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Temperature compensated silicon resonators for space applications

机译:用于太空应用的温度补偿硅谐振器

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This paper presents piezoelectric transduction and frequency trimming of silicon-based resonators with a center frequency in the low megahertz regime. The temperature coefficient of frequency (TCF) of the resonators is reduced using both passive and active compensation schemes. Specifically, a novel technique utilizing oxide-refilled trenches is implemented to achieve efficient temperature compensation while maintaining compatibility with wet release processes. Using this method, we demonstrate high-Q resonators having a first-order TCF as low as 3 ppm/℃ and a turnover temperature of around 90 ℃, ideally suited for use in ovenized platforms. Using active tuning, the temperature sensitivity of the resonator is further compensated around the turnover temperature, demonstrating frequency instability of less than 400 ppb. Such devices are ideally suited as timing units in space applications where size, power consumption, and temperature stability are of critical importance.
机译:本文介绍了具有低兆赫兹中心频率的硅基谐振器的压电换能和频率修整。使用无源和有源补偿方案均可降低谐振器的频率温度系数(TCF)。具体而言,实施了一种利用氧化物填充沟槽的新颖技术,以实现有效的温度补偿,同时保持与湿法释放工艺的相容性。使用这种方法,我们演示了具有低至3 ppm /℃的一阶TCF和大约90℃的转换温度的高Q谐振器,非常适合在烤箱平台中使用。使用主动调谐,谐振器的温度灵敏度在周转温度附近得到了进一步补偿,表明频率不稳定性小于400 ppb。这种器件非常适合在空间应用中用作定时单元,在这些应用中,尺寸,功耗和温度稳定性至关重要。

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