DocumentCode :
2779621
Title :
Tapered Radial Fed Circuit and Varactor-Mounted Waveguide Switch for Millimeter-Wave Switched Sector-Beam Antenna
Author :
Han, Qing ; Tenno, Nobuyuki ; Miura, Amane ; Ohira, Takashi
Author_Institution :
ATR Wave Eng. Lab., Kyoto
fYear :
2007
fDate :
21-23 March 2007
Firstpage :
295
Lastpage :
298
Abstract :
This paper describes the simulated designs of an improved radial fed circuit and a varactor-mounted waveguide switch, which are expected to play important roles in the realization of a millimeter-wave switched sector-beam antenna. The aim of this antenna´s development is to realize an ultra-high-speed gigabit-rate wireless LAN. In this paper, an eight-sector beam antenna is described. The radial structure is designed so that the input power from a unique RF port at the structure´s center can be sent to any one of the selected sectors with maximum power under the required bandwidth. The simulation results of the proposed tapered radial structure show that the bandwidth of S21, with an insertion loss of -1.0 dB in the frequency range of 59-66 GHz, is 5.4 GHz, which is the three times that achieved in our previous work. Basic study is also carried out on factors such as choke structure, switch position, and the losses caused by the dielectric and metallic materials as well as the parasitic components of the varactor of the proposed waveguide switch
Keywords :
antenna feeds; dielectric materials; millimetre wave antennas; varactors; waveguide components; wireless LAN; -1.0 dB; 5.4 GHz; 59 to 66 GHz; dielectric materials; metallic materials; millimeter-wave switched sector-beam antenna; parasitic components; tapered radial fed circuit; ultra-high-speed gigabit-rate wireless LAN; varactor-mounted waveguide switch; Bandwidth; Circuit simulation; Dielectric losses; Directional antennas; Millimeter wave circuits; Radio frequency; Switches; Switching circuits; UHF antennas; Wireless LAN;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antenna Technology: Small and Smart Antennas Metamaterials and Applications, 2007. IWAT '07. International Workshop on
Conference_Location :
Cambridge
Print_ISBN :
1-4244-1088-6
Electronic_ISBN :
1-4244-1088-6
Type :
conf
DOI :
10.1109/IWAT.2007.370133
Filename :
4227449
Link To Document :
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