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Decoupling-Capacitor Planning and Sizing for Noise and Leakage Reduction

机译:去耦电容器的规划和尺寸调整,以减少噪声和泄漏

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摘要

Decoupling capacitors (decaps) are a popular means for reducing power-supply noise in integrated circuits. Since the decaps are usually inserted in the whitespace of the device layer, decap management during the floorplanning stage is desirable. However, a well-known existing work only allows the blocks to utilize the adjacent whitespace. In order to overcome this limit, we devise the effective-decap-distance model to analyze how functional blocks are affected by nonneighboring decaps. In addition, we propose a generalized network-flow-based algorithm to allocate the whitespace to the blocks and determine the oxide thicknesses for the decaps to be implemented in the whitespace. Experimental results show that our decap allocation and sizing methods can significantly reduce decap budget and leakage power with a small increase in area and wire length when integrated into 2-D and 3-D floorplanners.
机译:去耦电容器(decaps)是减少集成电路中电源噪声的一种常用方法。由于通常将摘帽插入设备层的空白区域,因此在布局规划阶段需要进行摘帽管理。然而,众所周知的现有工作仅允许块利用相邻的空白。为了克服此限制,我们设计了有效的decap距离模型来分析功能块如何受到非相邻decap的影响。另外,我们提出了一种基于网络流的通用算法,将空白分配给块,并确定要在空白空间中实现的开端的氧化层厚度。实验结果表明,当集成到2-D和3-D平面规划器中时,我们的封头分配和尺寸确定方法可以显着减少封头预算和泄漏功率,并且面积和导线长度的增加很少。

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