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Development of Precise Autofocusing Microscope Based on Reduction of Geometrical Fluctuations

机译:基于降低几何波动的精确自动聚焦显微镜的研制

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In keeping with consumer preferences for ever more high-performance products, a requirement exists for precise autofocusing microscope systems for the inspection processes in mass production lines. Accordingly, a precise autofocusing microscope is proposed based on the reduction of the geometrical fluctuations of a laser light source, in which, the geometrical fluctuations of the laser light source are reduced via an optical diffuser. An autofocusing capability of proposed system is achieved by using position feedback signals from the centroid (x_(centroid), y_(centroid)) of the image of the reflected laser beam captured from a CCD sensor. The experimental results show that the proposed system has a positioning accuracy of 1.5 μm with a working range of ±200 μm. Compared to conventional centroid method, it is shown that our proposed system has improved autofocusing positioning accuracy.
机译:为了与更多的高性能产品保持消费者偏好,需要一种用于精确自动聚焦的显微镜系统,用于大规模生产线的检查过程。因此,基于激光光源的几何波动的降低提出了一种精确的自动聚焦显微镜,其中,通过光学漫射器减小了激光光源的几何波动。通过使用从CCD传感器捕获的反射激光束的图像的质心(X_(质心),Y_(质心))的位置反馈信号来实现所提出的系统的自动聚焦能力。实验结果表明,所提出的系统的定位精度为1.5μm,工作范围为±200μm。与传统的质心方法相比,显示我们所提出的系统改善了自动聚焦定位精度。

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