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Adaptive wire adjustment for bounded skew Clock Distribution Network

机译:有界斜时钟分配网络的自适应线路调整

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In this paper, we suggest an adaptive approach for the Clock Distribution Network (CDN) to cope with a modification in the VLSI system design. The CDN's wires are adjusted iteratively to reduce the skew that is resulting from a minor modification in the clock pins of a complex VLSI system. Such skew can be remedied by selecting a Balancing Node (BN) and adjust its edges so that the skew gets smaller. The required edge adjustments are determined using the Elmore delay model. The performance of the algorithm is investigated using different random sets of clock pins. Also, the algorithm is tested by altering some clock pins in a zero skew CDN. For small modifications in a large number of nodes in the CDN, our algorithm can achieve zero skew with less iterations than linear order algorithms.
机译:在本文中,我们提出了一种适用于时钟分配网络(CDN)的自适应方法,以应对VLSI系统设计中的修改。 CDN的导线经过反复调整,以减少由于对复杂VLSI系统的时钟引脚进行细微修改而导致的偏斜。可以通过选择“平衡节点”(BN)并调整其边缘以使偏斜变得更小来纠正这种偏斜。使用Elmore延迟模型确定所需的边缘调整。使用不同的随机时钟引脚集来研究算法的性能。同样,通过更改零偏斜CDN中的某些时钟引脚来测试该算法。对于CDN中大量节点的较小修改,与线性顺序算法相比,我们的算法可实现零偏斜且迭代次数更少。

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