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Comparison of adaptive body bias (ABB) and adaptive supply voltage (ASV) for improving delay and leakage under the presence of process variation

机译:自适应体偏置(ABB)和自适应电源电压(ASV)的比较来提高过程变化的存在下延迟和泄漏

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摘要

Process variations as a percentage of nominal delay and power consumption are becoming more and more severe with continuing scaling of VLSI technology. The worsening process variation causes increased variability in performance, power, and reliability of VLSI circuits. Thus, performance and power consumption targets obtained during the design phase of VLSI circuits may significantly deviate from that of actual silicon resulting in significant yield losses. Adaptive body bias (ABB) has been shown to be an effective method of postsilicon tuning to reduce variability under the presence of process variation. Post silicon tuning can also be accomplished by using adaptive supply voltage (ASV). This paper compares the effectiveness of ABB and ASV in reducing variability and improving performance and power, and thus, yield.
机译:作为标称延迟和功耗百分比的过程变化与VLSI技术的持续扩展越来越严重。恶化的过程变化导致VLSI电路的性能,功率和可靠性增加的增加。因此,在VLSI电路的设计阶段期间获得的性能和功耗目标可以显着地偏离实际硅的差异,从而产生显着的产量损失。自适应体偏压(ABB)已被证明是PostiLicon调谐的有效方法,以降低过程变化的存在下的变化。硅调谐后也可以通过使用自适应电源电压(ASV)来完成。本文比较了ABB和ASV在降低可变性和提高性能和功率方面的有效性,从而产生。

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