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Fast and Disturb-Free Nonvolatile Flip-Flop Using Complementary Polarizer MTJ

机译:使用互补偏振器MTJ的快速无扰非易失触发器

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Nonvolatile flip-flop (NVFF) using spin-transfer torque magnetic tunnel junctions (STT-MTJs) has been proposed to enable line-grain power gating systems. However, the STT-MTJ-based NVFF (STT-NVFF) may not perform fast backup and disturb-free restore operations. We propose a new NVFF using complementary polarizer MTJ (CPMTJ) to alleviate these limitations. Our proposed NVFF exploits the CPMTJ structure for fast- and low-energy backup operation. The estimated backup delay is less than 10 ns in 7-nm node FinFET technology with CPMTJ size of 12 nm × 33 nm in a rectangular shape. Furthermore, during the restore operation, CPMTJ provides guaranteed disturb-free sensing, since the disturb torque from the two complementary pinned layers of CPMTJ cancels each other. The simulation results show 2 times improvement in the backup delay with higher restore-disturb margin compared with STT-NVFF.
机译:已经提出了使用自旋转移转矩磁隧道结(STT-MTJ)的非易失性触发器(NVFF),以实现线粒功率门控系统。但是,基于STT-MTJ的NVFF(STT-NVFF)可能不会执行快速备份和无干扰的还原操作。我们提出了一种使用互补偏振器MTJ(CPMTJ)的新NVFF,以减轻这些限制。我们提出的NVFF利用CPMTJ结构进行快速和低能耗的备份操作。在CPMTJ尺寸为12 nm×33 nm(矩形)的7 nm节点FinFET技术中,估计的备份延迟小于10 ns。此外,在恢复操作期间,由于来自CPMTJ的两个互补固定层的干扰扭矩相互抵消,因此CPMTJ提供了有保证的无干扰感测。仿真结果表明,与STT-NVFF相比,备份延迟提高了2倍,恢复干扰容限更高。

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