Design and analysis of energy-efficient compressors based on low-power XOR gates in carbon nanotube technology

IF 1 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Elmira Tavakkoli, Mahdi Aminian
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引用次数: 1

Abstract

Compressors are the fundamental components in multipliers to accumulate and reduce partial product stages in a parallel manner. This study presents several architectures for low-power 4-2 and 5-2 compressors, which are based on the proposed circuits of the full-swing and non-full-swing XOR gates in carbon nanotube field effect transistor (CNTFET) technology. The CNTFET technology has been chosen because of its unique electrical and mechanical features. The proposed circuits are investigated in terms of process, voltage and temperature variations, delay, power dissipation, energy, power-delay product (PDP) and transistor count. All the proposed and referenced designs are simulated using an HSPICE tool in a 32 nm CNTFET Stanford technology model. The results show that the proposed circuits have less PDP and power consumption than the previous work. The proposed compressors have the lowest PDP, achieving 5.8%–41.9% improvement.

Abstract Image

基于碳纳米管低功耗异或门的节能压缩机设计与分析
压缩机是乘数器中以并行方式累积和减少部分乘积级的基本部件。本研究提出了几种基于碳纳米管场效应晶体管(CNTFET)技术中全摆幅和非全摆幅异或门电路的低功耗4-2和5-2压缩机架构。选择CNTFET技术是因为其独特的电气和机械特性。从工艺、电压和温度变化、延迟、功耗、能量、功率延迟积(PDP)和晶体管数量等方面对所提出的电路进行了研究。所有提出的和参考的设计都使用HSPICE工具在32nm CNTFET斯坦福技术模型中进行了模拟。结果表明,该电路具有较低的PDP和功耗。所提出的压缩机PDP最低,改善5.8%-41.9%。
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来源期刊
Iet Circuits Devices & Systems
Iet Circuits Devices & Systems 工程技术-工程:电子与电气
CiteScore
3.80
自引率
7.70%
发文量
32
审稿时长
3 months
期刊介绍: IET Circuits, Devices & Systems covers the following topics: Circuit theory and design, circuit analysis and simulation, computer aided design Filters (analogue and switched capacitor) Circuit implementations, cells and architectures for integration including VLSI Testability, fault tolerant design, minimisation of circuits and CAD for VLSI Novel or improved electronic devices for both traditional and emerging technologies including nanoelectronics and MEMs Device and process characterisation, device parameter extraction schemes Mathematics of circuits and systems theory Test and measurement techniques involving electronic circuits, circuits for industrial applications, sensors and transducers
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