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Balanced microwave filters /

This book presents and discusses strategies for the design and implementation of common-mode suppressed balanced microwave filters, including narrowband, wideband, and ultra-wideband filters This book examines differential-mode, or balanced, microwave filters by discussing several implementations of...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Martín, Ferran, 1965- (Editor ), Zhu, Lei, 1963- (Editor ), Hong, Jia-Sheng (Editor ), Medina, Francisco, 1960- (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Hoboken, NJ : John Wiley & Sons, Inc., 2018.
Colección:Wiley series in microwave and optical engineering.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Intro; TITLE PAGE; COPYRIGHT PAGE; CONTENTS; LIST OF CONTRIBUTORS; PREFACE; PART 1 INTRODUCTION; CHAPTER 1 INTRODUCTION TO BALANCED TRANSMISSION LINES, CIRCUITS, AND NETWORKS; 1.1 INTRODUCTION; 1.2 BALANCED VERSUS SINGLE-ENDED TRANSMISSION LINES AND CIRCUITS; 1.3 COMMON-MODE NOISE; 1.4 FUNDAMENTALS OF DIFFERENTIAL TRANSMISSION LINES; 1.4.1 Topology; 1.4.2 Propagating Modes; 1.4.2.1 Even and Odd Mode; 1.4.2.2 Common and Differential Mode; 1.5 SCATTERING PARAMETERS; 1.5.1 Single-Ended S-Parameters; 1.5.2 Mixed-Mode S-Parameters; 1.6 SUMMARY; REFERENCES.
  • PART 2 BALANCED TRANSMISSION LINES WITH COMMON-MODE NOISE SUPPRESSIONCHAPTER 2 STRATEGIES FOR COMMON-MODE SUPPRESSION IN BALANCED LINES; 2.1 INTRODUCTION; 2.2 SELECTIVE MODE SUPPRESSION IN DIFFERENTIAL TRANSMISSION LINES; 2.3 COMMON-MODE SUPPRESSION FILTERS BASED ON PATTERNED GROUND PLANES; 2.3.1 Common-Mode Filter Based on Dumbbell-Shaped Patterned Ground Plane; 2.3.2 Common-Mode Filter Based on Complementary Split Ring Resonators (CSRRs); 2.3.3 Common-Mode Filter Based on Defected Ground Plane Artificial Line; 2.3.4 Common-Mode Filter Based on C-Shaped Patterned Ground Structures.
  • 2.4 COMMON-MODE SUPPRESSION FILTERS BASED ON ELECTROMAGNETIC BANDGAPS (EBGs)2.4.1 Common-Mode Filter Based on Nonuniform Coupled Lines; 2.4.2 Common-Mode Filter Based on Uniplanar Compact Photonic Bandgap (UC-PBG) Structure; 2.5 OTHER APPROACHES FOR COMMON-MODE SUPPRESSION; 2.6 COMPARISON OF COMMON-MODE FILTERS; 2.7 SUMMARY; APPENDIX 2.A: DISPERSION RELATION FOR COMMON-MODE REJECTION FILTERS WITH COUPLED CSRRs OR DS-CSRRs; APPENDIX 2.B: DISPERSION RELATION FOR COMMON-MODE REJECTION FILTERS WITH COUPLED PATCHES GROUNDEDTHROUGH INDUCTIVE STRIPS; REFERENCES.
  • CHAPTER 3 COUPLED-RESONATOR BALANCED BANDPASS FILTERS WITH COMMON-MODE SUPPRESSION DIFFERENTIAL LINES3.1 INTRODUCTION; 3.2 BALANCED COUPLED-RESONATOR FILTERS; 3.2.1 Single-Band Balanced Bandpass Filter Based on Folded Stepped-Impedance Resonators; 3.2.2 Balanced Filter Loaded with Common-Mode Rejection Sections; 3.2.3 Balanced Dual-Band Bandpass Filter Loaded with Common-Mode Rejection Sections; 3.3 SUMMARY; REFERENCES; PART 3 WIDEBAND AND ULTRA-WIDEBAND (UWB) BALANCED BAND PASS FILTERS WITH INTRINSIC COMMON-MODE SUPPRESSION.
  • CHAPTER 4 WIDEBAND AND UWB BALANCED BANDPASS FILTERS BASED ON BRANCH-LINE TOPOLOGY4.1 INTRODUCTION; 4.2 BRANCH-LINE BALANCED WIDEBAND BANDPASS FILTER; 4.3 BALANCED BANDPASS FILTER FOR UWB APPLICATION; 4.4 BALANCED WIDEBAND BANDPASS FILTER WITH GOOD COMMON-MODE SUPPRESSION; 4.5 HIGHLY SELECTIVE BALANCED WIDEBAND BANDPASS FILTERS; 4.6 SUMMARY; REFERENCES; CHAPTER 5 WIDEBAND AND UWB COMMON-MODE SUPPRESSED DIFFERENTIAL-MODE FILTERS BASED ON COUPLED LINE SECTIONS; 5.1 BALANCED UWB FILTER BY COMBINING UWB BPF WITH UWB BSF; 5.2 BALANCED WIDEBAND BANDPASS FILTER USING COUPLED LINE STUBS.