Semiconductor Devices for High-Speed Optoeletronics

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Semiconductor Devices for High-Speed Optoelectronics
Providing an all-inclusive treatment of electronic and optoelectronic devices used in
high-speed optical communication systems, this book emphasizes circuit applications,
advanced device design solutions, and noise in sources and receivers. Core topics covered include semiconductors and semiconductor optical properties, high-speed circuits
and transistors, detectors, sources, and modulators. It discusses in detail both active
devices (heterostructure field-effect and bipolar transistors) and passive components
(lumped and distributed) for high-speed electronic integrated circuits. It also describes
recent advances in high-speed devices for 40 Gbps systems. Introductory elements are
provided, making the book open to readers without a specific background in optoelectronics, whilst end-of-chapter review questions and numerical problems enable readers
to test their understanding and experiment with realistic data.
Giovanni Ghione is Full Professor of Electronics at Politecnico di Torino, Torino, Italy.
His current research activity involves the physics-based and circuit-oriented modeling
of high-speed electronic and optoelectronic components, with particular attention to
III-N power devices, thermal and noise simulation, electrooptic and electroabsorption
modulators, coplanar passive components, and integrated circuits. He is a Fellow of the
IEEE and has authored or co-authored over 200 technical papers and four books.

Semiconductor Devices
for High-Speed Optoelectronics
Politecnico di Torino, Italy


Cambridge, New York, Melbourne, Madrid, Cape Town, Singapore,
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Cambridge University Press
The Edinburgh Building, Cambridge CB2 8RU, UK
Published in the United States of America by Cambridge University Press, New York

Information on this title: 
© Cambridge University Press 2009

This publication is in copyright. Subject to statutory exception and to the
provision of relevant collective licensing agreements, no reproduction of any part
may take place without the written permission of Cambridge University Press.
First published in print format 2009


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