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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Practical Routability-Driven Design Flow for Multilayer Power Networks Using Aluminum-Pad Layer
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Practical Routability-Driven Design Flow for Multilayer Power Networks Using Aluminum-Pad Layer

机译:使用铝箔层的多层电网实用的可布线性驱动设计流程

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摘要

This paper presents a novel framework to efficiently and effectively build a robust but routing-friendly multilayer power network under the IR-drop and electro-migration (EM) constraints. The proposed framework first considers the impact of the aluminum-pad layer and provides a conservative analytical model to determine the total metal width for each power layer that can meet the IR-drop and EM constraints. Then the proposed framework can identify an optimal irredundant stripe width by considering the number of occupied routing tracks and the potential routing detour caused by the power stripes without the information of cell placement. Next, after the cell placement is done, the proposed framework applies a dynamic-programming approach to further reduce the potential routing detour by relocating the power stripes. A series of experiments are conducted based on a 40 nm, 1.1 V, and 900-MHz microprocessor to validate the effectiveness and efficiency of the proposed framework.
机译:本文提出了一个新颖的框架,可以有效地构建在IR下降和电迁移(EM)约束下强大而路由友好的多层电网。提出的框架首先考虑了铝垫层的影响,并提供了一个保守的分析模型来确定可以满足IR压降和EM约束的每个功率层的总金属宽度。然后,所提出的框架可以通过考虑所占用的布线轨迹的数量以及由功率条带引起的潜在的布线绕行而确定最佳的冗余条纹宽度,而无需电池放置信息。接下来,在完成单元放置后,所提出的框架将采用动态编程方法,通过重新布置电源条来进一步减少潜在的绕行路线。基于40 nm,1.1 V和900-MHz微处理器进行了一系列实验,以验证所提出框架的有效性和效率。

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