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TEMPERATURE EFFECTS ON THE PERFORMANCE AND RELIABILITY OF MEMS GYROSCOPE SENSORS

机译:温度对MEMS陀螺仪传感器性能和可靠性的影响

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Elevated temperatures can significantly affect the performance and reliability of MEMS gyroscope sensors. A MEMS vibrating resonant gyroscope measures angular velocity via a displacement measurement which can be on the order on nanometers. High sensitivity to small changes in displacement causes the MEMS Gyroscope sensor to be strongly affected by changes in temperature which can affect the displacement of the sensor due to thermal expansion and thermomechanical stresses. Analyzing the effect of temperature on MEMS gyroscope sensor measurements is essential in mission critical high temperature applications, such as inertial tracking of the movement of a fire fighter in a smoke filled indoor environment where GPS tracking is not possible. In this paper, we will discuss the development of a test protocol which was used to assess temperature effects. Both stationary and rotary tests were performed at room and at elevated temperatures on 10 individual single axis MEMS gyroscope sensors.
机译:温度升高会严重影响MEMS陀螺仪传感器的性能和可靠性。 MEMS振动共振陀螺仪通过位移测量来测量角速度,该位移测量可以在纳米量级上。对位移的微小变化的高灵敏度使MEMS陀螺仪传感器受到温度变化的强烈影响,温度变化会由于热膨胀和热机械应力而影响传感器的位移。在任务关键型高温应用中,分析温度对MEMS陀螺仪传感器测量的影响至关重要,例如在无法跟踪GPS的烟雾弥漫的室内环境中,对消防员的动作进行惯性跟踪。在本文中,我们将讨论用于评估温度影响的测试协议的开发。在室内和高温下对10个单独的单轴MEMS陀螺仪传感器进行了固定和旋转测试。

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