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A Novel Low Area Overhead Direct Adaptive Body Bias (D-ABB) Circuit for Die-to-Die and Within-Die Variations Compensation

机译:一种新颖的低面积架空直接自适应人体偏置(D-ABB)电路,用于管芯和管芯内变化补偿

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摘要

A direct adaptive body bias (D-ABB) circuit is proposed in this paper. The D-ABB is used to compensate for die-to-die (D2D) and within-die (WID) parameter variations, and accordingly, improves the circuit yield regarding the speed, the dynamic power, and the leakage power. The D-ABB circuit consists of threshold voltage estimation circuits and direct control of the body bias performed by on-chip direct controller circuits. Circuit level simulation results of a circuit block case study, extracted from a real microprocessor critical path, referring to an industrial hardware-calibrated 65-nm CMOS technology transistor model, are presented. These results show that the proposed D-ABB reduces the standard deviations of the frequency, the dynamic power, and the leakage power by factors of 5.5$times $, 6.4$times $, and 4.5$times $, respectively, when both D2D and WID variations are considered. In addition, in the presented case study, initial total yields of 16.8% and 13% are improved to 100% and 91.4%, respectively. The proposed D-ABB circuit exhibits lower area overhead compared to the other ABB circuits reported in the literature.
机译:本文提出了一种直接自适应人体偏置(D-ABB)电路。 D-ABB用于补偿管芯到管芯(D2D)和管芯内(WID)参数的变化,并因此提高了有关速度,动态功率和泄漏功率的电路成品率。 D-ABB电路由阈值电压估计电路和由片上直接控制器电路执行的本体偏置直接控制组成。给出了从实际微处理器关键路径中提取的电路块案例研究的电路级仿真结果,并参考了工业硬件校准的65 nm CMOS技术晶体管模型。这些结果表明,当D2D和D2D均达到D2A和D2D时,建议的D-ABB分别将频率,动态功率和泄漏功率的标准偏差分别减小5.5 $乘以$,6.4 $乘以和4.5 $乘以。考虑WID变化。此外,在本案例研究中,初始总产量的16.8%和13%分别提高到100%和91.4%。与文献中报道的其他ABB电路相比,提出的D-ABB电路具有较低的面积开销。

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