Science and Research Branch of Islamic Azad University, Tehran, Iran.
Nanoscale Res Lett. 2011 Sep 2;6(1):519. doi: 10.1186/1556-276X-6-519.
In this paper, two novel low-power and high-speed carbon nanotube full-adder cells in dynamic logic style are presented. Carbon nanotube field-effect transistors (CNFETs) are efficient in designing a high performance circuit. To design our full-adder cells, CNFETs with three different threshold voltages (low threshold, normal threshold, and high threshold) are used. First design generates SUM and COUT through separate transistors, and second design is a multi-output dynamic full adder. Proposed full adders are simulated using HSPICE based on CNFET model with 0.9 V supply voltages. Simulation result shows that the proposed designs consume less power and have low power-delay product compared to other CNFET-based full-adder cells.
本文提出了两种新颖的基于动态逻辑的低功耗高速碳纳米管全加器单元。碳纳米管场效应晶体管(CNFET)在设计高性能电路方面非常有效。为了设计我们的全加器单元,使用了具有三个不同阈值电压(低阈值、正常阈值和高阈值)的 CNFET。第一个设计通过单独的晶体管生成 SUM 和 COUT,第二个设计是一种多输出动态全加器。基于 CNFET 模型的 HSPICE 对提出的全加器进行了仿真,工作电压为 0.9V。仿真结果表明,与其他基于 CNFET 的全加器单元相比,所提出的设计消耗的功率更少,功率延迟积更低。