On dynamic delay and repeater insertion

H. Tenhunen, D. Pamunuwa
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引用次数: 4

Abstract

In deep sub-micron technologies, as the wires are placed ever closer and signal rise and fall times go into the sub-nano second region, increased crosstalk has implications on the data throughput and on signal integrity. Depending on the data correlation on the coupled lines, the delay can either decrease or increase. Here we show that in uniform coupled lines, the response for several important switching configurations has a dominant pole characteristic. This allows easy prediction for the average, worst-case and best-case delay of buffered lines. We show that the repeater numbering and sizing can be optimised to deal with crosstalk under different constraints to best match the application. Area and power issues are considered and all equations are checked against a dynamic circuit simulator (SPECTRE).
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关于动态延迟和中继器插入
在深亚微米技术中,随着导线放置得越来越近,信号上升和下降时间进入亚纳秒区域,增加的串扰对数据吞吐量和信号完整性有影响。根据耦合线上的数据相关性,延迟可以减小或增大。这里我们证明了在均匀耦合线中,几种重要开关配置的响应具有主导极特性。这样可以很容易地预测缓冲线路的平均、最坏情况和最佳情况延迟。我们表明,中继器的编号和尺寸可以优化,以处理不同约束下的串扰,以最佳地匹配应用。考虑了面积和功率问题,并根据动态电路模拟器(SPECTRE)检查了所有方程。
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