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Design and Performance Comparison of CNTFET-Based Binary and Ternary Logic Inverter and Decoder With 32 nm CMOS Technology

机译:基于CNTFET的二元和三元逻辑逆变器和用32nm CMOS技术的解码器的设计与性能比较

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This paper attempts to compare ternary and binary logic gate design using CMOS and carbon nanotube (CNT)-FETs technology. Ternary logic is an effective approach over the default binary logic design technique because it allows to define one more voltage level which is VDD/2 and it also allows a circuit to be simple in design and energy efficient due to its property of reduction in circuit overhead such as interconnects and chip area. A CMOS and CNTFET-based ternary logic gates and arithmetic circuit design has been proposed to implement and compare binary and ternary logic design based on CMOS and CNTFET. The main objective is to compare the CMOS and CNTFET results and verify the advantages of CNTFET technology. The proposed CNTFET technique combined with ternary logic provides an usable performance, improved speed and reduces propagation delay characteristics in circuit such as inverter and decoder. Simulation results of proposed designs using H-SPICE are observed and shown that the proposed ternary logic gates consume significant less delay than the CMOS gates implementations. In realistic digital application, the proposed design of ternary logic compared with binary logic results in over 95% reductions in terms of the consumption of propagation delay.
机译:本文试图使用CMOS和碳纳米管(CNT)-FET技术进行比较三元和二进制逻辑门设计。三元逻辑是默认二进制逻辑设计技术的有效方法,因为它允许它定义一个更高的电压电平,该电压电平为VDD / 2,它还允许电路由于其电路开销的降低性而在设计和节能方面简单如互连和芯片区域。已经提出了基于CMOS和CNTFET的三元逻辑门和算术电路设计,以基于CMOS和CNTFET实现和比较二进制和三元逻辑设计。主要目标是比较CMOS和CNTFET结果并验证CNTFET技术的优势。所提出的CNTFET技术与三元逻辑组合提供了可用性,速度提高,减少了逆变器和解码器等电路中的传播延迟特性。观察到使用H-香料的建议设计的仿真结果,并示出了所提出的三元逻辑门比CMOS门实现消耗显着较少的延迟。在现实的数字应用中,与二进制逻辑相比的三元逻辑的建议设计导致传播延迟消耗的减少超过95%。

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