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Practical repeater insertion for low power: what repeater library do we need?

机译:实用的中继器插入以降低功耗:我们需要什么中继器库?

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This paper investigates the problem of repeater insertion for low power under a given timing budget. A novel repeater insertion algorithm is proposed to compute the optimal repeater number and width in the discrete solution space, as defined by a given repeater library. Using the proposed algorithm, two practical and highly important questions are addressed. Given a certain tolerance to the degradation of repeater power dissipation: 1) how coarse could the repeater size granularity be? 2) What range should repeater widths be in? The experimental results provide valuable insights into repeater library design. Specifically, the investigation reveals that coarse repeater size granularities can be used to reduce the library size by more than 87% with merely a 4% power degradation. Moreover, for two-pin interconnects with various wire lengths and timing targets, the range of optimal repeater sizes for low power is limited, indicating that a low-cost small-size repeater library, if well designed, is adequate to provide high-quality repeater insertion solutions. The proposed scheme can be used in early design stages to generate a compact repeater library that is passed on to other repeater insertion algorithms.
机译:本文研究了在给定时序预算下低功率中继器的插入问题。提出了一种新颖的中继器插入算法,以计算给定中继器库定义的离散解决方案空间中的最佳中继器数量和宽度。使用提出的算法,解决了两个实用且高度重要的问题。给定中继器功率衰减的一定容忍度:1)中继器大小粒度的粗细如何? 2)中继器的宽度应该在什么范围?实验结果为中继器库设计提供了宝贵的见解。具体而言,研究表明,可以使用粗略的中继器大小粒度将库大小减少87%以上,而功率衰减仅为4%。此外,对于具有不同线长和时序目标的两针互连,低功耗的最佳中继器尺寸范围有限,这表明低成本的小型中继器库(如果设计合理)足以提供高质量的中继器插入解决方案。所提出的方案可用于早期设计阶段,以生成紧凑的转发器库,该库可传递给其他转发器插入算法。

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