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Microelectronics cover

Microelectronics

Simulations, Modeling and Applications

by Balwinder Raj, Koushik Guha, Shiromani Balmukund Rahi

1st Edition

Publisher: Wiley-Scrivener

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Book Details

Print ISBN9781394336456
eText ISBN9781394336463
PublisherWiley-Scrivener
Publishing Year2026
Edition1st Edition
LanguageEnglish
Pages560

Microelectronics: Simulations, Modeling and Applications, 1st Edition, is a comprehensive book that examines engineering solutions designed to overcome physical limitations of conventional silicon. Its primary focus centers on optimizing device performance and electronic properties in nanoscale semiconductor architectures.

The volume surveys foundational concepts and emerging developments across microelectronics, addressing two-dimensional materials, microelectronic devices, large-scale VLSI circuits, and methods for leakage mitigation. In addition, it explores physical characterization alongside alternative material frameworks such as graphene implementations.

Structured to explain device properties and operating principles with clarity, the text provides an accessible reference suitable for novices and experienced specialists alike.

Table of Contents

  1. Chapter 1: 2D Materials for Microelectronic Devices

  2. Chapter 2: Microelectronic Devices

  3. Chapter 3: Insights Review of Microelectronic Devices

  4. Chapter 4: Novel Devices with Carbon and Graphene

  5. Chapter 5: Carbon and Graphene Devices with Applications

  6. Chapter 6: III–V Compound Semiconductor Devices

  7. Chapter 7: Dopingless Heterojunction Tunnel FET and its Application

  8. Chapter 8: Silicon Nanowire Field Effect Transistor and Its Applications

  9. Chapter 9: Impact of Material and Structural Engineering in Double-Gate Junction Underlap Dual-Gate FinFETs

  10. Chapter 10: Nanoelectronic System Design for RF Energy Harvesting

  11. Chapter 11: Fin Field-Effect Transistor-Based Digital Logic Circuits Using 7-nm Regime

  12. Chapter 12: MEMS Sensors and Its Applications

  13. Chapter 13: Investigation of MEMS Sensors and Applications

  14. Chapter 14: Piezoelectric MEMS Sensors and its Applications

  15. Chapter 15: Design Exploration of PVT-Tolerant Pre-Amplifiers for Seizure Monitoring

  16. Chapter 16: Advanced Electroencephalography and Its Influence on Neuroscience Applications

  17. Chapter 17: Bridging Memory and Computation: Reimagining Digital Logics through Memristor Technology

  18. Chapter 18: Nanowire Synapse for Accelerating Neuromorphic Computing

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