RF CMOS Power Amplifiers: Theory, Design and Implementation

  • Mona Mostafa Hella
  • Mohammed Ismail

Part of the The International Series in Engineering and Computer Science book series (SECS, volume 659)

Table of contents

  1. Front Matter
    Pages i-xvi
  2. Pages 1-12
  3. Pages 87-88
  4. Back Matter
    Pages 89-94

About this book

Introduction

RF CMOS Power Amplifiers: Theory Design and Implementation focuses on the design procedure and the testing issues of CMOS RF power amplifiers.
This is the first monograph addressing RF CMOS power amplifier design for emerging wireless standards. The focus on power amplifiers for short is distance wireless personal and local area networks (PAN and LAN), however the design techniques are also applicable to emerging wide area networks (WAN) infrastructure using micro or pico cell networks. The book discusses CMOS power amplifier design principles and theory and describes the architectures and tardeoffs in designing linear and nonlinear power amplifiers. It then details design examples of RF CMOS power amplifiers for short distance wireless applications (e, g., Bluetooth, WLAN) including designs for multi-standard platforms. Design aspects of RF circuits in deep submicron CMOS are also discussed.
RF CMOS Power Amplifiers: Theory Design and Implementation serves as a reference for RF IC design engineers and RD and R&D managers in industry, and for graduate students conducting research in wireless semiconductor IC design in general and with CMOS technology in particular.

Keywords

Bluetooth CMOS Standard circuit integrated circuit network semiconductor tables testing

Authors and affiliations

  • Mona Mostafa Hella
    • 1
  • Mohammed Ismail
    • 2
  1. 1.RF MicroDevicesBoston
  2. 2.Analog VLSI LaboratoryThe Ohio-State UniversityUSA

Bibliographic information

  • DOI https://doi.org/10.1007/b117692
  • Copyright Information Kluwer Academic Publishers 2002
  • Publisher Name Springer, Boston, MA
  • eBook Packages Springer Book Archive
  • Print ISBN 978-0-7923-7628-6
  • Online ISBN 978-0-306-47320-3
  • Series Print ISSN 0893-3405
  • About this book
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