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Design of Power-Efficient Highly Digital Analog-to-Digital Converters for Next-Generation Wireless Communication Systems (Signals and Communication Technology)

Xinpeng Xing

ISBN 10: 3319665642 / ISBN 13: 9783319665641
Editorial: Springer, 2017
Condición: Good Encuadernación de tapa dura
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Título: Design of Power-Efficient Highly Digital ...

Editorial: Springer

Año de publicación: 2017

Encuadernación: Hardcover

Condición del libro: Good

Edición: 1st ed. 2018.

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Sinopsis:

<P>THIS BOOK DISCUSSES BOTH ARCHITECTURE- AND CIRCUIT-LEVEL DESIGN ASPECTS OF VOLTAGE-CONTROLLED-OSCILLATOR (VCO)-BASED ANALOG-TO-DIGITAL CONVERTERS (ADCS), ESPECIALLY FOCUSING ON MITIGATION OF VCO NONLINEARITY AND THE IMPROVEMENT OF POWER EFFICIENCY. IT SHOWS READERS HOW TO DEVELOP POWER-EFFICIENT COMPLEMENTARY-METAL-OXIDE-SEMICONDUCTOR (CMOS) ADCS FOR APPLICATIONS SUCH AS LTE, 802.11N, AND VDSL2+. THE MATERIAL COVERED CAN ALSO BE APPLIED TO OTHER SPECIFICATIONS AND TECHNOLOGIES.</P> <P><I>DESIGN OF POWER-EFFICIENT HIGHLY DIGITAL ANALOG-TO-DIGITAL CONVERTERS FOR NEXT-GENERATION WIRELESS COMMUNICATION SYSTEMS</I> BEGINS WITH A GENERAL INTRODUCTION TO THE APPLICATIONS OF AN ADC IN COMMUNICATIONS SYSTEMS AND THE BASIC CONCEPTS OF VCO-BASED ADCS. THE TEXT ADDRESSES A WIDE RANGE OF CONVERTER ARCHITECTURES INCLUDING OPEN- AND CLOSED-LOOP TECHNOLOGIES. SPECIAL ATTENTION IS PAID TO THE REPLACEMENT OF POWER-HUNGRY ANALOG BLOCKS WITH VCO-BASED CIRCUITS AND TO THE MITIGATION OF VCO NONLINE</P>ARITY. VARIOUS MATLAB<SUP></SUP>/SIMULINK<SUP></SUP> MODELS ARE PROVIDED FOR IMPORTANT CIRCUIT NONIDEALITIES, ALLOWING DESIGNERS AND RESEARCHERS TO DETERMINE THE REQUIRED SPECIFICATIONS FOR THE DIFFERENT BUILDING BLOCKS THAT FORM THE SYSTEMATIC INTEGRATED-CIRCUIT DESIGN PROCEDURE.<P></P> <P>FIVE DIFFERENT VCO-BASED ADC DESIGN EXAMPLES ARE PRESENTED, INTRODUCING INNOVATIONS AT BOTH ARCHITECTURE AND CIRCUIT LEVELS. OF THESE DESIGNS, THE BEST POWER EFFICIENCY OF A HIGH-BANDWIDTH OVERSAMPLING ADC IS ACHIEVED IN A 40 NM CMOS DEMONSTRATION.</P> <P>THIS BOOK IS ESSENTIAL READING MATERIAL FOR ENGINEERS AND RESEARCHERS WORKING ON LOW-POWER-ANALOG AND MIXED-SIGNAL DESIGN AND MAY BE USED BY INSTRUCTORS TEACHING ADVANCED COURSES ON THE SUBJECT. IT PROVIDES A CLEAR OVERVIEW AND COMPARISON OF VCO-BASED ADC ARCHITECTURES AND GIVES THE READER INSIGHT INTO THE MOST IMPORTANT CIRCUIT IMPERFECTIONS.<

Reseña del editor:

This book discusses both architecture- and circuit-level design aspects of voltage-controlled-oscillator (VCO)-based analog-to-digital converters (ADCs), especially focusing on mitigation of VCO nonlinearity and the improvement of power efficiency. It shows readers how to develop power-efficient complementary-metal-oxide-semiconductor (CMOS) ADCs for applications such as LTE, 802.11n, and VDSL2+. The material covered can also be applied to other specifications and technologies.

Design of Power-Efficient Highly Digital Analog-to-Digital Converters for Next-Generation Wireless Communication Systems begins with a general introduction to the applications of an ADC in communications systems and the basic concepts of VCO-based ADCs. The text addresses a wide range of converter architectures including open- and closed-loop technologies. Special attention is paid to the replacement of power-hungry analog blocks with VCO-based circuits and to the mitigation of VCO nonline

arity. Various MATLAB®/Simulink® models are provided for important circuit nonidealities, allowing designers and researchers to determine the required specifications for the different building blocks that form the systematic integrated-circuit design procedure.

Five different VCO-based ADC design examples are presented, introducing innovations at both architecture and circuit levels. Of these designs, the best power efficiency of a high-bandwidth oversampling ADC is achieved in a 40 nm CMOS demonstration.

This book is essential reading material for engineers and researchers working on low-power-analog and mixed-signal design and may be used by instructors teaching advanced courses on the subject. It provides a clear overview and comparison of VCO-based ADC architectures and gives the reader insight into the most important circuit imperfections.

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