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A universal method for designing low-power carbon nanotube FET-based multiple-valued logic circuits

机译:设计基于低功率碳纳米管FET的多值逻辑电路的通用方法

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This study presents new low-power multiple-valued logic (MVL) circuits for nanoelectronics. These carbon nanotube field effect transistor (FET) (CNTFET)-based MVL circuits are designed based on the unique characteristics of the CNTFET device such as the capability of setting the desired threshold voltages by adopting correct diameters for the nanotubes as well as the same carrier mobility for the P- and N-type devices. These characteristics make CNTFETs very suitable for designing high-performance multiple-Vth circuits. The proposed MVL circuits are designed based on the conventional CMOS architecture and by utilising inherently binary gates. Moreover, each of the proposed CNTFET-based ternary circuits includes all the possible types of ternary logic, that is, negative, positive and standard, in one structure. The method proposed in this study is a universal technique for designing MVL logic circuits with any arbitrary number of logic levels, without static power dissipation. The results of the simulations, conducted using Synopsys HSPICE with 32 nm-CNTFET technology, demonstrate improvements in terms of power consumption, energy efficiency, robustness and specifically static power dissipation with respect to the other state-of-the-art ternary and quaternary circuits.
机译:这项研究提出了用于纳米电子的新型低功耗多值逻辑(MVL)电路。这些基于碳纳米管场效应晶体管(FET)(CNTFET)的MVL电路是基于CNTFET器件的独特特性设计的,例如通过采用正确的纳米管直径和相同的载体来设置所需的阈值电压的能力P型和N型设备的移动性。这些特性使CNTFET非常适合设计高性能的多Vth电路。所提出的MVL电路是基于常规CMOS架构并利用固有的二进制门设计的。此外,每个提出的基于CNTFET的三元电路在一种结构中包括所有可能的三元逻辑类型,即负,正和标准。这项研究中提出的方法是一种通用技术,用于设计具有任意数量逻辑电平的MVL逻辑电路,并且没有静态功耗。使用Synopsys HSPICE和32 nm-CNTFET技术进行的仿真结果表明,相对于其他最新的三元和四元电路,在功耗,能效,鲁棒性以及静态功耗等方面都有所改善。

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