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首页> 外文期刊>Journal of Micromechanics and Microengineering >A lateral-axis micromachined tuning fork gyroscope with torsional Z-sensing and electrostatic force-balanced driving
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A lateral-axis micromachined tuning fork gyroscope with torsional Z-sensing and electrostatic force-balanced driving

机译:具有扭转Z感测和静电力平衡驱动的横轴微机械音叉陀螺仪

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摘要

A single-crystal silicon-based lateral-axis tuning-fork gyroscope (TFG) with electrostatic force-balanced (EFB) driving and torsional z-sensing is presented. The EFB comb drive used in this TFG can efficiently suppress the mechanical coupling in a simple manner. The TFG structure is also optimized to further reduce the coupling. Moreover, the Coriolis acceleration-induced out-of-plane rotation of the sensing mode is detected by using bending springs and differential comb fingers. This z-sensing design has relatively high Q, so this gyroscope can work at atmospheric pressure. This TFG design has been fabricated and tested. Measured in air, the device demonstrates a sensitivity of 2.9 mV/°/s, a full range of 800° s~(-1) with a 0.9% nonlinearity and the noise floor of 0.035°/s/Hz~(1/2). This TFG design also has very low coupling, where the measured drive-to-sense coupling and sense-to-drive coupling are -45 dB and -51 dB, respectively.
机译:提出了一种基于单晶硅的横轴音叉陀螺仪(TFG),其具有静电力平衡(EFB)驱动和扭转z传感功能。该TFG中使用的EFB梳齿驱动器可以通过简单的方式有效地抑制机械耦合。还优化了TFG结构,以进一步减少耦合。此外,通过使用弯曲弹簧和差动梳状指来检测科里奥利加速度引起的感应模式的平面外旋转。这种z感应设计具有较高的Q,因此该陀螺仪可以在大气压下工作。该TFG设计已经过制造和测试。在空气中进行测量时,该器件的灵敏度为2.9 mV /°/ s,整个范围为800°s〜(-1),非线性为0.9%,本底噪声为0.035°/ s / Hz〜(1/2 )。这种TFG设计还具有非常低的耦合,其中测得的驱动到感测耦合和感测到驱动耦合分别为-45 dB和-51 dB。

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