Design And Realizations Of Miniaturized Fractal Rf And Microwave Filters
商品資訊
ISBN13:9780470487815
出版社:John Wiley & Sons Inc
作者:Jarry
出版日:2009/10/23
裝訂/頁數:精裝/208頁
定價
:NT$ 4938 元優惠價
:90 折 4444 元
若需訂購本書,請電洽客服 02-25006600[分機130、131]。
商品簡介
作者簡介
目次
相關商品
商品簡介
An in-depth survey of the design and REALIZATIONS of miniaturized fractal microwave and RF filters
Engineers are continually searching for design methods that can satisfy the ever-increasing demand for miniaturization, accuracy, reliability, and fast development time. Design and Realizations of Miniaturized Fractal RF and Microwave Filters provides RF and microwave engineers and researchers, advanced graduate students, and wireless and telecommunication engineers with the knowledge and skills to design and realize miniaturized fractal microwave and RF filters. This book is an essential resource for the realization of portable and cellular phones, WiFi, 3G and 4G, and satellite networks.
The text focuses on the synthesis and fabrication of miniaturized fractal filters with symmetrical and asymmetrical frequency characteristics in the C, X and Ku bands, though applications to other frequency bands are considered. Readers will find helpful guidance on:
Miniaturized filters in bilevel fashion
Simplified methods for the synthesis of pseudo-elliptic electrical networks
Methods for extracting coupling coefficients and external quality factors from simulations of the RF/microwave structure
Methods for matching theoretical couplings to couplings of structure
Including studies of the real-world performance of fractal resonators and sensitivity analyses of suspended substrate realizations, this is a definitive resource for both practicing engineers and students who need timely insight on fractal resonators for compact and low-power microwave and RF applications.
Engineers are continually searching for design methods that can satisfy the ever-increasing demand for miniaturization, accuracy, reliability, and fast development time. Design and Realizations of Miniaturized Fractal RF and Microwave Filters provides RF and microwave engineers and researchers, advanced graduate students, and wireless and telecommunication engineers with the knowledge and skills to design and realize miniaturized fractal microwave and RF filters. This book is an essential resource for the realization of portable and cellular phones, WiFi, 3G and 4G, and satellite networks.
The text focuses on the synthesis and fabrication of miniaturized fractal filters with symmetrical and asymmetrical frequency characteristics in the C, X and Ku bands, though applications to other frequency bands are considered. Readers will find helpful guidance on:
Miniaturized filters in bilevel fashion
Simplified methods for the synthesis of pseudo-elliptic electrical networks
Methods for extracting coupling coefficients and external quality factors from simulations of the RF/microwave structure
Methods for matching theoretical couplings to couplings of structure
Including studies of the real-world performance of fractal resonators and sensitivity analyses of suspended substrate realizations, this is a definitive resource for both practicing engineers and students who need timely insight on fractal resonators for compact and low-power microwave and RF applications.
作者簡介
Pierre Jarry graduated from the University of Limoges. As a professor at University of Brest, he directed the Laboratory of Electronics and Telecommunication Systems (LEST), affiliated with the French National Center for Scientific Research (CNRS). He later joined the University of Bordeaux and the CNRS laboratory IMS. He has published 300 technical papers in microwave and RF circuit synthesis, and is a senior member of the IEEE.
Jacques Beneat received his PhD in electrical and computer engineering from Worcester Polytechnic Institute with a focus in advanced microwave structures for satellite communications, and a doctorate degree from the University of Bordeaux with Mention Très Honorable avec Félicitations du Jury. He was a research scientist at the Center for Wireless Information Network Studies at WPI and is currently Associate Professor of Electrical and Computer Engineering at Norwich University.
Pierre Jarry and Jacques Beneat are the authors of the bestselling book Advanced Design Techniques and Realizations of Microwave an RF Filters, published by Wiley-IEEE Press and available also in electronic form.
Jacques Beneat received his PhD in electrical and computer engineering from Worcester Polytechnic Institute with a focus in advanced microwave structures for satellite communications, and a doctorate degree from the University of Bordeaux with Mention Très Honorable avec Félicitations du Jury. He was a research scientist at the Center for Wireless Information Network Studies at WPI and is currently Associate Professor of Electrical and Computer Engineering at Norwich University.
Pierre Jarry and Jacques Beneat are the authors of the bestselling book Advanced Design Techniques and Realizations of Microwave an RF Filters, published by Wiley-IEEE Press and available also in electronic form.
目次
FOREWORD.
PREFACE.
1 MICROWAVE FILTER STRUCTURES.
1.1 Background.
1.2 Cavity Filters.
1.3 Planar Filters.
1.4 Planar Filter Technology.
1.5 Active Filters.
1.6 Superconductivity or HTS Filters.
1.7 Periodic Structure Filters.
1.8 SAW Filters.
1.9 Micromachined Filters.
1.10 Summary.
References.
2 IN-LINE SYNTHESIS OF PSEUDO-ELLIPTIC FILTERS.
2.1 Introduction.
2.2 Approximation and Synthesis.
2.3 Chebyshev Filters.
2.4 Pseudo-elliptic Filters.
2.5 Prototype Synthesis Examples.
2.6 Theoretical Coupling Coefficients and External Quality Factors.
References.
