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Composite flexural-mode resonator with controllable turnover temperature

机译:具有可控周转温度的复合弯曲模式谐振器

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This paper presents the design and characterization of a flexural mode composite resonator whose inherent frequency sensitivity to temperature changes is reduced. The resonator is an encapsulated single anchor, double ended tuning fork (DETF) composed of single crystal silicon with a silicon dioxide coating. The frequency variation with temperature of the composite resonator exhibits a turnover temperature at which the frequency does not change with temperature. The turnover temperature can be controlled by varying the thickness of the silicon dioxide. This useful characteristic could be combined with active temperature compensation for more precise timing applications. The fabricated devices show a temperature sensitivity that is comparable to a quartz crystal tuning fork resonator.
机译:本文介绍了弯曲模式复合谐振器的设计和表征,其固有频率敏感性对温度变化的变化降低。谐振器是由具有二氧化硅涂层的单晶硅组成的封装的单锚式双端调谐叉(DETF)。复合谐振器的温度的频率变化表现出频率不随温度变化的周转温度。通过改变二氧化硅的厚度,可以控制变换温度。对于更精确的时序应用,可以将这种有用的特性与主动温度补偿相结合。制造的装置显示出与石英晶晶叉谐振器相当的温度灵敏度。

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