Analysis and Design of Quadrature Oscillators

Analysis and Design of Quadrature Oscillators

EnglishHardbackPrint on demand
Oliveira Luis B.
Springer-Verlag New York Inc.
EAN: 9781402085154
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Detailed information

Modern RF receivers and transmitters require quadrature oscillators with accurate quadrature and low phase-noise. Existing literature is dedicated mainly to single oscillators, and is strongly biased towards LC oscillators. This book is devoted to quadrature oscillatorsand presents adetailed comparative study ofLC and RCosc- lators, both at architectural and at circuit levels. It is shown that in cross-coupled RC oscillators both the quadrature error and phase-noise are reduced, whereas in LC - cillators the coupling decreases the quadrature error, but increases the phase-noise. Thus, quadrature RC oscillators can be a practical alternative to LC oscillators, - pecially when area and cost are to be minimized. The main topics of the book are: cross-coupled LC quasi-sinusoidal oscillators, cross-coupled RC relaxation oscillators, a quadrature RC oscillator-mixer, and t- integrator oscillators. The effect of mismatches on the phase-error and the pha- noise are thoroughly investigated. The book includes many experimental results, obtained from different integrated circuit prototypes, in the GHz range. A structured design approach is followed: a technology independent study, with ideal blocks, is performed initially, and then the circuit level design is addressed. This book can be used in advanced courses on RF circuit design. In addition to post-graduate students and lecturers, this book will be of interest to design engineers and researchers in this area.
EAN 9781402085154
ISBN 140208515X
Binding Hardback
Publisher Springer-Verlag New York Inc.
Publication date July 15, 2008
Pages 162
Language English
Dimensions 235 x 156
Country United States
Readership Professional & Scholarly
Authors Fernandes, Jorge R.; Filanovsky Igor M.; Oliveira Luis B.; Silva Manuel M.; Verhoeven, Chris J. M.
Illustrations XIII, 162 p.
Series Analog Circuits and Signal Processing