Analog Circuit Design Scalable Analog Circuit Design, High Speed D/A Converters, RF Power Amplifiers /

This book contains the revised contributions of the 18 tutorial speakers at the tenth AACD 2001 in Noordwijk, the Netherlands, April 24-26. The conference was organized by Marcel Pelgrom, Philips Research Eindhoven, and Ed van Tuijl, Philips Research Eindhoven and Twente University, Enschede, the Ne...

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Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Huijsing, Johan H. (Editor), Steyaert, Michiel. (Editor), Roermund, Arthur van. (Editor)
Format: Electronic
Language:English
Published: Boston, MA : Springer US, 2002.
Subjects:
Online Access:View fulltext via EzAccess
Table of Contents:
  • Scalable Analog Circuit Design
  • Scalable high-speed analog circuit design
  • Scalable High Resolution Mixed Mode Circuit Design
  • Saclable ỚSHigh VoltagesỚ<U+00fd> Integrated Circuit Design for XDSL Type of Applications
  • Scalability of Wire-Line Analog Front-Ends
  • Reusable IP Analog Circuit Design
  • Process Migration Tools for Analog and Digital Circuits
  • High Speed D/A Converters
  • to High-speed Digital-to-Analog Converter Design
  • Design Considerations for a Retargetable 12b 200MHz CMOS Current-Steering DAC
  • High Speed CMOS DA Converters for Upstream Cable Applications
  • Solving Static and Dynamic Performance Limitations for High Speed D/A Converters
  • High Speed Digital-Analog Converters Ớ The Dynamic Linearity Challenge
  • A 400-MHz, 10-bit Charge Domain CMOS D/A Converter for Low-Spurious Frequency Synthesis
  • RF Power Amplifiers
  • Design Considerations for RF Power Amplifiers demonstrated through a GSM/EDGE Power Amplifier Module
  • Class-E High-Efficiency RF/Microwave Power Amplifiers: Principles of Operation, Design Procedures, and Experimental Verification
  • Linear Transmitter Architectures
  • GaAs Microwave SSPAỚ"s: Design and characteristics
  • Monolithic Transformer-Coupled RF Power Amplifiers in Si-Bipolar
  • Low Voltage PA design in standard CMOS.