电磁兼容性(EMC)时钟树优化

Xuchu Hu, Matthew R. Guthaus
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引用次数: 4

摘要

电子系统产生的电磁干扰(EMI)随着工作频率的增加和工艺技术的缩小而增加。时钟分配网络是造成片上电磁干扰的主要原因之一。本文讨论了时钟树设计中的电磁干扰问题。频谱分析表明,时钟信号的摆幅率是决定高频频谱含量分布的主要参数。这是第一个考虑时钟树合成中最大和最小缓冲摆率以减少EMI的工作。在本文中,我们提出了一种动态规划算法来优化时钟树,同时考虑了传统指标和电磁兼容性。实验结果表明,在不牺牲功率和偏度等传统指标的情况下,可以将摆幅控制在可行范围内,减少高频频谱含量。通过高效的优化和修剪方法,最大的基准可以在4分钟内完成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clock tree optimization for Electromagnetic Compatibility (EMC)
Electromagnetic Interference (EMI) generated by electronic systems is increasing with operating frequency and shrinking process technologies. The clock distribution network is one of the major causes of on-chip EMI. In this paper, we discuss the EMI problem in clock tree design. Spectrum analysis shows that slew rate of clock signal is the main parameter determining the high-frequency spectral content distribution. This is the first work to consider maximum and minimum buffer slew rates in clock tree synthesis to reduce EMI. In this paper, we propose a dynamic programming algorithm to optimize the clock tree considering both traditional metrics and Electromagnetic Compatibility (EMC). Our experimental results show that slew can be controlled in a feasible range and high-frequency spectrum contents can be reduced without sacrificing the traditional metrics such as power and skew. With the efficient optimization and pruning method, the biggest benchmark is able to complete in four minutes.
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