DocumentCode :
3780390
Title :
Adder circuit design using advanced quantum dot cellular automata (AQCA)
Author :
Rashmi Chawla;Prashant Kumar;Priya Yadav
Author_Institution :
Department of Electronics and Communication, YMCAUST, Faridabad, India
fYear :
2015
Firstpage :
65
Lastpage :
69
Abstract :
Recent experiments in the field of VLSI designing and Nanotechnology have demonstrated a working cell suitable for implementing the Quantum-dot Cellular Automata (QCA). QCA is a transistor less computational model which is expected to provide high density nanotechnology implementations of various CMOS circuits. QCA has been constrained by the problem of meta-stable states. QCA adder with comparatively less number of cells and area has been proposed in this paper. This paper also demonstrates a reversible logic synthesis for one bit adder which gives a superior solution for side channel attack based on power analysis in security applications. The new proposed hybrid method reduces cell counts and area and uses conventional form of QCA cells. QCA implementation provides efficient design methodology for faster speed, smaller size and low power consumption when it compared to technology imposed by transistors. QCA provides ability to quickly layout a QCA design by providing an extensive set of CAD tools.
Keywords :
"Adders","Logic gates","Inverters","Clocks","Transistors","CMOS integrated circuits","Security"
Publisher :
ieee
Conference_Titel :
Recent Advances in Electronics & Computer Engineering (RAECE), 2015 National Conference on
Type :
conf
DOI :
10.1109/RAECE.2015.7510227
Filename :
7510227
Link To Document :
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