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Analytical Solutions for Distributed Interconnect Models—Part II: Arbitrary Input Response and Multicoupled Lines

机译:分布式互连模型的解析解决方案-第二部分:任意输入响应和多耦合线路

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In this paper, a new method is presented to calculate the exact analytical solution of distributed , , and interconnects with a random input at an arbitrary point through the line. The proposed method, based on a modified Duhamel theorem, is used to calculate the time-domain transient response of the initially conditioned interconnects. This method is applied to a line driven by ramp and exponential inputs. The new analytical solutions are expressed as an infinite summation of sinusoidal terms. However, a negligible worst case error of <1% is observed for the expressions compared with HSPICE simulations for Fourier series with tens of terms. In addition, from these results a new model for transient response of a line considering the driver output resistance and capacitance is presented. Good accuracy is observed between the model and HSPICE simulations for various distributed interconnects and drivers. Furthermore, the developed solution is extended to include signal transient and crosstalk noise in multicoupled inductive-effect-prominent lines. In addition, arbitrary switching patterns for identical and nonidentical lines are investigated employing the new method and evaluated with HSPICE simulations.
机译:在本文中,提出了一种新的方法来计算分布的精确解析解,并通过线的任意点与随机输入互连。所提出的方法基于改进的Duhamel定理,用于计算初始条件互连的时域瞬态响应。该方法适用于由斜坡和指数输入驱动的线路。新的解析解表示为正弦项的无限求和。但是,与具有数十项的傅里叶级数的HSPICE仿真相比,对于表达式而言,观察到的最坏情况误差小于1%。此外,根据这些结果,提出了一种考虑驱动器输出电阻和电容的线路瞬态响应的新模型。对于各种分布式互连和驱动程序,模型与HSPICE仿真之间观察到良好的准确性。此外,已开发的解决方案已扩展到包括多耦合电感效应突出线路中的信号瞬变和串扰噪声。此外,使用新方法研究了相同和不同线路的任意开关模式,并通过HSPICE仿真进行了评估。

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