Effect of Temperature on MEMS Vibratory Rate Gyroscope

D. Keymeulen, C. Peay, K. Yee, D.L. Li
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引用次数: 59

Abstract

We report the temperature dependence of the JPL/Boeing MEMS second generation post resonator gyroscopes and determine the effect of hysteresis over the range 35degC to 65degC. The results indicate a strong linear dependence of the drive frequency and sense frequency with temperature of 0.093Hz/degC and AGC bias voltage with temperature of 13mV/degC. The results also indicate a significant time lag of the gyroscope of these quantities when responding to external temperature variations but determined no hysteresis exists in the drive frequency, sense frequency, and AGC bias. Both the time-frequency and time-bias voltage relationships are of the form y = A+B*exp(-t/T) where A is an offset parameter in Hertz and Volts respectively and B depends on the magnitude of the temperature variation
温度对MEMS振动速率陀螺仪的影响
本文报道了喷气推进实验室/波音MEMS第二代后谐振腔陀螺仪的温度依赖性,并确定了在35℃至65℃范围内的磁滞效应。结果表明,当温度为0.093Hz/℃时,驱动频率和传感频率与温度为13mV/℃时的AGC偏置电压呈较强的线性关系。结果还表明,陀螺仪在响应外部温度变化时存在显著的时间滞后,但在驱动频率、检测频率和AGC偏置中不存在滞后。时间-频率和时间偏置电压关系的形式为y = A+B*exp(-t/T),其中A分别是以赫兹和伏特为单位的偏移参数,B取决于温度变化的幅度
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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