Exploring the Intricacies of Digital and Analog VLSI

Author:   Koushik Guha ,  Jyoti Kandpal ,  Swagata Devi
Publisher:   IGI Global
ISBN:  

9798369380840


Pages:   480
Publication Date:   16 April 2025
Format:   Hardback
Availability:   Available To Order   Availability explained
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Exploring the Intricacies of Digital and Analog VLSI


Overview

Advancements in Very Large Scale Integration (VLSI) technology are at the heart of modern electronic innovation, enabling the integration of millions of transistors onto a single chip. This field is essential for developing efficient, high-performance systems that power everything from smartphones to advanced computing technologies. By addressing both digital and analog VLSI design, this topic explores the challenges and solutions involved in optimizing power, signal integrity, and functionality. The impact of VLSI extends across industries, driving technological progress and shaping the future of electronics in an increasingly interconnected world. Exploring the Intricacies of Digital and Analog VLSI explores advanced techniques, practical applications, and emerging trends in both digital and analog VLSI. It consolidates existing knowledge while introducing cutting-edge methodologies and insights, shaping the trajectory of future research endeavors in VLSI. This book covers topics such as electrical engineering, optimization techniques, and computer science, and is a useful resource for engineers, computer scientists, academicians, and researchers.

Full Product Details

Author:   Koushik Guha ,  Jyoti Kandpal ,  Swagata Devi
Publisher:   IGI Global
Imprint:   IGI Global
Dimensions:   Width: 21.60cm , Height: 2.20cm , Length: 27.90cm
Weight:   1.193kg
ISBN:  

9798369380840


Pages:   480
Publication Date:   16 April 2025
Audience:   College/higher education ,  Professional and scholarly ,  Tertiary & Higher Education ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Available To Order   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

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Author Information

Jyoti Kandpal received the B.Tech. degree in electronics and communication engineering from Bipin Chandra Tripathi, Kumaon Engineering College, Dwarahat, India, in 2012, the M.Tech. degree in VLSI design from the Department of Electronics and Communication Engineering, Uttarakhand Technical University, Dehradun, India, in 2015, and the Ph.D. degree in electrical engineering from the G. B. Pant University of Agriculture and Technology, Pantnagar, India, in 2021. She is an Assistant Professor at the Department of Electronics and Communication Engineering at Graphic Era Hill University, Dehradun. Her research interests include low-power VLSI design and high-performance digital circuit design Dr. Swagata Devi is working as an Assistant Professor in Faculty of Engineering at Assam down town University, Guwahati, Assam. She has previously worked as an Assistant Professor in B. V. Raju Institute of Technology Narasapur, Telengana and also as a contractual faculty in National Institute of Technology Silchar. She completed her Ph.D. in Electronics and Communication Engineering (ECE) from the National Institute of Technology Silchar in the year 2022. She completed her M.Tech in Electronics Design and Technology from Tezpur University in 2016 and her B. E. from Gauhati University in 2013. She has contributed significantly to reputed journals and conferences, emphasizing low-power neural amplifier design, bio-inspired optimization algorithms, and innovative preamplifier circuits for biomedical applications. Her dedication to the field is further evidenced by her active participation in workshops, research conclaves, and leadership roles in organizing international conferences. Dr. Devi's research focuses on Analog VLSI Circuit Design and Optimization, including circuit design modeling and optimization. Her notable contributions to scholarly journals cover a spectrum of topics such as low-power OTA-based neural amplifier design, swarm intelligence-based methods for sizing preamplifier circuits, and the design of low-power preamplifier IC for a cochlear implant. Dr. Devi has actively participated in international conferences, presenting papers on topics like Metaheuristic algorithms-based approaches for optimal amplifier design and she has authored chapters in books published by reputed publishers. Her academic prowess is complemented by strong technical skills and driven by a passion for research and innovation.

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