Title :
A broadband planar antenna employing waveguide parallel feed circuit
Author :
Yoshiki, K. ; Fujii, Y. ; Egashira, S.
Author_Institution :
Matsushita Electr. Works Ltd., Osaka, Japan
Abstract :
Planar antennas with a relatively high gain of about 30 dBi have drawn increasing attention due to their ease of installation and aesthetical appearance. The planar antenna comprises of multiple radiators arrayed on a plane. They are roughly classified by the feed method into a series feed type and a parallel feed type. The series feed planar antennas have a simple feed circuit construction. The parallel feed planar antennas mostly use strip lines to constitute a parallel feed circuit. This type of construction has made it possible to realize a very thin antenna for X-band. However, the strip lines, use a dielectric, which provides large dielectric and radiating losses, so they are not suitable to large-scale array structures required at the higher frequency bands. Similarly, they are not suitable for high-power applications, such as transmission antennas, either. We investigate a highly efficient, broadband planar antenna that uses low loss rectangular waveguides with a parallel feed circuit. The antenna is thus compatible with a large array structure while having a high manufacturability and wideband impedance characteristics.
Keywords :
antenna feeds; electric impedance; microwave antenna arrays; rectangular waveguides; 30 dB; X-band antenna; broadband planar antenna; high gain; high-power applications; low loss rectangular waveguides; multiple radiators; parallel feed planar antennas; transmission antennas; waveguide parallel feed circuit; wideband impedance characteristics; Antenna arrays; Broadband antennas; Circuits; Dielectric losses; Feeds; Frequency; Large-scale systems; Planar arrays; Planar waveguides; Transmitting antennas;
Conference_Titel :
Antennas and Propagation Society International Symposium, 1994. AP-S. Digest
Conference_Location :
Seattle, WA, USA
Print_ISBN :
0-7803-2009-3
DOI :
10.1109/APS.1994.408174