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VLSI : circuits for emerging applications / edited by Tomasz Wojcicki, Sidense Corporation, Ottawa, Ontario, Canada; Krzysztof Iniewski, managing editor, CMOS Emerging Technologies Research Incorporated, Vancouver, British Columbia, Canada.

O'Reilly Online Learning: Academic/Public Library Edition Available online

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Format:
Book
Contributor:
Wojcicki, Tomasz, editor.
Series:
Devices, circuits, and systems.
Devices, Circuits, & Systems
Language:
English
Subjects (All):
Integrated circuits, Very large scale integration.
Physical Description:
1 online resource (478 p.)
Edition:
1st edition
Other Title:
Very large-scale integrated circuits
Circuits for emerging applications
Place of Publication:
Boca Raton : CRC Press, [2015]
Language Note:
English
System Details:
text file
Summary:
Preface Only recently the world celebrated the 60th anniversary of the invention of the first transistor. The first integrated circuit was built a decade later, with the first microprocessor designed in the early 1970s. Today, integrated circuits are part of almost every aspect of our daily life. They help us to live longer and more comfortably, and to do more, and do it faster. And all that is possible because of the relentless search for new materials, new circuit designs, and new ideas happening on a daily basis at universities and within the industry around the globe. Profiliferation of integrated circuits in our daily lives does not mean making more of the same. It is actually the opposite. It is about making more of something completely different and customized for a particular application. And today's circuit designers cannot complain about the shortage of things to work with. All leading semiconductor foundries are offering now at least six different process nodes, from 180 nm down to 16 nm, with each node having two, three, or even more flavors. There are at least three different IO voltage standards--3.3 V, 2.5 V, and 1.8 volumes And apart from the mainstream CMOS process, each foundry offers more options such as GaAs, SOI, and GaN; new, even more exotic materials are not far behind. It all gives engineers an almost unlimited number of options and choices to make to achieve their objectives or their application-- Provided by publisher.
Contents:
Chapter 6: Soft-Error Mitigation Approaches for High-Performance Processor MemoriesChapter 7: Design Space Exploration of Wavelength-Routed Optical Networks-on-Chip Topologies for 3D Stacked Multi- and Many-Core Processors; Chapter 8: Quest for Energy Efficiency in Digital Signal Processing : Architectures, Algorithms, and Systems; Chapter 9: Nanoelectromechanical Relays : An Energy Efficient Alternative in Logic Design; Chapter 10: High-Performance and Customizable Bioinformatic and Biomedical Very-Large-Scale-Integration Architectures
Chapter 11: Basics, Applications, and Design of Reversible CircuitsChapter 12: Three-Dimensional Spintronics; Chapter 13: Soft-Error-Aware Power Optimization Using Dynamic Threshold; Chapter 14: Future of Asynchronous Logic; Chapter 15: Memristor-CMOS-Hybrid Synaptic Devices Exhibiting Spike-Timing-Dependent Plasticity; Chapter 16: Very-Large-Scale Integration Implementations of Cryptographic Algorithms; Chapter 17: Dynamic Intrinsic Chip ID for Hardware Security; Chapter 18: Ultra-Low-Power Audio Communication System for Full Implantable Cochlear Implant Application
Chapter 19: Heterogeneous Memory DesignChapter 20: Soft-Error Resilient Circuit Design; Back Cover
Notes:
Description based upon print version of record.
Includes bibliographical references at the end of each chapters.
Description based on print version record.
ISBN:
9781351831437
1351831437
9781315215549
1315215543
9781466599109
1466599103
OCLC:
893735714

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