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The Elmore Delay as a Bound for RC Trees with Generalized Input Signals

机译:Elmore延迟作为具有广义输入信号的RC树的界

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The Elmore delay is an extremely popular delay metric, particularly for RC tree analysis. The widespread usage of this metric is mainly attributable to it being the most accurate delay measure that is a simple analytical function of the circuit parameters. The only drawbacks to this delay metric are the uncertainty as to whether it is an optimistic or a pessimistic estimate, and the restriction to step response delay estimation. In this paper, we prove that the Elmore delay is an absolute upper bound on the 50% delay of an RC tree response. Moreover, we prove that this bound holds for input signals other than steps, and that the actual delay asymptotically approaches the Elmore delay as the input signal rise time increases. A lower bound on the delay is also developed using the Elmore delay and the second moment of the impulse response. The utility of this bound is for understanding the accuracy and the limitations of the Elmore delay metric as we use it for design automation.
机译:Elmore延迟是一种极其流行的延迟度量,特别是对于RC树分析。这种度量的广泛使用主要是由于电路参数的简单分析功能的最准确的延迟测量。该延迟度量的唯一缺点是对其是否是乐观或悲观估计的不确定性,以及对步骤响应延迟估计的限制。在本文中,我们证明了Elmore延迟是RC树响应的50%延迟的绝对上限。此外,我们证明了这一绑定用于除步之外的输入信号,并且实际延迟渐近地接近Elmore延迟,因为输入信号上升时间增加。使用Elmore延迟和脉冲响应的第二次,也开发了延迟的下限。当我们使用它进行设计自动化时,这一界限的效用是为了了解Elmore延迟度量的准确性和局限性。

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