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On-chip monitoring and compensation scheme with fine-grain body biasing for robust and energy-efficient operations

机译:具有细粒度偏置功能的片上监控和补偿方案,可实现稳健而节能的操作

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Aggressive technology scaling and strong demand for lowering supply voltage impose a serious challenge in achieving robust and energy-efficient circuit operation. This paper first overviews on device-circuit interactions to enable cross-layer resiliency, and energy optimization. We show that the ability to monitor and control device and circuit characteristics not only increase energy-efficiency by more than 20% but also relax the severe design constraints, which were required because of the uncertainties of variability. We then demonstrate two proof-of-concept circuits in a 65 nm process to show variability resiliency and energy optimization with local body biasing.
机译:积极的技术扩展和降低电源电压的强烈需求对实现鲁棒且节能的电路操作提出了严峻的挑战。本文首先概述了实现跨层弹性的设备-电路交互以及能量优化。我们表明,监视和控制设备及电路特性的能力不仅使能效提高了20%以上,而且还放宽了由于可变性的不确定性而需要的严格设计约束。然后,我们在65 nm工艺中演示了两个概念验证电路,以显示可变性弹性和局部人体偏置的能量优化。

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