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Characterization of dynamic microgyroscopes by use of temporal digital image correlation

机译:动态微陀螺仪的时间数字图像相关性表征

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The advanced mechanical testing of microelectromechanical systems (MEMS) is necessary to provide feedback of measurements that can help the designer optimize MEMS structures and improve the reliability and stability of MEMS. We describe a digital image correlation (DIC) method for dynamic characterization of MEMS using an optical microscope with a high-speed complementary metaloxide semiconductor-based camera. The mechanical performance of a series of microgyroscopes is tested. The DIC method is employed to measure the microgyroscope in-plane displacement with subpixel accuracy. Use of the DIC method is less restrictive on the surface quality of the specimen and simplifies the measurement system. On the basis of a series of temporal digital images grabbed by a high-speed camera, the stability characteristic of the microgyroscopes is analyzed. In addition, the quality factors of the microgyroscopes are determined and agree well with other experimental methods.
机译:微机电系统(MEMS)的先进机械测试对于提供测量反馈是必要的,该反馈可以帮助设计人员优化MEMS结构并提高MEMS的可靠性和稳定性。我们描述了一种数字图像关联(DIC)方法,用于使用光学显微镜和基于高速互补金属氧化物半导体的相机对MEMS进行动态表征。测试了一系列微型陀螺仪的机械性能。 DIC方法用于以子像素精度测量微陀螺仪的面内位移。 DIC方法的使用对样品表面质量的限制较小,并简化了测量系统。基于高速相机拍摄的一系列时间数字图像,分析了微陀螺仪的稳定性。此外,确定了微陀螺仪的质量因子,并与其他实验方法很好地吻合。

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