most citedA New Reversible TSG Gate and Its Application For Designing Efficient Adder Circuits

37 citations · 84 across the 10 of their papers we have counts for

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cs.AR20074 cited

Partial Reversible Gates(PRG) for Reversible BCD Arithmetic

Himanshu Thapliyal, Hamid R. Arabnia, Rajnish Bajpai +1

IEEE 754r is the ongoing revision to the IEEE 754 floating point standard and a major enhancement to the standard is the addition of decimal format. Furthermore, in the recent year…

cs.AR20072 cited

Combined Integer and Variable Precision (CIVP) Floating Point Multiplication Architecture for FPGAs

Himanshu Thapliyal, Hamid R. Arabnia, Rajnish Bajpai +1

In this paper, we propose an architecture/methodology for making FPGAs suitable for integer as well as variable precision floating point multiplication. The proposed work will of g…

cs.AR20065 cited

Reduced Area Low Power High Throughput BCD Adders for IEEE 754r Format

Himanshu Thapliyal, Hamid R. Arabnia, M. B Srinivas

IEEE 754r is the ongoing revision to the IEEE 754 floating point standard and a major enhancement to the standard is the addition of decimal format. Firstly, this paper proposes no…

cs.AR2006

Reversible Programmable Logic Array (RPLA) using Fredkin & Feynman Gates for Industrial Electronics and Applications

Himanshu Thapliyal, Hamid R. Arabnia

In recent years, reversible logic has emerged as a promising computing paradigm having application in low power CMOS, quantum computing, nanotechnology, and optical computing. The…

cs.AR200624 cited

VLSI Implementation of RSA Encryption System Using Ancient Indian Vedic Mathematics

Himanshu Thapliyal, M. B Srinivas

This paper proposes the hardware implementation of RSA encryption/decryption algorithm using the algorithms of Ancient Indian Vedic Mathematics that have been modified to improve p…

cs.AR20065 cited

Novel Reversible Multiplier Architecture Using Reversible TSG Gate

Himanshu Thapliyal, M. B Srinivas

In the recent years, reversible logic has emerged as a promising technology having its applications in low power CMOS, quantum computing, nanotechnology, and optical computing. The…