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Microwave engineering / David M. Pozar
Titre : Microwave engineering Type de document : texte imprimé Auteurs : David M. Pozar Mention d'édition : 3rd ed. Editeur : Hoboken, NJ : John Wiley Année de publication : 2005 Importance : xvii, 700 p. Format : 27 cm ISBN/ISSN/EAN : 047164451x Note générale : Éditeur : John Wiley & Sons; 3rd Edition (27 janvier 2004)
Langue : Anglais
Relié : 720 pages
ISBN-10 : 0471448788
ISBN-13 : 978-0471448785
Poids de l'article : 1.18 kg
Dimensions : 18.5 x 2.95 x 25.3 cmMots-clés : Microwave transmission impedance matching power divider oscillators mixers Index. décimale : 537 Résumé : Focusing on the design of microwave circuits and components, this valuable reference offers professionals and students an introduction to the fundamental concepts necessary for real world design. The author successfully introduces Maxwell's equations, wave propagation, network analysis, and design principles as applied to modern microwave engineering. A considerable amount of material in this book is related to the design of specific microwave circuits and components, for both practical and motivational value. It also presents the analysis and logic behind these designs so that the reader can see and understand the process of applying the fundamental concepts to arrive at useful results. The derivations are well laid out and the majority of each chapter's formulas are displayed in a nice tabular format every few pages. This Third Edition offers greatly expanded coverage with new material on: Noise; Nonlinear effects; RF MEMs; transistor power amplifiers; FET mixers; oscillator phase noise; transistor oscillators and frequency multiplier.
« MoinsMicrowave engineering [texte imprimé] / David M. Pozar . - 3rd ed. . - Hoboken, NJ : John Wiley, 2005 . - xvii, 700 p. ; 27 cm.
ISSN : 047164451x
Éditeur : John Wiley & Sons; 3rd Edition (27 janvier 2004)
Langue : Anglais
Relié : 720 pages
ISBN-10 : 0471448788
ISBN-13 : 978-0471448785
Poids de l'article : 1.18 kg
Dimensions : 18.5 x 2.95 x 25.3 cm
Mots-clés : Microwave transmission impedance matching power divider oscillators mixers Index. décimale : 537 Résumé : Focusing on the design of microwave circuits and components, this valuable reference offers professionals and students an introduction to the fundamental concepts necessary for real world design. The author successfully introduces Maxwell's equations, wave propagation, network analysis, and design principles as applied to modern microwave engineering. A considerable amount of material in this book is related to the design of specific microwave circuits and components, for both practical and motivational value. It also presents the analysis and logic behind these designs so that the reader can see and understand the process of applying the fundamental concepts to arrive at useful results. The derivations are well laid out and the majority of each chapter's formulas are displayed in a nice tabular format every few pages. This Third Edition offers greatly expanded coverage with new material on: Noise; Nonlinear effects; RF MEMs; transistor power amplifiers; FET mixers; oscillator phase noise; transistor oscillators and frequency multiplier.
