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Design and Test of Digital Circuits by Quantum-Dot Cellular Automata
 
 
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Design and Test of Digital Circuits by Quantum-Dot Cellular Automata [Hardcover]

Fabrizo Lombardi (Author), Jing Huang (Author)

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Book Description

1596932678 978-1596932678 November 2007 1
Here is the first book devoted to quantum-dot cellular automata (QCA) - an emerging nanoelectronic circuit design technology that more and more industry experts are viewing as a superior alternative to current technologies. QCA promises to help practitioners achieve room temperature operation and realize improvements in speed, density and power over existing (CMOS) systems. This groundbreaking resource provides a comprehensive view of QCA, showing practitioners how to work with this cutting-edge technology. The book offers an in-depth understanding of the design, test, defect tolerance, and computer aided design support for QCA. It identifies and discusses the key challenges facing QCA and offers possible solutions to these issues. Additionally, professionals find a comprehensive nanotechnology survey, detailing the advantages and disadvantages of various technologies.

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About the Author

Fabrizio Lombardi is currently the holder of the International Test Conference (ITC) Endowed Chair Professorship at Northeastern University. He has been the recipient of numerous professional awards and recently served as associate editor-in-chief of the IEEE Transactions on Computers. Dr Lombardi earned his Ph.D. at the University of London. Jing Huang is currently a Ph.D. candidate and research assistant in the Department of Electrical and Computer Engineering at Northeastern University, where she received her M.S. in science and electrical engineering.

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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
sequential circuit design, combinational logic design, super source, molecular electronics, negative differential resistance, clocking zones, same clocking zone, coherence vector engine, missing cell defect, maximum polarization level, baseline tile, proposed clocking schemes, thirteen standard functions, cell misplacement, coplanar wire crossing, coplanar crossing, generating different functions, lower horizontal wire, orthogonal tile, crossover vertex, parallel memory architecture, clocking unit, passive tiles, undetermined fault, signal error rate
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Quantum-Dot Cellular Automata, Normal Operation, Journal of Applied Physics, Fault Tolerance of Reversible, International Conference, New York, Applied Physics Letters, International Symposium, Implementing Universal Logic, Emerging Nano-Technology, Non-Silicon Computation, Micronet Annual Workshop, Number of Occurrences of Output Functions, Electron Devices, Molecular Quantum Cellular Automata Cells, University of Notre Dame, Binary Logic Scaling, Industry Assc, Generation of Output Function, Study of Storage Structures, Probability of Generating Different Functions, Write Control, The H-memory, Read Control, Arrays of Quantum Dot Molecules
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Front Cover | Table of Contents | First Pages | Surprise Me!
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