Nanowire | Materials, Devices, Circuits, and Applications

Shailendra Singh (u. a.)

ISBN 10: 1041062672 ISBN 13: 9781041062677
Published by CRC Press, 2026
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Nanowire | Materials, Devices, Circuits, and Applications | Shailendra Singh (u. a.) | Buch | Einband - fest (Hardcover) | Englisch | 2026 | CRC Press | EAN 9781041062677 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand. Seller Inventory # 134448746

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Synopsis:

This book comprehensively:

  • Covers material for nanowires, device models, and applications for circuit design based on nanowire field-effect transistors
  • Explains a wide spectrum for designing robust multi-gate nanowire devices and low-power circuits
  • Highlights the conventional and novel nanomaterials, devices, and circuits, leakage current mitigation techniques, and important tradeoffs along with exhaustive analysis
  • Includes nanowire device structures and modeling along with MATLAB® codes
  • Offers an in-depth insight into the temporal degradation awareness and interconnects delay, which provides inside exposure to the impact of reductions in speed and consumption of more power

The text is primarily written for senior undergraduates, graduate students, and academic researchers in electrical engineering, electronics and communications engineering, materials science, nanoscience, and nanotechnology.

About the Author:

Shailendra Singh is currently working as an Assistant Professor, Electronics and Communication Engineering at Pranveer Singh Institute of Technology, Kanpur, India. His research interest includes modeling and simulation of semiconductor devices, especially Vertical TFET for low-power applica-tions. He has published more than 27 Scopus-indexed research papers with 6 book chapters and many national/International conferences.

Balwinder Raj (MIEEE’2006) currently working as an associate professor, in the Department of Electronics and Communications Engineering, at the National Institute of Technology Jalandhar, India. For further research work, the European Commission awarded him the “Erasmus Mundus” Mobility of Life research fellowship for postdoc research work at the University of Rome, Tor Vergata, Italy in 2010-2011. His areas of research interest are classical/non-classical nanoscale semiconductor device modeling, nanoelectronics and their applications in hardware security, sensors, and circuit design, FinFET-based memory design, low power VLSI design, digital/analog VLSI design, FPGA implementation. He has published more than a hundred research papers in peer-reviewed international/national journals and conferences.

Arun Kumar Manoharan is working as an associate professor, in the Department of Electrical, Electronics and Communication Engineering, at GITAM (Deemed to be University), Bengaluru, Karnataka, India. His current research area is the fabrication of sensor devices for biosensor applications. His research areas include energy storage applications. He has published research papers in journals and conferences.

Girdhar Gopal works as an assistant professor, in the Department of Electronics and Communication Department, at the Indian Institute of Information Technology Una, India. His main research interests are in the areas of Nanoelectronics, Semiconductor devices & VLSI Design. He has published in international journals and conferences.

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Bibliographic Details

Title: Nanowire | Materials, Devices, Circuits, and...
Publisher: CRC Press
Publication Date: 2026
Binding: Buch
Condition: Neu

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Hardcover. Condition: new. Hardcover. This book comprehensively:Covers material for nanowires, device models, and applications for circuit design based on nanowire field-effect transistorsExplains a wide spectrum for designing robust multi-gate nanowire devices and low-power circuitsHighlights the conventional and novel nanomaterials, devices, and circuits, leakage current mitigation techniques, and important tradeoffs along with exhaustive analysisIncludes nanowire device structures and modeling along with MATLAB codesOffers an in-depth insight into the temporal degradation awareness and interconnects delay, which provides inside exposure to the impact of reductions in speed and consumption of more powerThe text is primarily written for senior undergraduates, graduate students, and academic researchers in electrical engineering, electronics and communications engineering, materials science, nanoscience, and nanotechnology. The book begins by discussing nanomaterials for nanowire transistors, two-dimensional (2D) materials in designing nanowires, notably in field-effect transistor (FET) electronics. It further discusses nanowire transistor performance limits and high-speed integrated nanowire circuitry. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9781041062677

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Hardcover. Condition: new. Hardcover. This book comprehensively:Covers material for nanowires, device models, and applications for circuit design based on nanowire field-effect transistorsExplains a wide spectrum for designing robust multi-gate nanowire devices and low-power circuitsHighlights the conventional and novel nanomaterials, devices, and circuits, leakage current mitigation techniques, and important tradeoffs along with exhaustive analysisIncludes nanowire device structures and modeling along with MATLAB codesOffers an in-depth insight into the temporal degradation awareness and interconnects delay, which provides inside exposure to the impact of reductions in speed and consumption of more powerThe text is primarily written for senior undergraduates, graduate students, and academic researchers in electrical engineering, electronics and communications engineering, materials science, nanoscience, and nanotechnology. The book begins by discussing nanomaterials for nanowire transistors, two-dimensional (2D) materials in designing nanowires, notably in field-effect transistor (FET) electronics. It further discusses nanowire transistor performance limits and high-speed integrated nanowire circuitry. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9781041062677

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