Title :
A two-dimensional quasi-optical power combining oscillator array with external injection locking
Author :
Magath, Thore ; Höft, Michael ; Judaschke, Rolf
Author_Institution :
Tech. Univ. Hamburg-Harburg, Hamburg, Germany
Abstract :
A quasi-optical power combiner for a 4×4 IMPATT oscillator array has been designed and experimentally investigated. The combiner consists of a bi-periodic dielectric phase grating which transforms the near field of a rectangular horn array into a pseudoplane wave. The horn array is excited by oscillators which operate uniformly in both amplitude and phase. A parabolic mirror with a superimposed surface relief couples the pseudoplane wave into a rectangular output horn antenna. In principle, the combiner has no restriction in inter-element spacing and is hence scalable up to submillimeter wavelengths without degradation of power combining efficiency. The quasi-optical design has been verified by scalar field measurements in several planes. The oscillator matrix is injection-locked by a master oscillator from the output port. A continuous wave output power of 1.3 W with an overall power combining efficiency of 70% has been measured at 65 GHz.
Keywords :
IMPATT oscillators; diffractive optical elements; holographic optical elements; horn antennas; injection locked oscillators; microwave photonics; millimetre wave oscillators; power combiners; 1.3 W; 65 GHz; IMPATT oscillator array; biperiodic dielectric phase grating; continuous wave output power; holography; injection-locked oscillator matrix; near field; parabolic mirror; pseudoplane wave; quasi-optical power combiner; rectangular horn array; rectangular output antenna; scalar field measurements; spatial power combining; superimposed surface relief; two-dimensional oscillator array; Antenna measurements; Degradation; Dielectrics; Gratings; Horn antennas; Injection-locked oscillators; Mirrors; Phased arrays; Power combiners; Surface waves;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2003.821932