深亚微米全球互连中电流模式信号的延迟和功率模型

R. Bashirullah, Wentai Liu, R. Cavin
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引用次数: 31

摘要

本文提出了基于有效集总元件电阻和电容近似的分布式RC线路延迟和功耗的封闭表达式。提出了一种新的阶跃输入激励下的时滞闭合解,在较宽的参数范围内,其精度在5%以内。该解决方案的有用之处在于,电阻性和容性负载终止都精确建模,以便在电流模式信号中使用。本文提出了一种新的电流模式信号的功耗模型,以理解电流和电压传感之间的设计权衡。基于这些公式,比较了电压模式中继器插入技术和电流模式信号在长全局深亚微米互连中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delay and power model for current-mode signaling in deep submicron global interconnects
In this paper, closed-form expressions of delay and power dissipation based on the effective lumped element resistance and capacitance approximation of distributed RC lines are presented. A new closed-form solution of delay under step input excitation is developed, exhibiting an accuracy that is within 5% for a wide range of parameters. The usefulness of this solution is that both resistive and capacitive load termination is accurately modeled for use in current mode signaling. A new power dissipation model for current-mode signaling is developed to understand the design tradeoffs between current and voltage sensing. Based on these formulations, a comparison between voltage-mode repeater insertion technique and current-mode signaling over long global deep submicron interconnects is presented.
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