Title :
The dielectric-filled parabola: a new millimeter/submillimeter wavelength receiver/transmitter front end
Author :
Sigel, P.H. ; Dengler, Robert J.
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
fDate :
1/1/1991 12:00:00 AM
Abstract :
A design is presented for a semi-integrated millimeter/submillimeter wavelength receiver/transmitter front end incorporating a planar antenna and a solid-state device in an efficient feed structure which can be matched directly to high f-number optical systems. The feed system combines the simplicity and robustness of a dielectric substrate lens with the high gain of a parabolic reflector in a single structure that is termed a dielectric-filled parabola. The same fundamental unit can be configured as either a heterodyne or direct detection mode receiver, a power transmitter or a frequency multiplier by changing out the solid-state device and/or the integrated antenna. The structure can also be used with a small integrated antenna array in a multibeam or imaging arrangement. Design and fabrication details for the feed system are given. These are followed by beam pattern and impedance measurements taken on a microwave model when dipole, bow-tie, log-periodic, and log-spiral antennas are used as the integrated feed elements
Keywords :
antenna feeders; broadcast antennas; dielectric-loaded antennas; dipole antennas; microwave antennas; receiving antennas; 4 to 12 GHz; SHF; beam pattern; bow-tie antennas; design; dielectric substrate lens; dielectric-filled parabola; dipole antennas; direct detection mode receiver; feed structure; frequency multiplier; heterodyne receiver; high f-number optical systems; high gain; imaging arrangement; impedance; log-periodic antennas; log-spiral antennas; microwave model; millimeter/submillimeter wavelength receiver/transmitter front end; multibeam arrangement; parabolic reflector; planar antenna; power transmitter; robustness; simplicity; small integrated antenna array; solid-state device; Dielectric substrates; Dipole antennas; Feeds; Millimeter wave devices; Optical design; Optical receivers; Optical transmitters; Planar arrays; Solid state circuits; Submillimeter wave propagation;
Journal_Title :
Antennas and Propagation, IEEE Transactions on