International Journal on Science and Technology

E-ISSN: 2229-7677     Impact Factor: 9.88

A Widely Indexed Open Access Peer Reviewed Multidisciplinary Bi-monthly Scholarly International Journal

Call for Paper Volume 16 Issue 2 April-June 2025 Submit your research before last 3 days of June to publish your research paper in the issue of April-June.

Combinational Standard Cell Design using RHBD Technique

Author(s) Sinchana, Suchithra, Suhas, Vishwas, Ravishankar
Country India
Abstract In modern digital integrated circuit (IC)design, reliability and performance are critical factors, especially for systems that operate in harsh environments. Combinational logic circuits, integral to many digital systems, are vulnerable to reliability issues, such as radiation-induced failures,which can result in malfunctioning of the device. To address the3se concerns,the Radiation-Hardened-by-Design(RHBD)technique has attracted considerable intrest for improving the radiation tolerance of circuits without requiring additional shielding or expensive processes. This paper presents an innovative approach to combinational standard cell design by incorporating RHBD techniques. The proposed method involves utilizing fault-tolerant design principles such as error correction, redundancy, and optimization of logicg at estomitigate the effect so fradiation.The study discusses the selection of appropriate standard cells, the adaptation of combinational logic circuits, and the evaluation of their radiation tolerance. Simulation results demonstrate that the proposed RHBD combinational cells achieve enhanced fault immunity while maintaining area and power efficiency
Keywords RHBD (Radiation-Hardened by Design),Combinational Logic,Standard Cell,Digital Design,VLSI (Very Large Scale Integration)
Field Engineering
Published In Volume 16, Issue 2, April-June 2025
Published On 2025-04-11
Cite This Combinational Standard Cell Design using RHBD Technique - Sinchana, Suchithra, Suhas, Vishwas, Ravishankar - IJSAT Volume 16, Issue 2, April-June 2025. DOI 10.71097/IJSAT.v16.i2.2571
DOI https://doi.org/10.71097/IJSAT.v16.i2.2571
Short DOI https://doi.org/g9fchh

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