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Low Power Digital CMOS Design
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Low Power Digital CMOS Design - nouveau livre

ISBN: 9780792395768

Power consumption has become a major design consideration for battery-operated, portable systems as well as high-performance, desktop systems. Strict limitations on power dissipation must… Plus…

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Low Power Digital CMOS Design - Chandrakasan, Anantha P. Brodersen, Robert W.
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Chandrakasan, Anantha P. Brodersen, Robert W.:

Low Power Digital CMOS Design - edition reliée, livre de poche

1995, ISBN: 9780792395768

Springer, Hardcover, Auflage: 1995, 420 Seiten, Publiziert: 1995-06-30T00:00:01Z, Produktgruppe: Book, 1.71 kg, Books Global Store, Special Features, Books, Architecture & Microprocessors… Plus…

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Low Power Digital CMOS Design - Anantha P. Chandrakasan Robert W. Brodersen
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Anantha P. Chandrakasan Robert W. Brodersen:
Low Power Digital CMOS Design - Première édition

1995

ISBN: 9780792395768

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[ED: Gebunden], [PU: Springer US], Power consumption has become a major design consideration for battery-operated, portable systems as well as high-performance, desktop systems. Strict … Plus…

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Chandrakasan, Anantha P.; Brodersen, Robert W.:
Low Power Digital CMOS Design - edition reliée, livre de poche

1995, ISBN: 079239576X

[EAN: 9780792395768], D'occasion, [SC: 12.9], [PU: Springer], Readable copy. Pages may have considerable notes/highlighting. ~ ThriftBooks: Read More, Spend Less, Books

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Chandrakasan, Anantha P.; Brodersen, Robert W.:
Low Power Digital CMOS Design - edition reliée, livre de poche

1995, ISBN: 079239576X

[EAN: 9780792395768], Nouveau livre, [SC: 31.17], [PU: Kluwer Academic Publishers], new, Books

NEW BOOK. Frais d'envoi EUR 31.17 Byrd Books, Austin, TX, U.S.A. [83414208] [Note: 5 (sur 5)]

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Détails sur le livre
Low Power Digital CMOS Design

Power consumption has become a major design consideration for battery-operated, portable systems as well as high-performance, desktop systems. Strict limitations on power dissipation must be met by the designer while still meeting ever higher computational requirements. A comprehensive approach is thus required at all levels of system design, ranging from algorithms and architectures to the logic styles and the underlying technology. Potentially one of the most important techniques involves combining architecture optimization with voltage scaling, allowing a trade-off between silicon area and low-power operation. Architectural optimization enables supply voltages of the order of 1 V using standard CMOS technology. Several techniques can also be used to minimize the switched capacitance, including representation, optimizing signal correlations, minimizing spurious transitions, optimizing sequencing of operations, activity-driven power down, etc. The high- efficiency of DC-DC converter circuitry required for efficient, low-voltage and low-current level operation is described by Stratakos, Sullivan and Sanders. The application of various low-power techniques to a chip set for multimedia applications shows that orders-of-magnitude reduction in power consumption is possible. The book also features an analysis by Professor Meindl of the fundamental limits of power consumption achievable at all levels of the design hierarchy. Svensson, of ISI, describes emerging adiabatic switching techniques that can break the CV2f barrier and reduce the energy per computation at a fixed voltage. Srivastava, of AT&T, presents the application of aggressive shut-down techniques to microprocessor applications.

Informations détaillées sur le livre - Low Power Digital CMOS Design


EAN (ISBN-13): 9780792395768
ISBN (ISBN-10): 079239576X
Version reliée
Livre de poche
Date de parution: 2007
Editeur: Springer
424 Pages
Poids: 0,798 kg
Langue: eng/Englisch

Livre dans la base de données depuis 2007-05-25T02:24:32+02:00 (Paris)
Page de détail modifiée en dernier sur 2024-02-01T12:10:18+01:00 (Paris)
ISBN/EAN: 9780792395768

ISBN - Autres types d'écriture:
0-7923-9576-X, 978-0-7923-9576-8
Autres types d'écriture et termes associés:
Auteur du livre: brodersen, robert, sullivan
Titre du livre: low power digital cmos design


Données de l'éditeur

Auteur: Anantha P. Chandrakasan; Robert W. Brodersen
Titre: Low Power Digital CMOS Design
Editeur: Springer; Springer US
409 Pages
Date de parution: 1995-06-30
New York; NY; US
Langue: Anglais
160,49 € (DE)
164,99 € (AT)
177,00 CHF (CH)
Available
XI, 409 p.

BB; Hardcover, Softcover / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Schaltkreise und Komponenten (Bauteile); Verstehen; CMOS; Potential; Signal; Standard; computer; logic; microprocessor; multimedia; Electronic Circuits and Systems; Electrical and Electronic Engineering; Elektrotechnik; BC

1 Introduction.- 1.1 Overview of Book.- 2 Hierarchy of Limits of Power.- 2.1 Introduction.- 2.2 Background.- 2.3 Theoretical Limits.- 2.4 Quasi-Adiabatic Microelectronics.- 2.5 Practical Limits.- 2.6 Conclusion.- 3 Sources of Power Consumption.- 3.1 Switching Component of Power.- 3.2 Short-circuit Component of Power.- 3.3 Leakage Component of Power.- 3.4 Static Power.- 3.5 Summary.- 4 Voltage Scaling Approaches.- 4.1 Reliability-Driven Voltage Scaling.- 4.2 Technology-Driven Voltage Scaling.- 4.3 Energy x Delay Minimum Based Voltage Scaling.- 4.4 Voltage Scaling Through Optimal Transistor Sizing.- 4.5 Voltage Scaling Using Threshold Reduction.- 4.6 Architecture-Driven Voltage Scaling.- 4.7 Summary.- 5 DC Power Supply Design in Portable Systems.- 5.1 Voltage Regulation Enhances System Run-time.- 5.2 DC-DC Converter Topology Selection.- 5.3 Converter Miniaturization.- 5.4 Circuit Optimizations for High Efficiency.- 6 Adiabatic Switching.- 6.1 Adiabatic Charging.- 6.2 Adiabatic Amplification.- 6.3 Adiabatic Logic Gates.- 6.4 Stepwise Charging.- 6.5 Pulsed-Power Supplies.- 6.6 Summary.- 6.7 Acknowledgments.- 7 Minimizing Switched Capacitance.- 7.1 Algorithmic Optimization.- 7.2 Architecture Optimization.- 7.3 Logic Optimization.- 7.4 Circuit Optimization.- 7.5 Physical Design.- 7.6 Summary.- 8 Computer Aided Design Tools.- 8.1 Previous Work.- 8.2 Application of Transformations to Minimize Power.- 8.3 Cost Function.- 8.4 Optimization Algorithm.- 8.5 Examples and Results.- 8.6 Summary.- 9 A Portable Multimedia Terminal.- 9.1 Technology Trends for Low Power Portable Systems.- 9.2 System Partitioning for Low-power.- 9.3 Architecture of the Portable Multimedia Terminal.- 9.4 Low Power Implementation of the I/O Processing Modules.- 9.5 System Implementation.- 9.6 Summary.- 10 LowPower Programmable Computation.- 10.1 Architectural Approaches to Low-power.- 10.2 Shutdown Techniques.- 10.3 Architecture-Driven Voltage Reduction.- 10.4 Summary.- 11 Conclusions.

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