采用径向采样的NVLatch设计的产量和能量权衡

Adam Issa, R. Kanj, A. Chehab, R. Joshi
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引用次数: 1

摘要

随着物联网设计的出现,非易失性锁存器越来越受欢迎。我们研究了基于STT-MTJ的非易失锁存器备份机制的产率能量权衡。对于屈服分析,我们依靠Hicks和Wheeling方法进行多锥径向采样,以达到罕见失效估计的目的。产率由平行到反平行的磁角跃迁来划分。为了适应较慢的单元,我们注意到备份机制的平均能量需求有所增加。模拟表明,对于不同数量的组件,平均能量需求增加10%-40%,以达到接近99%的理想良率要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Yield and energy tradeoffs of an NVLatch design using radial sampling
Nonvolatile latches are increasingly popular with the advent of IoT design. We study the yield energy tradeoff of the backup mechanism of an STT-MTJ based nonvolatile latch. For the yield analysis, we rely on Hicks and Wheeling methodology for multi-cone radial sampling for the purpose of rare fail estimation. Yield is shown to be delimited by the Parallel-to-AntiParallel magnetic angle transitions. To accommodate for the slower cells, we note an increase in the average energy requirements for the backup mechanism. Simulations indicate an increase of 10%–40% for the average energy requirements to achieve an ideal yield requirement close to 99% for different number of components.
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