3 SUSPENDED SUBSTRATE STRUCTURE.
3.1 Introduction.
3.2 Suspended Substrate Technology.
3.3 Unloaded Quality Factor of a Suspended Substrate Resonator.
3.4 Coupling Coefficients of Suspended Substrate Resonators.
3.5 Enclosure Design Considerations.
References.
4 MINIATURIZATION OF PLANAR RESONATORS USING FRACTAL ITERATIONS.
4.1 Introduction.
4.2 Miniaturization of Planar Resonators.
4.3 Fractal Iteration Applied to Planar Resonators.
4.4 Minkowski Resonators.
4.5 Hibert Resonators.
References.
5 DESIGN AND REALIZATIONS OF MEANDERED LINE FILTERS.
5.1 Introduction.
5.2 Third-order Pseudo-elliptic Filters with Transmission Zero on the Right.
5.3 Third-order Pseudo-elliptic Filters with Transmission Zero on the Left.
References.
6 DESIGN AND REALIZATIONS OF HILBERT FILTERS.
6.1 Introduction.
6.2 Design of Hilbert Filters.
6.3 Realizations and Measured Performance.
References.
7 DESIGN AND REALIZATION OF DUAL-MODE MINKOWSKI FILTERS.
7.1 Introduction.
7.2 Study of Minkowski Dual-Mode Resonators.
7.3 Design of Fourth-Order Pseudo-elliptic Filters with Two Transmission Zeros.
7.4 Realization and Measured Performance.
References.
APPENDIX 1: Equivalence Between J and K Lowpass Prototypes.
APPENDIX 2: Extraction of the Unloaded Quality Factor of Suspended Substrate Resonators.
INDEX.
PREFACE.
1 MICROWAVE FILTER STRUCTURES.
1.1 Background.
1.2 Cavity Filters.
1.3 Planar Filters.
1.4 Planar Filter Technology.
1.5 Active Filters.
1.6 Superconductivity or HTS Filters.
1.7 Periodic Structure Filters.
1.8 SAW Filters.
1.9 Micromachined Filters.
1.10 Summary.
References.
2 IN-LINE SYNTHESIS OF PSEUDO-ELLIPTIC FILTERS.
2.1 Introduction.
2.2 Approximation and Synthesis.
2.3 Chebyshev Filters.
2.4 Pseudo-elliptic Filters.
2.5 Prototype Synthesis Examples.
2.6 Theoretical Coupling Coefficients and External Quality Factors.
References.
3 SUSPENDED SUBSTRATE STRUCTURE.
3.1 Introduction.
3.2 Suspended Substrate Technology.
3.3 Unloaded Quality Factor of a Suspended Substrate Resonator.
3.4 Coupling Coefficients of Suspended Substrate Resonators.
3.5 Enclosure Design Considerations.
References.
4 MINIATURIZATION OF PLANAR RESONATORS USING FRACTAL ITERATIONS.
4.1 Introduction.
4.2 Miniaturization of Planar Resonators.
4.3 Fractal Iteration Applied to Planar Resonators.
4.4 Minkowski Resonators.
4.5 Hibert Resonators.
References.
5 DESIGN AND REALIZATIONS OF MEANDERED LINE FILTERS.
5.1 Introduction.
5.2 Third-order Pseudo-elliptic Filters with Transmission Zero on the Right.
5.3 Third-order Pseudo-elliptic Filters with Transmission Zero on the Left.
References.
6 DESIGN AND REALIZATIONS OF HILBERT FILTERS.
6.1 Introduction.
6.2 Design of Hilbert Filters.
6.3 Realizations and Measured Performance.
References.
7 DESIGN AND REALIZATION OF DUAL-MODE MINKOWSKI FILTERS.
7.1 Introduction.
7.2 Study of Minkowski Dual-Mode Resonators.
7.3 Design of Fourth-Order Pseudo-elliptic Filters with Two Transmission Zeros.
7.4 Realization and Measured Performance.
References.
APPENDIX 1: Equivalence Between J and K Lowpass Prototypes.
APPENDIX 2: Extraction of the Unloaded Quality Factor of Suspended Substrate Resonators.
INDEX.
主題書展
更多
主題書展
更多書展今日66折
您曾經瀏覽過的商品
購物須知
外文書商品之書封,為出版社提供之樣本。實際出貨商品,以出版社所提供之現有版本為主。部份書籍,因出版社供應狀況特殊,匯率將依實際狀況做調整。
無庫存之商品,在您完成訂單程序之後,將以空運的方式為你下單調貨。為了縮短等待的時間,建議您將外文書與其他商品分開下單,以獲得最快的取貨速度,平均調貨時間為1~2個月。
為了保護您的權益,「三民網路書店」提供會員七日商品鑑賞期(收到商品為起始日)。
若要辦理退貨,請在商品鑑賞期內寄回,且商品必須是全新狀態與完整包裝(商品、附件、發票、隨貨贈品等)否則恕不接受退貨。