This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanotubes or nanowires) or following an unconventional method (e.g., FinFET or III/V compound-based devices). These nanoscale devices have significant potential to revolutionize the fabrication and integration of electronic systems and scale beyond the perceived scaling limitations of traditional CMOS.
While innovations in nanotechnology originate at the individual device level, realizing the true impact of electronic systems demands that these device-level capabilities be translated into system-level benefits. This is the first book to focus on nanoscale circuits and their design issues, bridging the existing gap between nanodevice research and nanosystem design.
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This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanotubes or nanowires) or following an unconventional method (e.g., FinFET or III/V compound-based devices).
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Introduction.-FinFET Circuit Design.-FinFET Memory Design.-Hybrid Nano/CMOS.-Reconfigurable Architectures.-III/V Compound-Based Circuits.-Sub-lithographic Design of Programmable Logic with Nanowires.-Spatial Computing Using Molecular Electronics.-CMOL.-Nanoscale Application-Specific ICs and Architectures.-Misalignment-Immune Carbon Nanotube Circuits.-Field Programmable Carbon Nanotube Array.-Graphene Nanoribbon Transistors and Circuits.-Comparison Study of Cu/low-k, CNT, GNR, and optical interconnects.-High-Speed Circuits Using Resonant Tunneling Diodes.-Quantum Cellular Automata.-Reversible Logic - Applications to Quantum Computing.-Spintronics
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Nanoelectronic Circuit Design
Edited by:
Niraj K. Jha
Deming Chen
This book is about large-scale electronic circuits design driven by nanotechnology, where nanotechnology is broadly defined as building circuits using nanoscale devices that are either implemented with nanomaterials (e.g., nanowires, nanotubes or graphene) or following an unconventional method (e.g., FinFETs, quantum dots or resonant tunneling diodes). These nanoscale devices have significant potential to revolutionize the fabrication and integration of electronic systems and scale beyond the perceived scaling limitations of traditional CMOS.
While innovations in nanotechnology originate at the individual device level, realizing the true impact of electronic systems demands that these device-level capabilities be translated into system-level benefits. This is the first book to focus on nanoscale circuits and their design issues, bridging the existing gap between nanodevice research and nanosystem design.
•Covers design, synthesis, assembly, fabrication, integration, fault tolerance and testing of nanocircuits and nanosystems;
•Focuses on state-of-the-art research, as well as fundamental principles;
•Describes potential of nanoelectronic technology and the unique challenges it presents across the whole device-to-system process;
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Covers design, synthesis, assembly, fabrication, integration, fault tolerance and testing of nanocircuits and nanosystems; Focuses on state-of-the-art research, as well as fundamental principles; Describes potential of nanoelectronic technology and the unique challenges it presents across the whole device-to-system process Includes supplementary material: sn.pub/extras
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Produktdetaljer
ISBN
9781489981530
Publisert
2014-11-28
Utgiver
Vendor
Springer-Verlag New York Inc.
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet