Robust Computing with Nano-Scale Devices

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The focus of this book is on various issues of robust nano-computing, defect-tolerance design for nano-technology at different design abstraction levels. It addresses both redundancy- and configuration-based methods as well as fault detecting techniques.


Robust Nano-Computing focuses on various issues of robust nano-computing, defect-tolerance design for nano-technology at different design abstraction levels. It addresses both redundancy- and configuration-based methods as well as fault detecting techniques through the development of accurate computation models and tools. The contents present an insightful view of the ongoing researches on nano-electronic devices, circuits, architectures, and design methods, as well as provide promising directions for future research.


It addresses the most critical issues for nano-computing It presents the latest research achievements It covers different design levels It provides comprehensive solutions and accurate models It initiates promising future research directions Includes supplementary material: sn.pub/extras

Klappentext

Although complementary metal-oxide semiconductor (CMOS) technology will continue dominating the digital electronic circuits for the next 10-15 years, a number of grand challenges have emerged as the transistor size scales down. The rising costs of semiconductor mask and fabrication pose economic barriers to lithography. The quantum effects and increasing leakage power begin setting physical limits on continuous CMOS feature size shrinking.

The research advances of innovative nano-scale devices have created great opportunities to surpass the barriers faced by CMOS technology, which include nanowires, carbon nanotube transistors, programmable molecular switches, resonant tunneling diodes, quantum dots, etc.

However, the success of many nanotechnologies relies on the self-assembly fabrication process to fabricate circuits. The stochastic self-assembly fabrication, unfortunately, has low reliability with defect densities several orders of magnitude higher than conventional CMOS technology.

Robust Nano-Computing focuses on various issues of robust nano-computing, defect-tolerance design for nano-technology at different design abstraction levels. It addresses both redundancy- and configuration-based methods as well as fault detecting techniques through the development of accurate computation models and tools. The contents present an insightful view of the ongoing researches on nano-electronic devices, circuits, architectures, and design methods, as well as provide promising directions for future research.


Inhalt
Fault Tolerant Nanocomputing.- Transistor-Level Based Defect-Tolerance for Reliable Nanoelectronics.- Fault-Tolerant Design for Nanowire-Based Programmable Logic Arrays.- Built-In Self-Test and Defect Tolerance for Molecular Electronics-Based NanoFabrics.- The Prospect and Challenges of CNFET Based Circuits: A Physical Insight.- Computing with Nanowires: A Self Assembled Neuromorphic Architecture.- Computational Opportunities and CAD for Nanotechnologies.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09789048185399
    • Genre Elektrotechnik
    • Auflage 2010 edition
    • Editor Chao Huang
    • Sprache Englisch
    • Lesemotiv Verstehen
    • Anzahl Seiten 180
    • Größe H243mm x B164mm x T20mm
    • Jahr 2010
    • EAN 9789048185399
    • Format Fester Einband
    • ISBN 978-90-481-8539-9
    • Veröffentlichung 26.03.2010
    • Titel Robust Computing with Nano-Scale Devices
    • Untertitel Progresses and Challenges
    • Gewicht 436g
    • Herausgeber SPRINGER NATURE

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