
- 573 pages
- English
- PDF
- Available on iOS & Android
About this book
Nanoelectronics is an essential resource for anyone looking to stay at the forefront of innovation, as it thoroughly explores cutting-edge methodologies and design principles for ultra-nanoscale technology.
Modern research aims to make devices more efficient so that next-level systems will be energy-efficient, have faster operating speeds, and occupy minimal space. Traditional methods for the implementation of systems are approaching their fundamental limitations. The field of ultra-nanoscale technology is a prime choice for researchers to work and develop technologies for future systems. The advantages of the ultra-nanoscale field are low-dimensional and high-speed implementation with a focus on high levels of functional integration.
Nanoelectronics: Fundamentals, Advances, and Applications comprehensively covers both introductory and advanced-level ideas and methodologies, which support future system designs in ultra-nanoscale technologies. The merits and challenges of different technological devices and systems are also discussed in depth. This book focuses on design and techniques for the next generation of intelligent systems, making it an essential resource for novices and experts exploring this innovative technology.
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Information
Table of contents
- Cover
- Series Page
- Title Page
- Copyright Page
- Contents
- Preface
- Chapter 1 Gaussian Doped SOI Junctionless FinFET: A Study of RDF Variability and Parametric Sensitivity
- Chapter 2 Nanotechnology and Applications
- Chapter 3 Comparative Investigation of Various SRAM Cells with High Stability and Low Leakage
- Chapter 4 Application of Nanotechnology in the Development of Latent Fingerprints in the Field of Forensic Dermatoglyphics
- Chapter 5 Nanoelectronics: A Journey from Planar Transistor to Beyond Semiconductor
- Chapter 6 EDP-Efficient Level Shifters for Super Threshold Voltage Level Shifting Applications
- Chapter 7 Applications of Nanotechnology in Nanoelectronics: Communication and Biomedical Field
- Chapter 8 Exploring CMOS, PTL and GDI Logic Families Based One Bit Full Adder and Subtractor Circuits in Subthreshold Region for Energy and EDP Efficient Applications
- Chapter 9 TFET Fundamentals: A Gateway to Nanoscale Electronics
- Chapter 10 Revolutionizing Data Processing: In-Memory Computing and the Shift from Traditional Architectures
- Chapter 11 The Tunnel FET: Fundamentals, Calibration, and Simulation
- Chapter 12 The Junctionless Device
- Chapter 13 Tuning the Electronic and Spintronic Properties of BN Nanoribbons via C-Doping
- Chapter 14 Revolutionizing Information Processing: Unveiling the Potential of Spintronics through Cutting-Edge Electron Spin Research
- Chapter 15 Trade-Offs in the Ultra-Nanoscale: Balancing Performance and Constraints
- Chapter 16 Carbon Nanotube Field Effect Transistor Technology: Fundamentals & Applications
- Index
- Also of Interest
- EULA