CV


Seyyed Mohammad Razavi

Seyyed Mohammad Razavi

Professor

Faculty: Electrical and Computer Engineering

Department: Electronic

Degree: Ph.D

Birth Year: 1350

CV
Seyyed Mohammad Razavi

Professor Seyyed Mohammad Razavi

Faculty: Electrical and Computer Engineering - Department: Electronic Degree: Ph.D | Birth Year: 1350 |

An efficient and reliable MRF-based methodology for designing low-power VLSI circuits

AuthorsSayyed Mohammad Razavi
JournalIntegration, the VLSI Journal
Page number77-88
Serial number73
Volume number3
IF0.703
Paper TypeFull Paper
Published At2020
Journal GradeISI
Journal TypeTypographic
Journal CountryIran, Islamic Republic Of
Journal IndexJCR،Scopus

Abstract

Noise-interference is one of the major concerns in low-power VLSI circuits. Due to power supply downscaling, these circuits have an extremely limited noise margin that is inadequate for dealing with intrinsic and extrinsic noise. The MRF-based design has been accepted as a highly effective method for designing noise-tolerant lowpower circuits. However, the MRF-based circuits suffer from a complex structure and the methods which tried to simplify the structure always sacrificed the noise immunity for hardware simplicity. In this paper, we propose a novel MRF-based method for designing efficient and reliable low-power VLSI circuits. For the first time, an innovative reliability boosting mechanism based on maximum conditional correct probability is incorporated into an efficient MRF-based structure which leads to highly reliable circuits with considerably low cost, delay, and power consumption. The proposed method demonstrates the best performance among all of the previously reported methods. Moreover, the Monte Carlo simulations confirm that the proposed method can preserve its superior noise immunity even under serious process, voltage, and temperature variations

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