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首页> 外文期刊>Electron Device Letters, IEEE >Single-Structure Micromachined Three-Axis Gyroscope With Reduced Drive-Force Coupling
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Single-Structure Micromachined Three-Axis Gyroscope With Reduced Drive-Force Coupling

机译:单结构微机械三轴陀螺仪,降低了驱动力耦合

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摘要

This letter presents a micromachined silicon three-axis gyroscope based on a triple tuning-fork structure utilizing a single vibrating element. The mechanical approach proposed in this letter uses a secondary “auxiliary” mass rather than a major “proof” mass to induce motion in the proof mass frame for Coriolis force coupling to the sense mode. These auxiliary masses reduce the unwanted mechanical coupling of force and motion from the drive mode to the three sense modes. The experimental data show that the bias error due to coupling is reduced by a factor up to 10, and the bias instability of each sense axis is reduced by a factor of up to 3 when the gyroscope is actuated using the auxiliary masses rather than the major masses. The gyroscope exhibits a bias instability of 0.016°/s, 0.004°/s, and 0.043°/s for the -, -, and -sense modes, respectively. Furthermore, initial temperature characterization results show that the gyroscope actuated by the auxiliary masses ensures a better bias instability performance in each sense axis over a temperature range from 10 °C to 50 °C in comparison with the gyroscope actuated by the major masses.
机译:这封信提出了一种微机械加工的硅三轴陀螺仪,该陀螺仪基于利用单个振动元件的三重音叉结构。在这封信中提出的机械方法是使用次要的“辅助”质量而不是主要的“检验”质量来在检验质量框架中引起运动,以使科里奥利力耦合到传感模式。这些辅助质量减少了从驱动模式到三个感应模式的不必要的力和运动机械耦合。实验数据表明,当使用辅助质量而不是主质量驱动陀螺仪时,耦合引起的偏置误差最多可降低10倍,每个感测轴的偏置不稳定性最多可降低3倍。群众。对于-,-和-sense模式,陀螺仪分别表现出0.016°/ s,0.004°/ s和0.043°/ s的偏置不稳定性。此外,初始温度表征结果表明,与由主要质量块驱动的陀螺仪相比,由辅助质量块驱动的陀螺仪可确保在10°C至50°C的温度范围内,每个传感轴上的偏置稳定性更好。

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