DocumentCode :
1529192
Title :
Low Complexity Design of Ripple Carry and Brent–Kung Adders in QCA
Author :
Pudi, Vikramkumar ; Sridharan, K.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol. Madras, Chennai, India
Volume :
11
Issue :
1
fYear :
2012
Firstpage :
105
Lastpage :
119
Abstract :
The design of adders on quantum dot cellular automata (QCA) has been of recent interest. While few designs exist, investigations on reduction of QCA primitives (majority gates and inverters) for various adders are limited. In this paper, we present a number of new results on majority logic. We use these results to present efficient QCA designs for the ripple carry adder (RCA) and various prefix adders. We derive bounds on the number of majority gates for -bit RCA and -bit Brent-Kung, Kogge-Stone, Ladner-Fischer, and Han-Carlson adders. We further show that the Brent-Kung adder has lower delay than the best existing adder designs as well as other prefix adders. In addition, signal integrity and robustness studies show that the proposed Brent-Kung adder is fairly well-suited to changes in time-related parameters as well as temperature. Detailed simulations using QCADesigner are presented.
Keywords :
adders; cellular automata; logic design; quantum dots; Brent-Kung adders; low complexity design; majority gates; majority logic; prefix adders; quantum dot cellular automata; ripple carry adder; Adders; Clocks; Delay; Equations; Inverters; Logic gates; Microprocessors; Area; Brent–Kung adder; Han–Carlson adder; Kogge–Stone adder; Ladner–Fischer adder; cell count; inverters; majority gates; quantum-dot cellular automata; ripple carry adder;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2011.2158006
Filename :
5778988
Link To Document :
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