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Low-Cost High-Speed In-Plane Stroboscopic Micro-Motion Analyzer

机译:低成本高速平面频闪微动分析仪

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摘要

Instrumentation for high-speed imaging and laser vibrometry is essential for the understanding and analysis of microstructure dynamics, but commercial instruments are largely unaffordable for most microelectromechanical systems (MEMS) laboratories. We present the implementation of a very low cost in-plane micro motion stroboscopic analyzer that can be directly attached to a conventional probe station. The low-cost analyzer has been used to characterize the harmonic motion of 52.1 kHz resonating comb drive microactuators using ~50 ns pulsed light-emitting diode (LED) stroboscope exposure times, producing sharp and high resolution (~0.5 μm) device images at resonance, which rivals those of several orders of magnitude more expensive systems. This paper details the development of the high-speed stroboscopic imaging system and presents experimental results of motion analysis of example microstructures and a discussion of its operating limits. The system is shown to produce stable stroboscopic LED illumination to freeze device images up to 11 MHz.
机译:高速成像和激光振动测量仪器对于理解和分析微观结构动力学至关重要,但是对于大多数微机电系统(MEMS)实验室而言,商用仪器在很大程度上是买不起的。我们介绍了可直接连接到常规探针台的极低成本平面内微动频闪光谱分析仪的实现。低成本分析仪已被用于表征使用约50 ns脉冲发光二极管(LED)频闪仪曝光时间的52.1 kHz谐振梳状驱动微执行器的谐波运动,可在谐振时产生清晰,高分辨率(〜0.5μm)的设备图像,它可以与价格昂贵的几个数量级的系统相媲美。本文详细介绍了高速频闪成像系统的开发,并提供了示例微结构运动分析的实验结果,并讨论了其工作极限。该系统可产生稳定的频闪LED照明,以冻结高达11 MHz的设备图像。

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