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Sapphire loaded cavity microwave oscillator with improved temperature stability

机译:蓝宝石负载腔微波振荡器,具有改善的温度稳定性

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Poor frequency-temperature stability of sapphire "whispering gallery" resonators (SWGR) is the main drawback of modern ultra-low phase noise room-temperature microwave sources using such resonators. This paper describes a novel dual-mode oscillator temperature control network where an auxiliary RF reference signal is formed by output frequency division. It eliminates the additional RF source and simplifies the oscillator on the whole. The completed temperature stabilizing system looks basically like a familiar noise suppression circuit with the differences that its frequency discriminator operates now at the second SWGR's mode and a control signal governs the temperature. A variable infrared heater is suggested to improve the dynamic characteristics of the temperature control. Estimation shows that in such configuration the fractional frequency instability of the order of 5/spl times/10/sup -13/ for measurement intervals from 1 to some hundred seconds is possible.
机译:蓝宝石“耳语画廊”谐振器(SWGR)的频率温度稳定性差是使用这种谐振器的现代超低相位噪声室温微波源的主要缺点。本文介绍了一种新颖的双模振荡器温度控制网络,其中通过输出分频形成辅助RF参考信号。它消除了额外的RF源,从整体上简化了振荡器。完整的温度稳定系统基本上看起来像是一个熟悉的噪声抑制电路,区别在于其鉴频器现在以第二SWGR模式工作,而控制信号控制温度。建议使用可变红外加热器来改善温度控制的动态特性。估计表明,在这种配置中,对于从1到几百秒的测量间隔,可能出现5 / spl次/ 10 / sup -13 /数量级的频率不稳定性。

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