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Non-volatile Logic and Memory based on Reconfigurable Ferroelectric Transistors

机译:基于可重构铁电晶体管的非易失性逻辑和存储器

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This paper presents an overview of the operation and applications of reconfigurable ferroelectric transistors (R-FEFETs) which offer unique logic-memory coupling in the device characteristics leading to novel circuit design possibilities. R-FEFETs feature dynamic reconfiguration between (a) volatile mode for logic operations and (b) nonvolatile mode for memory operation. An R-FEFET consists of two FE stacks which interact with each other and a common underlying transistor, to enable run-time tuning of hysteresis and the aforementioned reconfigurability. We discuss how such novel features of R-FEFETs can be utilized to design energy-efficient non-volatile memory (NVM) and non-volatile flip-flop (NVFF) designs. For NVMs, read-write conflicts can be effectively mitigated. In particular, R-FEFETs based 3T NVM exhibit significant advantage over existing standard FEFET based NVM design with 55% lower write power and 37-72% lower read power at iso-access time. R-FEFET based NVFFs offer the design options of an auto-backup (RNVFF-1) without the need of any additional circuitry / back-up control signals, or on-demand backup (RNVFF-2) with lower normal operational energy over RNVFF-1. Compared to an FEFET based NVFF, RNVFF-1 achieves 47% lower check-pointing energy, with a penalty of 6% in operation energy. RNVFF-2 shows 30% lower check-pointing energy with similar operation energy. At the system level, the RNVFFs achieve 25-33% register-level energy savings, in a state-of-the-art intermittently powered platform.
机译:本文概述了可重构铁电晶体管(R-FEFET)的操作和应用,这些器件在器件特性方面提供了独特的逻辑-存储器耦合,从而带来了新颖的电路设计可能性。 R-FEFET具有(a)用于逻辑操作的易失性模式与(b)用于存储器操作的非易失性模式之间的动态重新配置。 R-FEFET包括两个相互交互的FE堆栈和一个公共的基础晶体管,以实现运行时磁滞调整和上述可重构性。我们讨论了如何利用R-FEFET的这种新颖功能来设计节能的非易失性存储器(NVM)和非易失性触发器(NVFF)设计。对于NVM,可以有效缓解读写冲突。特别是,基于R-FEFET的3T NVM与现有的基于标准FEFET的NVM设计相比,具有显着的优势,在等存取时,写入功率降低了55%,读取功率降低了37-72%。基于R-FEFET的NVFF提供了自动备份(RNVFF-1)的设计选项,而无需任何其他电路/备份控制信号或按需备份(RNVFF-2),其正常工作能量比RNVFF更低-1。与基于FEFET的NVFF相比,RNVFF-1的检查点能量降低了47%,而操作能量却损失了6%。 RNVFF-2与类似的操作能量相比,检查点能量降低了30%。在系统级别,RNVFF在最新的间歇供电平台中实现了25-33%的寄存器级节能。

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