首页> 外文期刊>Journal of circuits, systems and computers >TRANSIENT RESPONSE OF A DISTRIBUTED RLC INTERCONNECT BASED ON DIRECT POLE EXTRACTION
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TRANSIENT RESPONSE OF A DISTRIBUTED RLC INTERCONNECT BASED ON DIRECT POLE EXTRACTION

机译:基于直接极点提取的分布式RLC互连的瞬态响应

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摘要

With higher operating frequencies, transmission lines are required to model global on-chip interconnects. In this paper, an accurate and efficient solution for the transient response at the far end of a transmission line based on a direct pole extraction of the system is proposed. Closed form expressions of the poles are developed for two special interconnect systems: an RC interconnect and an RLC interconnect with zero driver resistance. By performing a system conversion, the poles of an interconnect system with general circuit parameters are solved. The Newton-Raphson method is used to further improve the accuracy of the poles. Based on these poles, closed form expressions for the step and ramp response are determined. Higher accuracy can be obtained with additional pairs of poles. The computational complexity of the model is proportional to the number of pole pairs. With two pairs of poles, the average error of the 50% delay is 1% as compared with Spectre simulations. With ten pairs of poles, the average error of the 10%-to-90% rise time and the overshoots is 2% and 1.9%, respectively. Frequency dependent effects are also successfully included in the proposed method and excellent match is observed between the proposed model and Spectre simulations.
机译:在较高的工作频率下,需要使用传输线来建模全局片上互连。本文提出了一种基于系统直接极点提取的输电线路远端瞬态响应的精确有效解决方案。针对两个特殊的互连系统开发了极点的闭合形式:RC互连和具有零驱动器电阻的RLC互连。通过执行系统转换,可以解决具有通用电路参数的互连系统的极点。牛顿-拉夫森法用于进一步提高极点的精度。基于这些极点,确定阶跃和斜坡响应的闭合形式表达式。使用额外的极对可以获得更高的精度。该模型的计算复杂度与极对数成正比。对于两对极点,与Spectre仿真相比,50%延迟的平均误差为1%。对于十对极,上升时间从10%到90%的平均误差和过冲分别为2%和1.9%。频率相关的影响也成功地包含在所提出的方法中,并且在所提出的模型与Spectre仿真之间观察到了极好的匹配。

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