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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Enabling Lower-Power Charge-Domain Nonvolatile In-Memory Computing With Ferroelectric FETs
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Enabling Lower-Power Charge-Domain Nonvolatile In-Memory Computing With Ferroelectric FETs

机译:使低功率电荷域非易失性与铁电FET一起计算

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摘要

Compute-in-memory (CiM) is a promising approach to alleviating the memory wall problem for domain-specific applications. Compared to current-domain CiM solutions, charge-domain CiM shows the opportunity for higher energy efficiency and resistance to device variations. However, the area occupation and standby leakage power of existing SRAM-based charge-domain CiM (CD-CiM) are high. This brief proposes the first concept and analysis of CD-CiM using nonvolatile memory (NVM) devices. The design implementation and performance evaluation are based on a proposed 2-transistor-1-capacitor (2T1C) CiM macro using ferroelectric field-effect-transistors (FeFETs), which is free from leakage power and much denser than the SRAM solution. With the supply voltage between 0.45V and 0.90V, operating frequency between 100MHz to 1.0GHz, binary neural network application simulations show over 47%, 60%, and 64% energy consumption reduction from existing SRAM-based CD-CiM, SRAM-based current-domain CiM, and RRAM-based current-domain CiM, respectively. For classifications in MNIST and CIFAR-10 data sets, the proposed FeFET-based CD-CiM achieves an accuracy over 95% and 80%, respectively.
机译:计算内存(CIM)是一种有希望的方法,可以减轻特定于域的应用程序的内存墙壁问题。与电流域CIM解决方案相比,电荷域CIM显示了更高能源效率和对设备变化的抵抗力的机会。然而,现有SRAM基电荷域CIM(CD-CIM)的区域占用和待机漏电功率高。本简要提出使用非易失性存储器(NVM)器件的CD-CIM的第一个概念和分析。设计实现和性能评估基于使用铁电场效应晶体管(FEFET)的所提出的2晶体管-1-电容器(2T1C)CIM宏,其没有比SRAM溶液更大的漏电和更密集。随着0.45V和0.90V之间的电源电压,在100MHz至1.0GHz之间的工作频率,二元神经网络应用模拟显示超过47%,60%和64%的现有SRAM的CD-CIM,基于SRAM的CD-CIM的能耗。当前域CIM和基于RRAM的电流域CIM。对于MNIST和CIFAR-10数据集的分类,所提出的FEFET基CD-CIM分别实现了95%和80%以上的精度。

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