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Nonvolatile flip-flop based on pseudo-spin-transistor architecture and its nonvolatile power-gating applications for low-power CMOS logic

机译:基于伪自旋晶体管架构的非易失性触发器及其在低功耗CMOS逻辑中的非易失性门控应用

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摘要

We computationally analyzed performance and power-gating (PG) ability of a new nonvolatile delay flip-flop (NV-DFF) based on pseudo-spin-MOSFET (PS-MOSFET) architecture using spin-transfer-torque magnetic tunnel junctions (STT-MTJs). The high-performance energy-efficient PG operations of the NV-DFF can be achieved owing to its cell structure employing PS-MOSFETs that can electrically separate the STT-MTJs from the ordinary DFF part of the NV-DFF. This separation also makes it possible that the break-even time (BET) of the NV-DFF is designed by the size of the PS-MOSFETs without performance degradation of the normal DFF operations. The effect of the area occupation ratio of the NV-DFFs to a CMOS logic system on the BET was also analyzed. Although the optimized BET was varied depending on the area occupation ratio, energy-efficient fine-grained PG with a BET of several sub-microseconds was revealed to be achieved. We also proposed microprocessors and system-on-chip (SoC) devices using nonvolatile hierarchical-memory systems wherein NV-DFF and nonvolatile static random access memory (NV-SRAM) circuits are used as fundamental building blocks.
机译:我们使用自旋转移转矩磁隧道结(STT-),对基于伪自旋MOSFET(PS-MOSFET)架构的新型非易失性延迟触发器(NV-DFF)的性能和功率门控(PG)能力进行了计算分析MTJs)。由于NV-DFF的单元结构采用PS-MOSFET,可实现NV-DFF的高性能节能PG操作,该PS-MOSFET可将STT-MTJ与NV-DFF的普通DFF部分电隔离。这种分离还可能使NV-DFF的收支平衡时间(BET)由PS-MOSFET的尺寸来设计,而不会降低正常DFF操作的性能。还分析了NV-DFF与CMOS逻辑系统的面积占有率对BET的影响。尽管优化的BET随面积占用率的不同而变化,但仍显示出具有几亚微秒BET的高能效细粒PG。我们还提出了使用非易失性分层内存系统的微处理器和片上系统(SoC)设备,其中NV-DFF和非易失性静态随机存取存储器(NV-SRAM)电路用作基本构建块。

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