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Transient Analysis of Full-Wave Generalized PEEC Model for Interconnection Problems

机译:互连问题的全波广义PEEC模型的瞬态分析

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摘要

In this article, an efficient transient analysis method for high-speed interconnection and packaging problems is proposed. The method is committed to a full-wave generalized partial element equivalent circuit (G-PEEC) model with guaranteed stability and causality. With the proposed method, the full-wave G-PEEC model is represented by a few static compact subcircuits that are derived by applying the micromodeling circuit method to the G-PEEC model at a few discrete frequency points. Its transient response can be obtained by a linear combination of responses of the compact subcircuits, which can be simulated by the transient analysis method of SPICE. By adopting the compact subcircuits, which is an order reduced G-PEEC model, the transient simulation can be speeded up by two orders of magnitude when compared with the case if the subcircuits are generated directly from the G-PEEC model. Since the compact subcircuits are static, physically meaningful, and passive, the proposed transient analysis is with guaranteed stability and causality. Moreover, a frequency compensation strategy is proposed for preparing input signals of subcircuits to avoid the Gibbs phenomenon. Finally, three numerical examples, including eye-diagrams for a practical multilayer interconnection problem, are given, demonstrating the effectiveness, accuracy, scalability, and simplicity of the proposed method.
机译:本文提出了一种有效的瞬态分析方法,用于高速互连和封装问题。该方法致力于具有保证的稳定性和因果关系的全波广义部分元等效电路(G-PEEC)模型。使用所提出的方法,全波G-PEEC模型由几个静态紧凑子电路表示,这些子电路是通过在几个离散频率点将微模型电路方法应用于G-PEEC模型而得出的。它的瞬态响应可以通过紧凑子电路响应的线性组合来获得,这可以通过SPICE的瞬态分析方法进行仿真。与采用直接由G-PEEC模型生成子电路的情况相比,通过采用紧凑的子电路(即降阶G-PEEC模型),可以将瞬态仿真速度提高两个数量级。由于紧凑的子电路是静态的,在物理上有意义的并且是无源的,因此所提出的瞬态分析具有保证的稳定性和因果关系。此外,提出了一种频率补偿策略来准备子电路的输入信号,以避免吉布斯现象。最后,给出了三个数值示例,包括用于实际多层互连问题的眼图,证明了该方法的有效性,准确性,可扩展性和简便性。

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