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A Tuning Fork Gyroscope with a Polygon-Shaped Vibration Beam

机译:具有多边形振动梁的音叉陀螺仪

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摘要

In this paper, a tuning fork gyroscope with a polygon-shaped vibration beam is proposed. The vibration structure of the gyroscope consists of a polygon-shaped vibration beam, two supporting beams, and four vibration masts. The spindle azimuth of the vibration beam is critical for performance improvement. As the spindle azimuth increases, the proposed vibration structure generates more driving amplitude and reduces the initial capacitance gap, so as to improve the signal-to-noise ratio (SNR) of the gyroscope. However, after taking the driving amplitude and the driving voltage into consideration comprehensively, the optimized spindle azimuth of the vibration beam is designed in an appropriate range. Then, both wet etching and dry etching processes are applied to its manufacture. After that, the fabricated gyroscope is packaged in a vacuum ceramic tube after bonding. Combining automatic gain control and weak capacitance detection technology, the closed-loop control circuit of the drive mode is implemented, and high precision output circuit is achieved for the gyroscope. Finally, the proposed Micro Electro Mechanical Systems (MEMS) gyroscope system demonstrates a bias instability of 0.589°/h, an angular random walk (ARW) of 0.038°/√h, and a bandwidth of greater than 100 Hz in a full scale range of ± 200°/s at room temperature.
机译:本文提出了一种具有多边形振动梁的音叉陀螺仪。陀螺仪的振动结构由多边形振动梁,两个支撑梁和四个振动杆组成。振动梁的主轴方位角对于提高性能至关重要。随着主轴方位角的增加,所提出的振动结构会产生更大的驱动幅度并减小初始电容间隙,从而提高陀螺仪的信噪比(SNR)。但是,在综合考虑驱动振幅和驱动电压之后,将振动梁的最佳主轴方位角设计在适当的范围内。然后,湿法蚀刻和干法蚀刻工艺都应用于其制造。之后,将粘合后的陀螺仪包装在真空陶瓷管中。结合自动增益控制和弱电容检测技术,实现了驱动模式的闭环控制电路,实现了陀螺仪的高精度输出电路。最后,拟议的微机电系统(MEMS)陀螺仪系统在整个量程范围内表现出0.589°/ h的偏置不稳定性,0.038°/√h的角度随机游走(ARW)以及大于100 Hz的带宽在室温下为±200°/ s。

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