Microwave Integrated Circuit Components Design through MATLAB®
Autor S Raghavanen Limba Engleză Paperback – 30 iun 2021
This book teaches the student community microwave integrated circuit component design through MATLAB®, helping the reader to become conversant in using codes and, thereafter, commercial software for verification purposes only. Microwave circuit theory and its comparisons, transmission line networks, S-parameters, ABCD parameters, basic design parameters of planar transmission lines (striplines, microstrips, slot lines, coplanar waveguides, finlines), filter theory, Smith chart, inverted Smith chart, stability circles, noise figure circles and microwave components, are thoroughly explained in the book. The chapters are planned in such a way that readers get a thorough understanding to ensure expertise in design. Aimed at senior undergraduates, graduates and researchers in electrical engineering, electromagnetics, microwave circuit design and communications engineering, this book:
• Explains basic tools for design and analysis of microwave circuits such as the Smith chart and network parameters
• Gives the advantage of realizing the output without wiring the circuit by simulating through MATLAB code
• Compares distributed theory with network theory
• Includes microwave components, filters and amplifiers
S. Raghavan was a Senior Professor (HAG) in the Department of Electronics and Communication Engineering, National Institute of Technology (NIT), Trichy, India and has 39 years of teaching and research experience at the Institute. His interests include: microwave integrated circuits, RF MEMS, Bio MEMS, metamaterial, frequency selective surfaces (FSS), substrate integrated waveguides (SIW), biomedical engineering and microwave engineering. He has established state-of-the-art MICs and microwave research laboratories at NIT, Trichy with funding from the Indian government. He is a Fellow/Senior Member in more than 24 professional societies including: IEEE (MTT, EMBS, APS), IETE, IEI, CSI, TSI, ISSS, ILA and ISOI. He is twice a recipient of the Best Teacher Award, and has received the Life Time Achievement Award, Distinguished Professor of Microwave Integrated Circuit Award and Best Researcher Award.
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Specificații
ISBN-13: 9781032084992
ISBN-10: 1032084995
Pagini: 216
Ilustrații: 94 Illustrations, black and white
Dimensiuni: 156 x 234 x 12 mm
Greutate: 0.32 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
ISBN-10: 1032084995
Pagini: 216
Ilustrații: 94 Illustrations, black and white
Dimensiuni: 156 x 234 x 12 mm
Greutate: 0.32 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
Cuprins
Foreword. Ten Commandments for Microwaves. 1. Transmission Line Networks 2. Planar Transmission Lines 3. Microwave Components (MICs) 4. Microwave Filters 5. Microwave Amplifiers 6. Smith Chart Appendix
Notă biografică
S. Raghavan was a Senior Professor (HAG) in the Department of Electronics and Communication Engineering, National Institute of Technology (NIT), Trichy, India and has 39 years of teaching and research experience at the Institute. His interests include: microwave integrated circuits, RF MEMS, Bio MEMS, metamaterial, frequency selective surfaces (FSS), substrate integrated waveguides (SIW), biomedical engineering and microwave engineering. He has established state-of-the-art MICs and microwave research laboratories at NIT, Trichy with funding from the Indian government. He is a Fellow/Senior Member in more than 24 professional societies including: IEEE (MTT, EMBS, APS), IETE, IEI, CSI, TSI, ISSS, ILA and ISOI. He is twice a recipient of the Best Teacher Award, and has received the Life Time Achievement Award, Distinguished Professor of Microwave Integrated Circuit Award and Best Researcher Award.
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Descriere
This book is aimed at design of microwave integrated circuit components using MATLAB, essentially covering microwave circuit theory, transmission line network, S-parameters, ABCD parameters, basic design parameters of planar transmission line, filter theory, Smith/Inverted Smith chart, stability circles, noise figure circles, and rat-race couplers.