
Nanoelectronics
Materials to Chips Design
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Nanoelectronics
Materials to Chips Design
About this book
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 transistors
- Presents high-performance semiconductor devices at nanoscale technology nodes for the analysis of quantum effects and their impact on circuits and systems
- Covers power dissipation and reduction techniques for high-performance devices
- Explains both silicon and non-silicon devices for various applications like digital logic and analog/radio frequency applications
- Examines the difficulties and practical design approaches for extremely low-power analog-integrated circuits
It 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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Information
Table of contents
- Cover
- Half-Title
- Series
- Title
- Copyright
- Contents
- Preface
- About the editors
- Contributors
- Acknowledgment
- 1 Design and analysis of advanced MOSFET
- 2 FinFET and its application
- 3 Future directions and roadmap for nanoelectronics
- 4 Analysis of HEMT and its applications
- 5 Characterizations and applications of pomegranate synthesized biogenic silver nanoparticles
- 6 Comparative analysis of 6T SRAM and ROM cell using CMOS technology at 200 nm, 45 nm, and 7 nm
- 7 FeFET in computing memory
- 8 Advancements and implications of bioplastic development: From material synthesis to environmental impact
- 9 Variability in tunnel field-effect transistor
- 10 Enhancing 5G network connectivity with fractal-inspired five-port MIMO antenna: Material-based analysis for satellite communication systems
- 11 2D nanomaterials based THz electromagnetic radiators
- 12 Nanomaterials for semiconductor devices
- 13 Design of MUX-Based CMOS 8-Bit Encoder device for high-speed 5G Flash ADC binary conversion in UWB applications
- Index