Jarry / Beneat | Advanced Design Techniques and Realizations of Microwave and RF Filters | E-Book | sack.de
E-Book

E-Book, Englisch, Band 1, 376 Seiten, E-Book

Reihe: Wiley - IEEE

Jarry / Beneat Advanced Design Techniques and Realizations of Microwave and RF Filters


1. Auflage 2008
ISBN: 978-0-470-29416-1
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

E-Book, Englisch, Band 1, 376 Seiten, E-Book

Reihe: Wiley - IEEE

ISBN: 978-0-470-29416-1
Verlag: John Wiley & Sons
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



The fundamentals needed to design and realize microwave and RFfilters.
Microwave and RF filters play an important role in communicationsystems and, owing to the proliferation of radar, satellite, andmobile wireless systems, there is a need for design methods thatcan satisfy the ever-increasing demand for accuracy, reliability,and shorter development times.
Beginning with a brief review of scattering and chain matrices,filter approximations and synthesis, waveguides and transmissionlines, and fundamental electromagnetic equations, the book thencovers design techniques for microwave and RF filters operatingacross a frequency range from 1 GHz to 35 GHz.
Each design chapter:
* Is dedicated to only one filter and is organized by the type offilter response
* Provides several design examples, including the analysis andmodeling of the structures discussed and the methodologiesemployed
* Offers practical information on the actual performance of thefilters and common difficulties encountered during construction
* Concludes with the construction technique, pictures of theinside and outside of the filter, and the measured performances
Advanced Design Techniques and Realizations of Microwave and RFFilters is an essential resource for wireless and telecommunicationengineers, as well as for researchers interested in currentmicrowave and RF filter design practices. It is also appropriate asa supplementary textbook for advanced undergraduate courses infilter design.

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Weitere Infos & Material


Foreword.
Preface.
Part I: Microwave Filter Fundamentals.
1. Scattering Parameters and ABCD Matrices.
2. Approximations and Synthesis.
3. Waveguides and Transmission Lines.
4. Categorization of Microwave Filters.
Part II: Minimum-Phase Filters.
5. Capacitive-Gap Filters for Millimeter Waves.
6. Evanescent-Mode Waveguide Filters with DielectricInserts.
7. Interdigital Filters.
8. Combline Filters Implemented In SSS.
Part III: Non-Minimum-Phase Symmetrical ResponseFilters.
9. Generalized Interdigital Filters with Conditions on Amplitudeand Phase.
10. Temperature-Stable Narrowband Monomode TE011Linear-Phase Filters.
Part IV: Non-Minimum-Phase Asymmetrical ResponseFilters.
11. Asymmetrical Capacitive-Gap Coupled Line Filters.
12. Asymmetrical Dual-Mode TE102 / TE301Thick Iris Rectangular In-Line Waveguide Filters with TransmissionZeros.
13. Asymmetrical Cylindrical Dual-Mode Waveguide Filters withTransmission Zeros.
14. Asymmetrical Multimode Rectangular Building Block FiltersUsing Genetic Optimization.
Appendix 1: Lossless Systems.
Appendix 2: Redundant Elements.
Appendix 3: Modal Analysis of Waveguide StepDiscontinuities.
Appendix 4: Trisections with Unity Inverters on the Inside or onthe Outside.
Appendix 5: Reference Fields and Scattering Matrices forMultimodal Rectangular Waveguide Filters.
Index.


Pierre Jarry, PhD, began his research in the area ofmicrowaves at the University of Limoges in France and at DublinUniversity in Ireland. He was later appointed professor at theUniversity of Brest (France), where he created and directed theLaboratory of Electronics and Telecommunication Systems, which isaffiliated with the French National Science Research Center (CNRS).Dr. Jarry now serves as Professor at the University of Bordeaux(France) and the CNRS laboratory IMS (Intégration du Materiauau Système). His research focuses on the areas of microwavefilters, distributed filters, multimode filters, and geneticmicrowave filters, among others.
Jacques Beneat, PhD, is an Assistant Professor at NorwichUniversity in Vermont. His research interests include microwave andfilter design, radio propagation measurements, and modeling foremerging wireless networks.



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