Microwave and radio frequency (RF) elements play an important role in communication systems, and, due to the proliferation of radar, satellite and mobile wireless systems, there is a need for the study of electromagnetism. Each of the nine chapters of this book provides a complete analysis and modeling of the microwave structure used for emission or reception technology, providing students with a set of approaches that can be used for current and future RF and microwave circuit designs. The authors emphasize the practical nature of the subject by summarizing the analysis steps and giving…mehr
Microwave and radio frequency (RF) elements play an important role in communication systems, and, due to the proliferation of radar, satellite and mobile wireless systems, there is a need for the study of electromagnetism. Each of the nine chapters of this book provides a complete analysis and modeling of the microwave structure used for emission or reception technology, providing students with a set of approaches that can be used for current and future RF and microwave circuit designs. The authors emphasize the practical nature of the subject by summarizing the analysis steps and giving numerous examples of problems and exercises complete with solutions, making this book theoretical, but also experimental, with over 16 microwave problems. This approach has produced a coherent and practical treatment of the subject. The book has grown out of the authors' own teaching and, as such, has a unity of methodology and style. It provides basic knowledge of microwave and RF range and is intended for microwave engineers and for advanced graduate students.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Pierre Jarry, PhD, is a professor at the University of Bordeaux, France, and also serves the French National Science Research Center (CNRS) laboratory IMS (Intégration du Materiau au Système). Previously he was professor at the University of Brest, Brest, France, where he created and directed the Laboratory of Electronics and Telecommunication Systems, which is affiliated with the CNRS. His research focuses on the areas of microwave filters (localized, distributed, multimode, and genetic), and microwave amplifiers (lumped, distributed and lossy distributed, power, and multi-stage). Jacques N. Beneat, PhD, is Professor of Electrical and Computer Engineering at Norwich University, Vermont, USA. He received his PhD in electrical and computer engineering from Worcester Polytechnic Institute, Massachusetts, USA, with a focus in advanced microwave structures for satellite communications.
Inhaltsangabe
PREFACE xi INTRODUCTION xv PART 1. TRANSMISSION LINES 1 CHAPTER 1. ELECTROMAGNETIC OF TEM TRANSMISSION LINES 3 CHAPTER 2. LOSSES IN TEM TRANSMISSION LINES 23 CHAPTER 3. DETERMINATION OF THE CHARACTERISTICS OF TEM LINES 51 PART 2. GUIDES 77 CHAPTER 4. ELECTROMAGNETIC IN LINEAR, HOMOGENEOUS, ISOTROPIC AND LOSSLESS GUIDES 79 CHAPTER 5. LOSSES IN GUIDES 107 CHAPTER 6. RECTANGULAR TM AND TE GUIDES 123 CHAPTER 7. CIRCULAR TM AND TE GUIDES 151 PART 3. CAVITIES 173 CHAPTER 8. RECTANGULAR TE011 CAVITY 175 CHAPTER 9. CIRCULAR TEmnp AND TMmnp CAVITIES 191 INDEX 201
PREFACE xi INTRODUCTION xv PART 1. TRANSMISSION LINES 1 CHAPTER 1. ELECTROMAGNETIC OF TEM TRANSMISSION LINES 3 CHAPTER 2. LOSSES IN TEM TRANSMISSION LINES 23 CHAPTER 3. DETERMINATION OF THE CHARACTERISTICS OF TEM LINES 51 PART 2. GUIDES 77 CHAPTER 4. ELECTROMAGNETIC IN LINEAR, HOMOGENEOUS, ISOTROPIC AND LOSSLESS GUIDES 79 CHAPTER 5. LOSSES IN GUIDES 107 CHAPTER 6. RECTANGULAR TM AND TE GUIDES 123 CHAPTER 7. CIRCULAR TM AND TE GUIDES 151 PART 3. CAVITIES 173 CHAPTER 8. RECTANGULAR TE011 CAVITY 175 CHAPTER 9. CIRCULAR TEmnp AND TMmnp CAVITIES 191 INDEX 201
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