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60 GHz Range High Gain Printed Antenna Array with a Cylindrical-Parabolic Reflector
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Published/Copyright:
April 1, 2010
Published Online: 2010-04-01
©2011 by Walter de Gruyter GmbH & Co.
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Articles in the same Issue
- Table of Contents
- Physiological signatures reconstructed from a dynamic human model exposed to ultra-wideband microwave signals
- Ultra-Wideband Microwave Rotary Joint Using a Slotted Waveguide Ring
- 60 GHz Range High Gain Printed Antenna Array with a Cylindrical-Parabolic Reflector
- Subwavelength Patch-Antennas Loaded with Metamaterials: A Simple Realisation of the Material and Improved Polarization
- Experimental Results of Maritime Target RCS Fluctuation
- Full Wave Analysis of Normal and Superconducting Microstrip Transmission Lines
- Hybrid Hidden Node Detection Method for IEEE 802.11 Wireless LANs
Articles in the same Issue
- Table of Contents
- Physiological signatures reconstructed from a dynamic human model exposed to ultra-wideband microwave signals
- Ultra-Wideband Microwave Rotary Joint Using a Slotted Waveguide Ring
- 60 GHz Range High Gain Printed Antenna Array with a Cylindrical-Parabolic Reflector
- Subwavelength Patch-Antennas Loaded with Metamaterials: A Simple Realisation of the Material and Improved Polarization
- Experimental Results of Maritime Target RCS Fluctuation
- Full Wave Analysis of Normal and Superconducting Microstrip Transmission Lines
- Hybrid Hidden Node Detection Method for IEEE 802.11 Wireless LANs