Minimum Shield Insertion on Full-Chip RLC Crosstalk Budgeting Routing

Peng-Yang Hung, Ying-Shu Lou, Yih-Lang Li
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引用次数: 1

Abstract

This work presents a full-chip RLC crosstalk budgeting routing flow to generate a high-quality routing design under stringent crosstalk constraints. Based on the cost function addressing the sensitive nets in visited global cells for each net, global routing can lower routing congestion as well as coupling effect. Crosstalk-driven track routing minimizes capacitive coupling effects, and decreases inductive coupling effects by avoiding placing sensitive nets on adjacent tracks. To achieve inductive crosstalk budgeting optimization, the shield insertion problem can be solved with a minimum column covering algorithm, which is undertaken following track routing to process nets with an excess of inductive crosstalk. The proposed routing flow method can identify the required number of shields more accurately, and process more complex routing problems, than the linear programming (LP) methods. Results of this study demonstrate that the proposed approach can effectively and quickly lower inductive crosstalk by up to one-third.
全片RLC串扰预算路由的最小屏蔽插入
本文提出了一种全芯片RLC串扰预算路由流程,以在严格的串扰约束下生成高质量的路由设计。全局路由基于对每个网络访问的全局单元中敏感网络寻址的代价函数,可以降低路由拥塞和耦合效应。串扰驱动的轨道布线最大限度地减少了电容耦合效应,并通过避免在相邻轨道上放置敏感网来减少电感耦合效应。为了实现感应串扰预算优化,可以采用最小列覆盖算法解决屏蔽插入问题,该算法通过跟踪路由对有过量感应串扰的处理网络进行处理。与线性规划(LP)方法相比,所提出的路由流方法可以更准确地识别所需的屏蔽数,并能处理更复杂的路由问题。研究结果表明,该方法可以有效、快速地将感应串扰降低三分之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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