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Analog Circuit Design - High-Speed Clock And Data Recovery, High-Performance Amplifiers, Power Management

Book Details
Title Analog Circuit Design: High-Speed Clock and Data Recovery, High-Performance Amplifiers, Power Management
Author(s) Michiel Steyaert, Arthur H.M. van Roermund, Herman Casier
Publisher Springer
Year 2008
Edition 1st Edition
Language English
Pages 370 pages
ISBN 9781402089437
Genre / Domain Engineering, Electronics, Electrical Engineering
Series Analog Circuit Design Series
Size 36.18 MB
Extension PDF

Summary

Analog Circuit Design: High-Speed Clock and Data Recovery, High-Performance Amplifiers, Power Management is the 17th volume in the prestigious Analog Circuit Design series, published by Springer in 2008. Edited by Michiel Steyaert, Arthur H.M. van Roermund, and Herman Casier, this book presents a collection of 18 tutorials delivered at the 17th workshop on Advances in Analog Circuit Design. Each tutorial is authored by leading experts in the field, providing a comprehensive and authoritative overview of three contemporary and critical areas in analog circuit design.

The book is divided into three distinct sections, each addressing a specific topic of modern analog design. The first section focuses on High-Speed Clock and Data Recovery, covering essential concepts for high-speed communication systems, including phase-locked loops (PLLs), jitter, and CDR architectures. The second section delves into High-Performance Amplifiers, exploring operational amplifiers with rail-to-rail input stages, frequency compensation techniques, and ultra-wideband wireless communication receivers. The third and final section addresses Power Management, discussing low-power design, power converters, and efficient power management strategies for integrated circuits.

What makes this book particularly valuable is its practical, tutorial-based approach. Each contribution is designed to share and review state-of-the-art information, presenting innovative design concepts alongside proven methodologies. The chapters are written by practitioners with deep industry and academic experience, ensuring that the content is not only theoretically rigorous but also directly applicable to real-world design challenges. The book serves as both a reference for experienced engineers and a learning tool for those entering the field.

This book is an essential resource for researchers, graduate students, and practicing engineers in the fields of analog and mixed-signal integrated circuit design. It is particularly relevant for those working in high-speed data communication, RF and wireless systems, and power electronics. The depth and breadth of coverage make it suitable for advanced courses in analog circuit design, and the practical insights offered are invaluable for professionals seeking to stay at the forefront of the field.

As a cornerstone of the Analog Circuit Design series, this volume continues the tradition of excellence established by its predecessors. The series has become a definitive reference in the analog design community, known for its high-quality content and its ability to capture the latest advancements. This 17th edition is no exception, providing a timely and comprehensive treatment of topics that are critical to modern electronics.

Key Features

  • Presents 18 tutorials from the 17th workshop on Advances in Analog Circuit Design.
  • Covers three contemporary topics: High-Speed Clock and Data Recovery, High-Performance Amplifiers, and Power Management.
  • Features contributions from leading experts in the field of analog circuit design.
  • Provides state-of-the-art information on high-speed CDR architectures and PLL design.
  • Explores high-performance amplifier design, including rail-to-rail input stages and frequency compensation.
  • Discusses power management techniques for low-power and efficient integrated circuits.
  • Offers practical design insights and methodologies from experienced practitioners.
  • Serves as a valuable reference for researchers, engineers, and graduate students.
  • Part of the prestigious Analog Circuit Design series published by Springer.
  • Includes a comprehensive table of contents with detailed chapter summaries.
  • Features high-quality figures and diagrams to illustrate key concepts.
  • Provides an excellent resource for advanced courses in analog circuit design.

About the Editors

Michiel Steyaert is a Professor at the Katholieke Universiteit Leuven, Belgium. He is a leading researcher in the field of analog and RF integrated circuit design, with a particular focus on high-speed communication and microwave circuits. He has published extensively and has received numerous awards for his contributions to the field.

Arthur H.M. van Roermund is a Professor at the Eindhoven University of Technology, Netherlands. He is an expert in analog and mixed-signal circuit design, with research interests in signal processing, wireless communication, and sensor systems. He has authored and edited several books on analog circuit design.

Herman Casier is a retired senior executive from AMI Semiconductor (now ON Semiconductor), where he was responsible for analog and mixed-signal design centers. He has over 30 years of experience in the semiconductor industry and has contributed to numerous publications on analog circuit design.

Related Books

  • Analog Circuit Design: High-Speed ADCs, DACs, and High-Performance Amplifiers — Michiel Steyaert, Arthur H.M. van Roermund, Herman Casier
  • CMOS Circuit Design, Layout, and Simulation — R. Jacob Baker
  • Design of Analog CMOS Integrated Circuits — Behzad Razavi
  • Analog Integrated Circuit Design — David A. Johns, Ken Martin
  • Analysis and Design of Analog Integrated Circuits — Paul R. Gray, Paul J. Hurst, Stephen H. Lewis, Robert G. Meyer
  • Phase-Locked Loops: Design, Simulation, and Applications — Roland E. Best

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Frequently Asked Questions

Q : What is the main focus of this book?

R : This book covers three contemporary topics in analog circuit design: High-Speed Clock and Data Recovery, High-Performance Amplifiers, and Power Management. It presents 18 tutorials from the 17th workshop on Advances in Analog Circuit Design.

Q : Who are the editors and what are their credentials?

R : The editors are Michiel Steyaert (Professor at KU Leuven), Arthur H.M. van Roermund (Professor at Eindhoven University of Technology), and Herman Casier (retired senior executive from AMI Semiconductor). They are all leading experts in analog circuit design with extensive research and industry experience.

Q : What topics are covered in each section of the book?

R : The first section covers High-Speed Clock and Data Recovery, including PLLs and CDR architectures. The second section addresses High-Performance Amplifiers, including rail-to-rail input stages and frequency compensation. The third section focuses on Power Management, discussing low-power design and power converters.

Q : Is this book suitable for graduate students?

R : Yes, this book is an excellent resource for graduate students in electrical engineering, particularly those specializing in analog and mixed-signal integrated circuit design. The tutorial-style chapters provide both theoretical foundations and practical design insights.

Q : What is the series and edition of this book?

R : This is the 17th volume in the successful Analog Circuit Design series, published by Springer in 2008.

Q : How does this book differ from other analog circuit design texts?

R : This book is unique in that it presents state-of-the-art tutorials from leading experts in the field. Each chapter is a self-contained treatment of a specific topic, providing both an overview and detailed design methodologies. The focus on contemporary topics makes it particularly relevant for current research and development.

Q : Is this book useful for practicing engineers?

R : Absolutely. The practical design insights and methodologies presented in this book are directly applicable to real-world engineering challenges. It serves as an excellent reference for engineers working in high-speed communication, RF/wireless systems, and power electronics.

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