Nanoelectronics (Smart Engineering Systems: Design and Applications)

Nanoelectronics (Smart Engineering Systems:Design and Applications)

Nanoelectronics (Smart Engineering Systems:Design and Applications)

by: Balwinder Raj (Editor), Suman Lata Tripathi (Editor), Tarun Chaudhary (Editor), Mandeep Singh (Editor)

Edition: 1st

Publication Date: 2025-05-15

Language: English

Print Length: 378 pages

ISBN-10: 1032745983

ISBN-13: 9781032745985

Book Description

This book exhibits a unique way of explaining nanomaterials and devices and analyzing their design parameters to meet the sub-nanoregime challenges for low-power chip design. Since process variability, device sizing, and power supply scaling are ongoing challenges in very large-scale integration (VLSI) circuit designs, this book highlights the conventional and novel nanomaterials, devices and circuits, leakage current mitigation techniques, and other important trade-offs along with exhaustive analysis. More focus has been placed throughout the book on various trade-offs for high-speed and low-power VLSI devices and circuits co-design. This book:Discusses advanced nano-semiconductor devices such as FinFET, nanowires, tunnel field-effect transistors, carbon nanotube field-effect transistors, and high-electron-mobility transistorsPresents high-performance semiconductor devices at nanoscale technology nodes for the analysis of quantum effects and their impact on circuits and systemsCovers power dissipation and reduction techniques for high-performance devicesExplains both silicon and non-silicon devices for various applications like digital logic and analog/radio frequency applicationsExamines the difficulties and practical design approaches for extremely low-power analog-integrated circuitsIt is primarily written for senior undergraduates, graduate students, and academic researchers in the fields of electrical engineering, electronics and communications engineering, materials science, nanoscience, and nanotechnology.

Editorial Reviews

This book exhibits a unique way of explaining nanomaterials and devices and analyzing their design parameters to meet the sub-nanoregime challenges for low-power chip design. Since process variability, device sizing, and power supply scaling are ongoing challenges in very large-scale integration (VLSI) circuit designs, this book highlights the conventional and novel nanomaterials, devices and circuits, leakage current mitigation techniques, and other important trade-offs along with exhaustive analysis. More focus has been placed throughout the book on various trade-offs for high-speed and low-power VLSI devices and circuits co-design. This book:Discusses advanced nano-semiconductor devices such as FinFET, nanowires, tunnel field-effect transistors, carbon nanotube field-effect transistors, and high-electron-mobility transistorsPresents high-performance semiconductor devices at nanoscale technology nodes for the analysis of quantum effects and their impact on circuits and systemsCovers power dissipation and reduction techniques for high-performance devicesExplains both silicon and non-silicon devices for various applications like digital logic and analog/radio frequency applicationsExamines the difficulties and practical design approaches for extremely low-power analog-integrated circuitsIt is primarily written for senior undergraduates, graduate students, and academic researchers in the fields of electrical engineering, electronics and communications engineering, materials science, nanoscience, and nanotechnology.

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