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A NOVEL DOMINO LOGIC DESIGN FOR EMBEDDED APPLICATION
Dr.K.Sujatha

Published in: International Journal of Current Engineering And Scientific Research ( IJCESR)
Volume- 4, Issue-10, pp.37-43, Oct 2017
DPI :-> 16.10046.IJCESR.2017.V4I10.3743.2082



Abstract
The energy efficient designs have gained more recent attention and for highly employed functional units, especially for the adders. The energy consumption of an adder depends on the circuit sizing, the addition algorithm, the recurrence structure and the wiring complexity. Weinberger and Ling are the two most commonly used binary addition algorithms that are used in adders. The addition algorithms have been examined on Kogge-Stone structure and have been observed to save energy by the proper selection of addition algorithms in 16-bit adders. The design of Kogge-stone adder has been carried out by using TANNER EDA tool. The efficiency of the adder design can be improved by prefix selection, algorithm, computational sum and logic depth. When Compared to Weinberger algorithm, the number of gates used is less in the proposed ling recurrence algorithm.

Key-Words / Index Term
Arithmetic and logic structures, computer arithmetic, energy-efficient design, high-speed arithmetic, DSP architecture, Microprocessor architecture.

How to cite this article
Dr.K.Sujatha , “A NOVEL DOMINO LOGIC DESIGN FOR EMBEDDED APPLICATION”, International Journal of Current Engineering And Scientific Research ( IJCESR), 4, Issue-10, pp.37-43, Oct 2017. DPI:16.10046.IJCESR.V4.I10.2082