高性能设计中的噪声注入和传播

V. Zolotov, D. Blaauw, R. Panda, C. Oh
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引用次数: 4

摘要

信号完整性已成为高性能电路设计中的一个关键问题。网络上的噪声产生于两种方式,一种是通过前一阶段的噪声通过网络的驱动门传播,另一种是通过与邻近网络的耦合电容注入新的噪声。为了简化分析,提高分析效率,通常采用线性加入传播噪声和注入噪声的方法。在本文中,我们表明,由于驱动栅极的非线性行为,这种线性假设导致对噪声的严重低估,因此可能导致设计中许多未检测到的噪声故障。由于完整的非线性模拟对于基于大单元的设计来说太慢,我们提出了一种新的线性模型,可以准确地捕捉驱动栅极的非线性行为。我们提出了三种迭代方法来计算该线性模型的模型参数。结果表明,所提出的方法在几个工业设计的准确性。
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Noise injection and propagation in high performance designs
Signal integrity has become a critical issue in the design of high-performance circuits. Noise on a net arises both through propagation of noise from previous stages through the driver gate of the net and through injection of new noise through coupling capacitance with neighboring nets. Typically, propagated noise and injected noise are added linearly to simplify the analysis and increase its efficiency. In this paper, we show that this linear assumption results in a significant underestimation of the noise, due to the nonlinear behavior of the driver gate, and hence can lead to many undetected noise failures in the design. Since complete nonlinear simulation is too slow for large cell-based designs, we propose a new linear model that accurately captures the nonlinear behavior of the driver gate. We propose three iterative methods for computing the model parameters of this linear model. Results are presented to demonstrate the accuracy of the proposed approach on several industrial designs.
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