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Microwave and Millimeter Wave Technologies from Photonic Bandgap Devices to Antenna and Applications
Edited by Igor Minin, ISBN 978-953-7619-66-4, Hard cover, 468 pages, Publisher: InTech, Published: March 01, 2010 under CC BY-NC-SA 3.0 license, in subject Electrical and Electronic Engineering
The book deals with modern developments in microwave and millimeter wave technologies, presenting a wide selection of different topics within this interesting area. From a description of the evolution of technological processes for the design of passive functions in milimetre-wave frequency range, to different applications and different materials evaluation, the book offers an extensive view of the current trends in the field. Hopefully the book will attract more interest in microwave and millimeter wave technologies and simulate new ideas on this fascinating subject.
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Book contents
- Chapter 1Trend on Silicon Technologies for Millimetre-Wave Applications up to 220 GHz
- Chapter 2Integrated Silicon Microwave and Millimeterwave Passive Components and Functions
- Chapter 3Negative Refractive Index Composite Metamaterials for Microwave Technology
- Chapter 4Dielectric Anisotropy of Modern Microwave Substrates
- Chapter 5Application of Meta-Material Concepts
- Chapter 6Microwave Filters
- Chapter 7Reconfigurable Microwave Filters
- Chapter 8Electronically Tunable Ferroelectric Devices for Microwave Applications
- Chapter 9Advanced RF MOSFET´s for Microwave and Millimeter Wave Applications: RF Characterization Issues
- Chapter 10Development of Miniature Microwave Components by Using High Contrast Dielectrics
- Chapter 11Broadband and Planar Microstrip-to-Waveguide Transitions
- Chapter 12Microwave and Millimeter Wave Technologies A New X-Band Mobile Direction Finder
- Chapter 13Characterization Techniques for Materials’ Properties Measurement
- Chapter 14Implementation of the Front-End-Module with a Power Amplifier for Wireless LAN
- Chapter 15Millimeter-Wave Imaging Sensor
- Chapter 16Fractal Antenna Applications
- Chapter 17Analysis and Design of Radome in Millimeter Wave Band
- Chapter 18Design of Dielectric Lens Antennas by Multi-Objective Optimization
- Chapter 19Modelling and Design of Photonic Bandgap Devices: a Microwave Accelerating Cavity for Cancer Hadrontherapy
- Chapter 20Specific Millimeter-Wave Features of Fabry-Perot Resonator for Spectroscopic Measurements
