A New Molecular 5:3 Compressor Cell Based on Benzene Rings


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Abstract


Multiplication is one of the most commonly used arithmetic operations in microprocessors and signal processing. Compressors are used in performing efficient multiplication operations. In this paper, a new 5:3 compressor is designed through a hybrid architecture combined of Benzene rings and CNT transistors in which each P-type transistor is a benzene ring FET and each N-type transistor is a CNFET. The results, compared with a purely CNFET compressor cell, show reduction in power and energy consumption in this new design. Simulations are performed by HSPICE simulator in different supply voltages, frequencies and temperatures.
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Keywords


Molecular Electronics; Benzene Rings; Carbon Nanotube Field Effect Transistor (CNFET); Compressor

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References


J. Ellenbogen, J.Love, Architectures for molecular electronic computers: 1. Logic structures and an adder designed from molecular electronic diodes, Proceedings of the IEEE, vol. 88, n. 3, March 2000, pp. 386 – 426.

R. Nirlakalla, T.S. Rao, T.J. Prasad, Performance Evaluation of High Speed Compressors for High Speed Multipliers, Serbian Journal of Electrical Engineering, vol. 8, n. 3, November 2011, pp. 293-306.

A. Mouatsi, M. Marir - Benabbas , H. Baudrand, Effect of Subbands Energy in the CNTFET Characteristic’s for Different Nanotube Diameter, (2012) International Review of Physics (IREPHY), 6 (1), pp. 68-72.

M.R. Reshadinezhad, M.H. Moaiyeri, K. Navi, An Energy-Efficient full adder cell using CNFET Technology, IEICE Transactions on Electronics, vol. 95-C, n. 4, 2012, pp. 744-751

M.H. Moaiyeri, A. Doostaregan, K. Navi, Design of Energy-Efficient and Robust Ternary Circuits for Nanotechnology, IET Journals and Magazine, vol. 5 n. 4, July 2011, pp. 285-296.

J. Deng, H. Wong, A Compact SPICE Model for Carbon-Nanotube Field-Effect Transistors Including Nonidealities and Its Application-Part I: Model of the Intrinsic Channel Region, IEEE Transactions on Electron Devices, vol. 54 n. 12, Dec 2007, pp. 3186–3194.

J. Deng, H. Wong, A Compact SPICE Model for Carbone-Nanotube Field-Effect Transistors Including Nonidealities and Its Application Part II: Full Device Model and Circuit Performance Benchmarking, IEEE Transactions on Electron Devices, vol. 54 n. 12, Dec 2007, pp. 3195-3208

T. Tien, On Theory of Single-Molecule Transistor, Journal of Physics IOP, vol. 187 n. 1, 2009.

M. Ghasemi, M. Sam, M. Moaiyeri, F. Khosravi, K. Navi, A New SPICE Model for Organic Molecular Transistors and a Novel Combinational Architecture, IEICE Electronic Express, vol. 9 n. 10, 2012, pp. 926-931.

N. Hajizadeh, M.H. Moaiyeri, K. Navi, A New High Performance Resistor Based Molecular Full Adder Cell, International Review of Physics, Accepted.


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