紧凑模型。扩展了单线模型以评估两耦合线中的串扰。这些解决方案已通过HSPICE仿真验证,并在快速rlc时序分析,全局导线定径和中继器插入,信号完整性估计以及可靠性建模(例如,电压过冲和高电流密度问题)中具有潜在的应用。

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