Notice bibliographique

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Type(s) de contenu et mode(s) de consultation : Texte noté : électronique

Auteur(s) : Hong, Jia-Sheng  Voir les notices liées en tant qu'auteur

Titre(s) : Microstrip filters for RF/microwave applications [Texte électronique] / Jia-Sheng Hong

Édition : 2nd ed.

Publication : Hoboken, N.J. : Wiley, 2011

Description matérielle : 1 online resource (xvi, 635 pages)

Collection : Wiley series in microwave and optical engineering ; 216


Note(s) : Includes bibliographical references and index. - Print version record.
"The first edition of "Microstrip Filters for RF/Microwave Applications" was published in 2001. Over the years the book has been well received and is used extensively in both academia and industry by microwave researchers and engineers. From its inception as a manuscript the book is almost 8 years old. While the fundamentals of filter circuits have not changed, further innovations in filter realizations and other applications have occurred with changes in the technology and use of new fabrication processes, such as the recent advances in RF MEMS and ferroelectric films for tunable filters; the use of liquid crystal polymer (LCP) substrates for multilayer circuits, as well as the new filters for dual-band, multi-band and ultra wideband (UWB) applications. Although the microstrip filter remains as the main transmission line medium for these new developments, there has been a new trend of using combined planar transmission line structures such as co-planar waveguide (CPW) and slotted ground structures for novel physical implementations beyond the single layer in order to achieve filter miniaturization and better performance. Also, over the years, practitioners have suggested topics that should be added for completeness, or deleted in some cases, as they were not very useful in practice. In view of the above, the authors are proposing a revised version of the "Microstrip Filters for RF/Microwave Applications" text and a slightly changed book title of "Planar Filters for RF/Microwave Applications" to reflect the aforementioned trends in the revised book" ; "The first edition of "Microstrip Filters for RF/Microwave Applications" was published in 2001. Over the years the book has been well received and is used extensively in both academia and industry by microwave researchers and engineers. From its inception as a manuscript the book is almost 8 years old. While the fundamentals of filter circuits have not changed, further innovations in filter realizations and other applications have occurred with changes in the technology and use of new fabrication processes, such as the recent advances in RF MEMS and ferroelectric films for tunable filters; the use of liquid crystal polymer (LCP) substrates for multilayer circuits, as well as the new filters for dual-band, multi-band and ultra wideband (UWB) applications"


Autre(s) auteur(s) : Wiley InterScience (Online service). Fonction indéterminée  Voir les notices liées en tant qu'auteur


Sujet(s) : Circuits pour microondes  Voir les notices liées en tant que sujet
Lignes à bandes  Voir les notices liées en tant que sujet
Filtres électriques  Voir les notices liées en tant que sujet
Ingénierie  Voir les notices liées en tant que sujet

Indice(s) Dewey :  621.381 32 (23e éd.) = Électronique des micro-ondes - Circuits  Voir les notices liées en tant que sujet


Identifiants, prix et caractéristiques : ISBN 9780470937297

Identifiant de la notice  : ark:/12148/cb44649832w

Notice n° :  FRBNF44649832 (notice reprise d'un réservoir extérieur)



Table des matières : Front Matter ; Introduction ; Network Analysis ; Basic Concepts and Theories of Filters ; Transmission Lines and Components ; Lowpass and Bandpass Filters ; Highpass and Bandstop Filters ; Coupled-Resonator Circuits ; CAD for Low-Cost and High-Volume Production ; Advanced RF/Microwave Filters ; Compact Filters and Filter Miniaturization ; Superconducting Filters ; Ultra-Wideband (UWB) Filters ; Tunable and Reconfigurable Filters ; Appendix: Useful Constants and Data ; Index ; Wiley Series in Microwave and Optical Engineering.

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