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A novel and efficient method for power pad placement optimization

机译:一种新颖而有效的功率垫放置优化方法

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In this paper, we propose a novel and efficient iterative method for pad placement optimization of power grid with flip chip technology. Power grid with optimized pad placement has less IR-drop values. We develop a new method to calculate new locations of all pads. Placing pads at the new locations reduces local IR-drop values. In order to reduce global IR-drop values, we develop a graph-based strategy to decide which pads are moved to the new locations. After each movement of the pads, a static IR-drop analysis is performed. We develop multigrid accelerated modified Simulated Annealing method (MG_SA) and compare it with the proposed method on a set of test cases. Experimental results show that the proposed method outperforms MG_SA with similar or less IR-drop values and much less runtime.
机译:在本文中,我们提出了一种新颖,有效的迭代方法,用于利用倒装芯片技术优化电网焊盘的位置。优化了焊盘位置的电网的IR降值较小。我们开发了一种新方法来计算所有打击垫的新位置。将焊盘放置在新位置可减少局部IR下降值。为了减少全局IR下降值,我们开发了一种基于图形的策略来决定将哪些打击垫移至新位置。每次移动垫片后,都会执行静态IR下降分析。我们开发了多网格加速的改进的模拟退火方法(MG_SA),并将其与所提出的方法在一组测试用例上进行了比较。实验结果表明,该方法在相似或更少的IR-drop值和更少的运行时间方面优于MG_SA。

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