Logo image
Design of a W-band gyro-TWT amplifier with a lossy ceramic-loaded circuit
Journal article   Peer reviewed

Design of a W-band gyro-TWT amplifier with a lossy ceramic-loaded circuit

Chao Hai Du, Tsun-Hsu Chang, Pu Kun Liu, Yi Chen Huang, Pin Xian Jiang, Shou Xi Xu, Zhi Hui Geng, Bao Liang Hao, Liu Xiao, Gao Feng Liu, …
IEEE Transactions on Electron Devices, Vol.60(7), pp.2388-2394
2013

Abstract

Electron cyclotron maser gyrotron lossy ceramic mode converter traveling-wave amplifier
A pulse prototype of a W-band TE <sub>01</sub> mode gyrotron traveling-wave tube (gyro-TWT) amplifier is designed, and it features high gain and broadband capabilities. The TE <sub>01</sub> mode input coupler is constructed by mounting a sapphire pill-box window onto a Y-type mode converter. The high power output window will employ a triple-sapphire-disc configuration to achieve return loss lower than-30 dB over a bandwidth of 8 GHz. To suppress the spurious oscillations and realize high-average power potential, a new lossy ceramic material with weak electric conductivity is loaded in the TE <sub>01</sub> mode cylindrical interaction waveguide. The loss-free output taper is carefully optimized to suppress oscillations and maintain broadband amplification. Employing a magnetic injection gun of beam voltage 70 kV, beam current 3 A, pitch factor 1.5, and axial-velocity spread 5%, theoretical investigation predicts that the gyro-TWT amplifier is of excellent performance, which includes being driven to saturation with input power Pin<0.4 W, highest efficiency of 32.4%, and the bandwidth of 4.2 GHz with output power exceeding 50 kW. © 1963-2012 IEEE.

Metrics

1 Record Views

Details

Logo image