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High-Frequency Oscillator Design for Integrated Transceivers

High-Frequency Oscillator Design for Integrated Transceivers
Kataloginformation
Feldname Details
Vorliegende Sprache eng
Hinweise auf parallele Ausgaben 109929039 Buchausg. u.d.T.: ‡Tang, Johan David van der, 1970 - : High frequency oscillator design for integrated transceivers
ISBN 978-1-4020-7564-3
Name Tang, Johan
Kasperkovitz, Dieter
Name ANZEIGE DER KETTE Kasperkovitz, Dieter
Name Roermund, Arthur H. M. ¬van¬
T I T E L High-Frequency Oscillator Design for Integrated Transceivers
Verlagsort Boston, MA
Verlag Springer US
Erscheinungsjahr 2005
2005
Umfang Online-Ressource (343 p, digital)
Reihe ¬The¬ International Series in Engineering and Computer Science ; 748
Titelhinweis Buchausg. u.d.T.: ‡Tang, Johan David van der, 1970 - : High frequency oscillator design for integrated transceivers
ISBN ISBN 978-0-306-48716-3
Klassifikation TJFC
TEC008010
621.381533
621.3815
TK7888.4
ZN 5490
Kurzbeschreibung This text covers the analysis and design of all high-frequency oscillators required to realize integrated transceivers for wireless and wired applications. Starting with an in-depth review of basic oscillator theory, the authors provide a detailed analysis of many oscillator types and circuit topologies.
2. Kurzbeschreibung High-Frequency Oscillator Design for Integrated Transceivers covers the analysis and design of all high-frequency oscillators required to realize integrated transceivers for wireless and wired applications. This includes the design of oscillator types as single-phase LC oscillators, I/Q LC oscillators, multi-phase LC oscillators, and ring oscillators in various IC technologies such as bipolar, BiCMOS, CMOS, and SOI (silicon on insulator). Starting from an in depth review of basic oscillator theory, the authors discuss key oscillator specifications, numerous oscillator circuit topologies, and introduce the concepts of design figures of merit (FOMs) and benchmark FOMs, which assist the oscillator designer during the overall design cycle. Taking advantage of behavioral modeling, the elementary properties of LC oscillators and ring oscillators are analyzed first. A detailed analysis of oscillator properties at circuit level follows taking parasitic elements and other practical aspects of integrated oscillator design into account. Special attention is given to advantages and limitations of linear time invariant (LTI) phase noise modeling, leading to the concept of optimum coupling in I/Q LC oscillators and a simulation method for fast and efficient phase noise optimization in oscillators. In addition, all modern linear time variant (LTV) phase noise theories are covered. As not only phase noise is of high importance to the designer, but optimization of other oscillator properties as well, additional subjects such as various tuning methods of LC oscillators are analyzed, too. Design examples of integrated LC and ring oscillators in the frequency range of 100 MHz up to 11 GHz are thoroughly discussed throughout the book. The clear and structured discussion of basic oscillator
1. Schlagwortkette Oszillator
Hochfrequenz
Transceiver
ANZEIGE DER KETTE Oszillator -- Hochfrequenz -- Transceiver
SWB-Titel-Idn 264331443
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/b106010
Internetseite / Link Volltext
Siehe auch Cover
Kataloginformation500114011 Datensatzanfang . Kataloginformation500114011 Seitenanfang .
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