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Nanoscale CMOS
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Nanoscale CMOS : Innovative Materials, Modeling and Characterization

Book Details

Format Hardback or Cased Book
ISBN-10 1848211805
ISBN-13 9781848211803
Publisher ISTE Ltd and John Wiley & Sons Inc
Imprint ISTE Ltd and John Wiley & Sons Inc
Country of Manufacture US
Country of Publication GB
Publication Date Jun 11th, 2010
Print length 652 Pages
Weight 1,111 grams
Dimensions 24.00 x 16.30 x 4.10 cms
Product Classification: Semi-conductors & super-conductors
Ksh 42,300.00
Werezi Extended Catalogue 0 in stock

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This book provides a comprehensive review of the state-of-the-art in the development of new and innovative materials, and of advanced modeling and characterization methods for nanoscale CMOS devices. Leading global industry bodies including the International Technology Roadmap for Semiconductors (ITRS) have created a forecast of performance improvements that will be delivered in the foreseeable future – in the form of a roadmap that will lead to a substantial enlargement in the number of materials, technologies and device architectures used in CMOS devices. This book addresses the field of materials development, which has been the subject of a major research drive aimed at finding new ways to enhance the performance of semiconductor technologies. It covers three areas that will each have a dramatic impact on the development of future CMOS devices: global and local strained and alternative materials for high speed channels on bulk substrate and insulator; very low access resistance; and various high dielectric constant gate stacks for power scaling. The book also provides information on the most appropriate modeling and simulation methods for electrical properties of advanced MOSFETs, including ballistic transport, gate leakage, atomistic simulation, and compact models for single and multi-gate devices, nanowire and carbon-based FETs. Finally, the book presents an in-depth investigation of the main nanocharacterization techniques that can be used for an accurate determination of transport parameters, interface defects, channel strain as well as RF properties, including capacitance-conductance, improved split C-V, magnetoresistance, charge pumping, low frequency noise, and Raman spectroscopy.

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