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Distributed CMOS Bidirectional Amplifiers: Broadbanding and Linearization Techniques: Analog Circuits and Signal Processing

Autor Ziad El-Khatib, Leonard MacEachern, Samy A. Mahmoud
en Limba Engleză Paperback – 11 iun 2014
This book describes methods to design distributed amplifiers useful for performing circuit functions such as duplexing, paraphrase amplification, phase shifting power splitting and power combiner applications.  A CMOS bidirectional distributed amplifier is presented that combines for the first time device-level with circuit-level linearization, suppressing the third-order intermodulation distortion. It is implemented in 0.13um RF CMOS technology for use in highly-linear, low-cost UWB Radio-over-Fiber communication systems.
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Specificații

ISBN-13: 9781489986566
ISBN-10: 1489986561
Pagini: 160
Ilustrații: XXVI, 134 p.
Dimensiuni: 155 x 235 x 8 mm
Greutate: 0.24 kg
Ediția:2012
Editura: Springer
Colecția Springer
Seria Analog Circuits and Signal Processing

Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

Introduction.- Modulation Schemes Effect on RF Power Amplifier Nonlinearity and RFPA Linearization Techniques.- Distributed Amplification Principles and Transconductor Nonlinearity Compensation.- Distributed RF Linearization Circuit Applications.- Linearized CMOS Distributed Bidirectional Amplifier with Cross-Coupled Compensator.- Linearized CMOS Distributed Bidirectional Amplifier Silicon Chip Implementation.- Linearized CMOS Distributed Bidirectional Amplifier Experimental Setups and Chip Measurement Results.- Conclusion.

Textul de pe ultima copertă

This book describes methods to design distributed amplifiers useful for performing circuit functions such as duplexing, paraphrase amplification, phase shifting power splitting and power combiner applications.  A CMOS bidirectional distributed amplifier is presented that combines for the first time device-level with circuit-level linearization, suppressing the third-order intermodulation distortion. It is implemented in 0.13μm RF CMOS technology for use in highly linear, low-cost UWB Radio-over-Fiber communication systems.
  • Describes CMOS distributed amplifiers for optoelectronic applications such as Radio-over-Fiber systems, base station transceivers and picocells;
  • Presents most recent techniques for linearization of CMOS distributed amplifiers;
  • Includes coverage of CMOS I-V transconductors, as well as CMOS on-chip inductor integration and modeling;
  • Includes circuit applications for UWB Radio-over-Fiber networks.

Caracteristici

Describes CMOS distributed amplifiers for optoelectronic applications such as radio over fiber systems, base station transceivers and picocells Presents most recent techniques for linearization of CMOS distributed amplifiers Includes coverage of CMOS I-V transconductors, as well as CMOS on-chip inductor integration and modeling Includes circuit applications for UWB Radio-over-Fiber networks Includes supplementary material: sn.pub/extras