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Low-voltage/low-power integrated circuits and systems : low-voltage mixed-signal ciruits / edited by Edgar S�anchez-Sinencio, Andreas G. Andreou.

Contributor(s): Andreou, Andreas G | S�anchez-Sinencio, Edgar | John Wiley & Sons [publisher.] | IEEE Solid-State Circuits Society | IEEE Xplore (Online service) [distributor.].
Material type: materialTypeLabelBookSeries: IEEE Press series on microelectronic systems: 4Publisher: New York : IEEE Press, 1999Distributor: [Piscataqay, New Jersey] : IEEE Xplore, [1999]Description: 1 PDF (xxviii, 562 pages) : illustrations.Content type: text Media type: electronic Carrier type: online resourceISBN: 9780470545065.Subject(s): Low voltage integrated circuits | Adaptation model | Algorithm design and analysis | Analog circuits | Approximation algorithms | Approximation methods | Artificial intelligence | Asynchronous circuits | Bandwidth | Batteries | BiCMOS integrated circuits | Biographies | Bipolar transistors | Books | CMOS integrated circuits | CMOS technology | Capacitance | Capacitors | Channel coding | Circuit synthesis | Clocks | Converters | Data conversion | Delay | Design automation | Digital circuits | Distortion measurement | Dynamic range | Electric potential | Entropy | Equations | Flip-flops | Gain | Germanium | Heart | Humans | Image color analysis | Impedance | Indexes | Integrated circuit modeling | Integrated circuits | Logic gates | MOS devices | MOSFET circuits | MOSFETs | Mathematical model | Matrix converters | Mirrors | Noise | Nonvolatile memory | Numerical models | Pacemakers | Photonic band gap | Physics | Pixel | Power harmonic filters | Power supplies | Programming | Quantization | Rails | Resistance | Resistors | Sections | Signal to noise ratio | Silicon | Switches | Synchronization | Temperature measurement | Temperature sensors | Threshold voltage | Transconductance | Transforms | Transistors | Very large scale integration | Voltage controlGenre/Form: Electronic books.DDC classification: 621.3815 Online resources: Abstract with links to resource Also available in print.
Contents:
Foreword. Preface. Acknowledgments. Contributors. Introduction (E. Sanchez-Sinencio). A Current-Based MOSFET Model for Integrated Circuit Design (C. Montoro, et al.). A Review of the Performance of Available Integrated CircuitComponents Under the Constraints of Low-Power Operation (D. Bowers). Exploiting Device Physics in Circuit Design for Efficient Computational Functions in Analog VLSI (A. Andreou). Low-Voltage Circuit Techniques Using Floating-Gate Transistors (Chong-Gun Yu and Randall Geiger). Low-Power CMOS Digital Circuits (S. Embabi). Low-Voltage Analog BiCMOS Circuit Building Blocks (J. Ramirez-Angulo). Low-Voltage CMOS Operational Amplifiers (R. Wassenaar, et al.). Low-Voltage/Low-Power Amplifiers with Optimized Dynamic Range and Bandwidth (J. Huijsing, et al.). Low-Voltage Analog CMOS Filter Design (M. Steyaert, et al.). Continuous-Time Low-Voltage Current-Mode Filters (E. Sanchez-Sinencio and S. Smith). High-Efficiency Low-Voltage DC-DC Conversion for PortableApplications (A. Stratakos, et al.). Two New Directions in Low-Power Digital CMOS VLSI Design (V. Kantabutra). Low-Power CMOS Data Conversion (M. Pelgrom). Low-Power Multiplierless YUV-to-RGB Converter Based on HumanVision Perception (T. Meng, et al.). Micropower Systems for Implantable Defibrillators and Pacemakers (M. Jabri and R. Coggins). An Information Theoretic Framework for Comparing the Bit Energy of Signal Representations at the Circuit Level (A. Andreou and P. Furth). A Synchronous Gated-Clock Strategy for Low-Power Design ofTelecom ASICs (P. Vanoostende and G. Van Wauwe). Index. About the Editors.
Summary: "Leading experts in the field present this collection of original contributions as a practical approach to low-power analog and digital circuit theory and design, illustrated with important applications and examples. LOW-VOLTAGE/LOW-POWER INTEGRATED CIRCUITS AND SYSTEMS features comprehensive coverage of the latest techniques for the design, modeling, and characterization of low-power analog and digital circuits. LOW-VOLTAGE/LOW-POWER INTEGRATED CIRCUITS AND SYSTEMS will help you improve your understanding of the trade-offs between analog and digital circuits and systems. It is an invaluable resource for enhancing your designs. This book is intended for senior and graduate students. It is also intended as a key reference for designers in the semiconductor and communication industries. Highlighted applications include: * Low-voltage analog filters * Low-power multiplierless YUV to RGB based on human vision perception * Micropower systems for implantable defibrillators and pacemakers * Neuromorphic systems * Low-power design in telecom circuits".
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"IEEE Solid-State Circuits Society, sponsor."

