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Greedy Algorithm for the On-Chip Decoupling Capacitance Optimization to Satisfy the Voltage Drop Constraint

机译:片上去耦电容优化的满足电压降约束的贪婪算法

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With the progress of process technology in recent years, low voltage power supplies have become quite predominant. With this, the voltage margin has decreased and therefore the on-chip decoupling capacitance optimization that satisfies the voltage drop constraint becomes more important. In addition, the reduction of the on-chip decoupling capacitance area will reduce the chip area and, therefore, manufacturing costs. Hence, we propose an algorithm that satisfies the voltage drop constraint and at the same time, minimizes the total on-chip decoupling capacitance area. The proposed algorithm uses the idea of the network algorithm where the path which has the most influence on voltage drop is found. Voltage drop is improved by adding the on-chip capacitance to the node on the path. The proposed algorithm is efficient and effectively adds the on-chip capacitance to the greatest influence on the voltage drop. Experimental results demonstrate that, with the proposed algorithm, real size power/ground network could be optimized in just a few minutes which are quite practical. Compared with the conventional algorithm, we confirmed that the total on-chip decoupling capacitance area of the power/ground network was reducible by about 40 ~ 50%.
机译:近年来,随着制程技术的进步,低压电源已成为主流。由此,电压裕度减小,因此满足电压降约束的片上去耦电容优化变得更加重要。另外,减小片上去耦电容面积将减小芯片面积,并因此减小制造成本。因此,我们提出了一种既满足压降约束又同时使总的片上去耦电容面积最小的算法。所提出的算法使用网络算法的思想,其中发现了对电压降影响最大的路径。通过将片上电容添加到路径上的节点,可以改善电压降。所提出的算法是有效的,并且有效地增加了片上电容,从而对电压降的影响最大。实验结果表明,利用所提出的算法,可以在短短几分钟内对实际规模的电源/地面网络进行优化,这非常实用。与传统算法相比,我们确认电源/接地网络的总片上去耦电容面积可减少约40〜50%。

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