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CMOL FPGA: a reconfigurable architecture for hybrid digital circuits with two-terminal nanodevices

机译:CMOL FPGA:具有两端纳米设备的混合数字电路的可重配置架构

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This paper describes a digital logic architecture for 'CMOL' hybrid circuits which combine a semiconductor-transistor (CMOS) stack and two levels of parallel nanowires, with molecular-scale nanodevices formed between the nanowires at every crosspoint. This cell-based, field-programmable gate array (FPGA)-like architecture is based on a uniform, reconfigurable CMOL fabric, with four-transistor CMOS cells and two-terminal nanodevices ('latching switches'). The switches play two roles: they provide diode-like I-V curves for logic circuit operation, and allow circuit mapping on CMOL fabric and its reconfiguration around defective nanodevices. Monte Carlo simulations of two simple circuits (a 32-bit integer adder and a 64-bit full crossbar switch) have shown that the reconfiguration allows one to increase the circuit yield above 99 percent at the fraction of bad nanodevices above 20 percent. Estimates have shown that at the same time the circuits may have extremely high density (approximately 500 times higher than that of the usual CMOS FPGAs with the same design rules), while operating at higher speed at acceptable power consumption.
机译:本文介绍了用于“ CMOL”混合电路的数字逻辑架构,该电路将半导体晶体管(CMOS)堆栈和两层平行的纳米线结合在一起,并在每个交叉点处在纳米线之间形成分子级纳米器件。这种基于单元的,类似于现场可编程门阵列(FPGA)的架构基于统一的,可重新配置的CMOL架构,具有四晶体管CMOS单元和两个端子的纳米器件(“闩锁开关”)。开关起着两个作用:它们为逻辑电路操作提供了类似二极管的I-V曲线,并允许在CMOL架构上进行电路映射以及围绕有缺陷的纳米器件进行重新配置。蒙特卡罗对两个简单电路(一个32位整数加法器和一个64位全交叉开关)的仿真显示,通过重新配置,可以在不良纳米器件的比例超过20%的情况下将电路产率提高到99%以上。估计表明,与此同时,这些电路可能具有极高的密度(比具有相同设计规则的普通CMOS FPGA的密度高约500倍),同时可以在可接受的功耗下以更高的速度工作。

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