« MoinsExemplaires (1)
Code-barres Cote Support Localisation Section Disponibilité ST83 537/33.1 Ouvrage Faculté des Sciences et de la Technologie 500 - Sciences de la nature et Mathématiques Exclu du prêt Optoelectronic integrated circuit design and device modeling / Jianjun Gao
Titre : Optoelectronic integrated circuit design and device modeling Type de document : texte imprimé Auteurs : Jianjun Gao Editeur : Wiley Année de publication : 2011 Importance : xvi, 292 p. Présentation : ill. Format : 25*18 cm ISBN/ISSN/EAN : 978-0-470-82734-5 Langues : Français (fre) Mots-clés : Optoelectronic integrated circuit design and device modeling optical communication system basic concept of semiconductor laser diodes atom energy modulation distortion equations frequency modeling and parameter microwave high-speed transimpedance Index. décimale : 621.38 Résumé : In Optoelectronic Integrated Circuit Design and DeviceModeling, Professor Jianjun Gao introduces the fundamentals andmodeling techniques of optoelectronic devices used in high–speedoptical transmission systems. Gao covers electronic circuitelements such as FET, HBT, MOSFET, as well as design techniques foradvanced optical transmitter and receiver front–end circuits. Thebook includes an overview of optical communication systems andcomputer–aided optoelectronic IC design before going over the basicconcept of laser diodes. This is followed by modeling and parameterextraction techniques of lasers and photodiodes. Gao covershigh–speed electronic semiconductor devices, optical transmitterdesign, and optical receiver design in the final three chapters. Addresses a gap within the rapidly growing area of transmitterand receiver modeling in OEICs Explains diode physics before device modeling, helping readersunderstand their equivalent circuit models Provides comprehensive explanations for E/O and O/E conversionsdone with laser and photodiodes Covers an extensive range of devices for high–speedapplications Accessible for students new to microwaves Presentation slides available for instructor use This book is primarily aimed at practicing engineers,researchers, and post–graduates in the areas of RF, microwaves, ICdesign, photonics and lasers, and solid state devices. The book isalso a strong supplement for senior undergraduates taking coursesin RF and microwaves. Lecture materials for instructors available at www.wiley.com/go/gao Note de contenu : Poids de l'article : 692 g
Relié : 312 pages
ISBN-10 : 9780470827345
Dimensions : 17.27 x 2.24 x 25.15 cm
ISBN-13 : 978-0470827345
Éditeur : Wiley–Blackwell (11 février 2011)
ASIN : 0470827343
Langue : : AnglaisOptoelectronic integrated circuit design and device modeling [texte imprimé] / Jianjun Gao . - [S.l.] : Wiley, 2011 . - xvi, 292 p. : ill. ; 25*18 cm.
ISBN : 978-0-470-82734-5
Langues : Français (fre)
Mots-clés : Optoelectronic integrated circuit design and device modeling optical communication system basic concept of semiconductor laser diodes atom energy modulation distortion equations frequency modeling and parameter microwave high-speed transimpedance Index. décimale : 621.38 Résumé : In Optoelectronic Integrated Circuit Design and DeviceModeling, Professor Jianjun Gao introduces the fundamentals andmodeling techniques of optoelectronic devices used in high–speedoptical transmission systems. Gao covers electronic circuitelements such as FET, HBT, MOSFET, as well as design techniques foradvanced optical transmitter and receiver front–end circuits. Thebook includes an overview of optical communication systems andcomputer–aided optoelectronic IC design before going over the basicconcept of laser diodes. This is followed by modeling and parameterextraction techniques of lasers and photodiodes. Gao covershigh–speed electronic semiconductor devices, optical transmitterdesign, and optical receiver design in the final three chapters. Addresses a gap within the rapidly growing area of transmitterand receiver modeling in OEICs Explains diode physics before device modeling, helping readersunderstand their equivalent circuit models Provides comprehensive explanations for E/O and O/E conversionsdone with laser and photodiodes Covers an extensive range of devices for high–speedapplications Accessible for students new to microwaves Presentation slides available for instructor use This book is primarily aimed at practicing engineers,researchers, and post–graduates in the areas of RF, microwaves, ICdesign, photonics and lasers, and solid state devices. The book isalso a strong supplement for senior undergraduates taking coursesin RF and microwaves. Lecture materials for instructors available at www.wiley.com/go/gao Note de contenu : Poids de l'article : 692 g
Relié : 312 pages
ISBN-10 : 9780470827345
Dimensions : 17.27 x 2.24 x 25.15 cm
ISBN-13 : 978-0470827345
Éditeur : Wiley–Blackwell (11 février 2011)
ASIN : 0470827343
Langue : : AnglaisExemplaires (1)
Code-barres Cote Support Localisation Section Disponibilité ST5924 621.38/231.1 Ouvrage Faculté des Sciences et de la Technologie 600 - Technologie (Sciences appliquées) Exclu du prêt