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Design and characterization of an all-cryogenic low phase-noise sapphire K-band oscillator for satellite communication

机译:用于卫星通信的全低温低相位噪声蓝宝石K波段振荡器的设计与表征

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An all-cryogenic oscillator consisting of a frequency-tunable sapphire resonator, a high-temperature superconducting filter and a pseudomorphic high electron-mobility transistor amplifier was designed for the K-band frequency range. The high quality factor of the resonator above 1 000 000 and the low amplifier phase noise of approximately -133 dBc/Hz at a frequency offset of 1 kHz from the carrier, gave oscillator phase-noise values superior to quartz-stabilized oscillators at the same carrier frequency for offset frequencies higher than 100 Hz. In addition to low phase noise, the oscillator possesses mechanical and electrical frequency tunability. We have implemented a two-step electrical tuning arrangement consisting of a varactor phase shifter integrated within the amplifier circuit (fine tuning by 5 kHz) and a dielectric plunger moved by a piezomechanical transducer inside the resonator housing (coarse tuning by 50 kHz). This tuning range is sufficient for phase locking and for electronic compensation of temperature drifts occurring during operation of the device employing a miniaturized closed-cycle Stirling-type cryocooler.
机译:针对K波段的频率范围,设计了一种由晶体蓝宝石谐振器,高温超导滤波器和拟态高电子迁移率晶体管放大器组成的全低温振荡器。谐振器的高品质因数高于1000万,并且在距载波1 kHz的频率偏移处具有约-133 dBc / Hz的低放大器相位噪声,从而使振荡器的相位噪声值优于石英稳定振荡器。高于100 Hz的偏移频率的载波频率。除了低相位噪声外,振荡器还具有机械和电气频率可调性。我们实现了两步式电调谐装置,包括集成在放大器电路中的变容二极管移相器(5 kHz的微调)和谐振器外壳内的压电机械换能器移动的介电柱塞(50 kHz的粗调)。该调谐范围对于采用微型闭环斯特林型低温冷却器的设备运行期间的锁相和对温度漂移的电子补偿是足够的。

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