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System, method, and computer readable medium for walking pads: fast power- supply pad-placement optimization

机译:用于步行垫的系统,方法和计算机可读介质:快速电源垫放置优化

摘要

A virtual force controlled collapse chip connection (C4) pad placement optimization frame-work for 2D power delivery grids is proposed. The present optimization framework regards power pads as mobile “positive charged particles” and current resources as a “negative charged back-ground.” The virtual electrostatic force is calculated from voltage gradients. This optimization framework optimizes pad locations by moving pads according to the virtual forces exerted on them by other pads and current sources in the system. Within this framework, three algorithms are proposed to meet various requirements of optimization quality and speed. These algorithms minimize resistive voltage drop (IR drop), the maximum current density, and power distribution network metal power dissipation at the same time.
机译:提出了一种虚拟力控制的塌陷芯片连接(C4)焊盘布局优化框架,用于2D输电网格。当前的优化框架将电源板视为移动的“正电荷粒子”,并将当前资源视为“负电荷背景”。虚拟静电力由电压梯度计算得出。该优化框架通过根据其他垫和系统中的电流源施加在垫上的虚拟力来移动垫,从而优化垫的位置。在此框架内,提出了三种算法来满足优化质量和速度的各种要求。这些算法可将电阻压降(IR压降),最大电流密度和配电网络金属功耗同时降至最低。

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