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Efficient operation of a high-power<i>X</i>-band gyroklystron
61
Citations
12
References
1991
Year
Methanol CalorimetryElectrical EngineeringEngineeringRadio FrequencyPhysicsHigh-frequency DeviceExperimental StudiesRf SemiconductorApplied PhysicsTwo-cavity X-band GyroklystronInstrumentationEfficient OperationMicroelectronicsMicrowave EngineeringRf SubsystemElectromagnetic Compatibility
Experimental studies of amplification in a two-cavity X-band gyroklystron are reported. The system utilizes a thermionic magnetron injection gun at voltages up to 440 kV and currents up to 190 A in 1-\ensuremath{\mu}s pulses. Optimum performance is achieved by tapering the magnetic-field profile. Peak powers of 20 MW in the ${\mathrm{TE}}_{01}$ mode at 9.87 GHz are measured with calibrated crystals and with methanol calorimetry. Resultant efficiencies are in excess of 31% and large-signal gains surpass 26 dB. The experimental results are in good agreement with simulated results from a partially self-consistent, nonlinear, steady-state code.
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