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Book Description

Recently the world celebrated the 60th anniversary of the invention of the first transistor. The first integrated circuit (IC) was built a decade later, with the first microprocessor designed in the early 1970s. Today, ICs are a part of nearly every aspect of our daily lives. They help us live longer and more comfortably, and do more, faster. All this is possible because of the relentless search for new materials, circuit designs, and ideas happening on a daily basis at industrial and academic institutions around the globe.

Showcasing the latest advances in very-large-scale integrated (VLSI) circuits, VLSI: Circuits for Emerging Applications provides a balanced view of industrial and academic developments beyond silicon and complementary metal–oxide–semiconductor (CMOS) technology. From quantum-dot cellular automata (QCA) to chips for cochlear implants, this must-have resource:

  • Investigates the trend of combining multiple cores in a single chip to boost performance of the overall system
  • Describes a novel approach to enable physically unclonable functions (PUFs) using intrinsic features of a VLSI chip
  • Examines the VLSI implementations of major symmetric and asymmetric key cryptographic algorithms, hash functions, and digital signatures
  • Discusses nonvolatile memories such as resistive random-access memory (Re-RAM), magneto-resistive RAM (MRAM), and floating-body RAM (FB-RAM)
  • Explores organic transistors, soft errors, photonics, nanoelectromechanical (NEM) relays, reversible computation, bioinformatics, asynchronous logic, and more

VLSI: Circuits for Emerging Applications presents cutting-edge research, design architectures, materials, and uses for VLSI circuits, offering valuable insight into the current state of the art of micro- and nanoelectronics.

Table of Contents

  1. Cover Page
  2. Title Page
  3. Copyright Page
  4. Contents
  5. Preface
  6. Editors
  7. Contributors
  8. 1 Integration of Graphics Processing Cores with Microprocessors
  9. 2 Arithmetic Implemented with Semiconductor Quantum-Dot Cellular Automata
  10. 3 Novel Capacitor-Less A2RAM Memory Cells for Beyond 22-nm Nodes
  11. 4 Four-State Hybrid Spintronics–Straintronics
  12. 5 Improvement and Applications of Large-Area Flexible Electronics with Organic Transistors
  13. 6 Soft-Error Mitigation Approaches for High-Performance Processor Memories
  14. 7 Design Space Exploration of Wavelength-Routed Optical Networks-on-Chip Topologies for 3D Stacked Multi- and Many-Core Processors
  15. 8 Quest for Energy Efficiency in Digital Signal Processing
  16. 9 Nanoelectromechanical Relays
  17. 10 High-Performance and Customizable Bioinformatic and Biomedical Very-Large-Scale-Integration Architectures
  18. 11 Basics, Applications, and Design of Reversible Circuits
  19. 12 Three-Dimensional Spintronics
  20. 13 Soft-Error-Aware Power Optimization Using Dynamic Threshold
  21. 14 Future of Asynchronous Logic
  22. 15 Memristor-CMOS-Hybrid Synaptic Devices Exhibiting Spike-Timing-Dependent Plasticity
  23. 16 Very-Large-Scale Integration Implementations of Cryptographic Algorithms
  24. 17 Dynamic Intrinsic Chip ID for Hardware Security
  25. 18 Ultra-Low-Power Audio Communication System for Full Implantable Cochlear Implant Application
  26. 19 Heterogeneous Memory Design
  27. 20 Soft-Error Resilient Circuit Design
  28. Index
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