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An Approximate Closed-Form Transfer Function Model for Diverse Differential Interconnects

机译:不同差分互连的近似闭式传递函数模型

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This paper presents an approximate closed-form transfer function model for diverse differential interconnects. The proposed model is simple, intuitive, and can accurately describe various interconnects satisfying the validity conditions which theoretically bound the approximation error. The proposed model also provides a conceptual circuit representation by analogy with an equivalent circuit model of a single-ended interconnect. The model's accuracy is verified by comparing calculated through- and crosstalk-transfer functions against w-element SPICE simulation results for various LC-dominant and RC-dominant interconnects. Our analysis also empirically verifies that the approximation error is bounded by the validity parameters. In addition, the computation time is improved by about 157 times compared to that of the previous numerical computation method built-in SPICE simulator. With the proposed channel model, designers can easily understand and analyze the behaviors of various differential interconnects without complex analysis.
机译:本文提出了一种适用于各种差分互连的近似闭合形式传递函数模型。所提出的模型简单,直观,并且可以准确地描述满足有效性条件的各种互连,这些互连在理论上限制了近似误差。所提出的模型还类似于单端互连的等效电路模型,提供了概念上的电路表示。通过比较各种LC主导和RC主导互连的w元素SPICE仿真结果,比较了模型的直通和串扰传递函数,验证了模型的准确性。我们的分析还根据经验验证了近似误差是否受有效性参数的限制。此外,与以前的内置SPICE模拟器的数值计算方法相比,计算时间缩短了大约157倍。利用提出的通道模型,设计人员可以轻松理解和分析各种差分互连的行为,而无需进行复杂的分析。

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