Title :
Narrow-band superconducting hybrid filter for 100kW transmitter of X-band radar application
Author :
Kayano, Hiroyuki ; Kawaguchi, Tamio ; Shiokawa, Noritsugu ; Nakayama, Kohei ; Yamazaki, Mutsuki
Author_Institution :
Corp. R&D Center, Toshiba Corp., Kawasaki, Japan
Abstract :
We have proposed narrow-band transmitting hybrid filter which puts on the output of the 100kW klystron amplifier for X-band radar application. A transmitting hybrid filter consists of superconducting resonators and conventional cavities. Novel hybrid filter structured with two cascade connections of reflection-type cavities, reflection-type superconducting resonators, and open-stub realizes low power concentration in superconducting resonators. Compatibility of the high power handling capability and the sharp skirt feature is possible by this filter. As a result, power handling capability for the hybrid filter was obtained 100 kW. Also, this filter had fractional bandwidth of 0.055%. Given these features, the transmitting signal with low spurious and the high density carrier frequency assignment for next-generation Radar applications is expected to be realized by applying these filters.
Keywords :
carrier density; frequency allocation; klystrons; low-power electronics; radar transmitters; superconducting filters; superconducting resonators; X-band radar application; cascade connections; conventional cavity; density carrier frequency assignment; fractional bandwidth; high power handling capability; klystron amplifier; low power concentration; narrow-band superconducting hybrid filter; narrow-band transmitting hybrid filter; next-generation radar applications; power 100 kW; reflection-type cavity; reflection-type superconducting resonators; sharp skirt feature; transmitter; transmitting signal; Band pass filters; Hybrid power systems; Microwave filters; Resonant frequency; Resonator filters; Superconducting filters; Superconducting microwave devices; Radar applications; Transmitting filter; cavity resonators; superconducting resonators;
Conference_Titel :
Microwave Symposium Digest (MTT), 2011 IEEE MTT-S International
Conference_Location :
Baltimore, MD
Print_ISBN :
978-1-61284-754-2
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2011.5972764