Includes bibliographical references and index.

Foreword. Preface. Acknowledgments. Contributors. Introduction (E. Sanchez-Sinencio). A Current-Based MOSFET Model for Integrated Circuit Design (C. Montoro, et al.). A Review of the Performance of Available Integrated CircuitComponents Under the Constraints of Low-Power Operation (D. Bowers). Exploiting Device Physics in Circuit Design for Efficient Computational Functions in Analog VLSI (A. Andreou). Low-Voltage Circuit Techniques Using Floating-Gate Transistors (Chong-Gun Yu and Randall Geiger). Low-Power CMOS Digital Circuits (S. Embabi). Low-Voltage Analog BiCMOS Circuit Building Blocks (J. Ramirez-Angulo). Low-Voltage CMOS Operational Amplifiers (R. Wassenaar, et al.). Low-Voltage/Low-Power Amplifiers with Optimized Dynamic Range and Bandwidth (J. Huijsing, et al.). Low-Voltage Analog CMOS Filter Design (M. Steyaert, et al.). Continuous-Time Low-Voltage Current-Mode Filters (E. Sanchez-Sinencio and S. Smith). High-Efficiency Low-Voltage DC-DC Conversion for PortableApplications (A. Stratakos, et al.). Two New Directions in Low-Power Digital CMOS VLSI Design (V. Kantabutra). Low-Power CMOS Data Conversion (M. Pelgrom). Low-Power Multiplierless YUV-to-RGB Converter Based on HumanVision Perception (T. Meng, et al.). Micropower Systems for Implantable Defibrillators and Pacemakers (M. Jabri and R. Coggins). An Information Theoretic Framework for Comparing the Bit Energy of Signal Representations at the Circuit Level (A. Andreou and P. Furth). A Synchronous Gated-Clock Strategy for Low-Power Design ofTelecom ASICs (P. Vanoostende and G. Van Wauwe). Index. About the Editors.

Restricted to subscribers or individual electronic text purchasers.

"Leading experts in the field present this collection of original contributions as a practical approach to low-power analog and digital circuit theory and design, illustrated with important applications and examples. LOW-VOLTAGE/LOW-POWER INTEGRATED CIRCUITS AND SYSTEMS features comprehensive coverage of the latest techniques for the design, modeling, and characterization of low-power analog and digital circuits. LOW-VOLTAGE/LOW-POWER INTEGRATED CIRCUITS AND SYSTEMS will help you improve your understanding of the trade-offs between analog and digital circuits and systems. It is an invaluable resource for enhancing your designs. This book is intended for senior and graduate students. It is also intended as a key reference for designers in the semiconductor and communication industries. Highlighted applications include: * Low-voltage analog filters * Low-power multiplierless YUV to RGB based on human vision perception * Micropower systems for implantable defibrillators and pacemakers * Neuromorphic systems * Low-power design in telecom circuits".

Also available in print.

Mode of access: World Wide Web

Description based on PDF viewed 12/21/2015.

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