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Z-Axis Micromachined Tuning Fork Gyroscope with Low Air Damping

机译:Z轴微机械音叉陀螺仪,低空气阻尼

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This paper reports on the design and fabrication of a z-axis tuning fork gyroscope which has a freestanding architecture. In order to improve the performance of the tuning fork gyroscope by eliminating the influence of the squeeze-film air damping, the driving and sensing parts of the gyroscope were designed to oscillate in-plane. Furthermore, by removing the substrate underneath the device, the slide-?ˉ????lm air damping in the gap between the proof masses and the substrate was eliminated. The proposed architecture was analyzed by the finite element method using ANSYS software. The simulated frequencies of the driving and sensing modes were 9.788 and 9.761 kHz, respectively. The gyroscope was fabricated using bulk micromachining technology. The quality factor and sensitivity of the gyroscope operating in atmospheric conditions were measured to be 111.2 and 11.56 mV/???°/s, respectively.
机译:本文报道了具有独立架构的z轴音叉陀螺仪的设计和制造。为了通过消除挤压膜空气阻尼的影响来提高音叉陀螺仪的性能,将陀螺仪的驱动和传感部件设计为在平面内振荡。此外,通过移去装置下方的基板,消除了在测试质量块与基板之间的间隙中的滑动薄膜空气。使用ANSYS软件通过有限元方法对所提出的体系结构进行了分析。驱动模式和感测模式的仿真频率分别为9.788和9.761 kHz。陀螺仪是使用本体微加工技术制造的。在大气条件下运行的陀螺仪的品质因数和灵敏度分别测得为111.2和11.56 mV /Δ°/ s。

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