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Compact scanning confocal chromatic sensor enabling precision 3-D measurements.

Daniel Wertjanz, Thomas Kern, Ernst Csencsics

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    |October 6, 2021
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    Summary

    A new compact scanning confocal chromatic sensor (SCCS) enables precise 3-D surface measurements for robotics. This system achieves high resolution and frame rates for detailed surface imaging.

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    Area of Science:

    • Optical Engineering
    • Robotics
    • Metrology

    Background:

    • Precision 3-D surface measurement is crucial for robotic applications.
    • Existing sensors may lack the required combination of speed, resolution, and compactness.
    • Confocal chromatic sensing offers high axial resolution but typically requires mechanical scanning.

    Purpose of the Study:

    • To develop and validate a compact and lightweight scanning confocal chromatic sensor (SCCS) for robot-based 3-D surface measurement.
    • To integrate a 2-D fast steering mirror (FSM) with a 1-D confocal chromatic sensor (CCS) for enhanced scanning capabilities.
    • To achieve high-speed, high-resolution 3-D surface reconstruction for arbitrary regions of interest.

    Main Methods:

    • Integrated system design combining a 2-D fast steering mirror (FSM) and a 1-D confocal chromatic sensor (CCS).
    • Data-driven calibration procedure to correlate FSM deflection angles with measured distances for 3-D reconstruction.
    • Application of Lissajous scan trajectories for efficient surface area coverage.
    • Resolution assessment using a calibration standard with defined structures.

    Main Results:

    • The SCCS system successfully provides 3-D surface images at frame rates up to 1 fps.
    • Achieved a measurement volume of 0.35×0.25×1.8 mm³ with the capability to measure arbitrary regions.
    • Determined lateral resolution of 2.5 µm and axial resolution of 76 nm using a calibration standard.

    Conclusions:

    • The developed SCCS is a compact and lightweight solution for robot-based precision 3-D surface measurement.
    • The integrated FSM and CCS design, coupled with data-driven calibration, enables efficient and accurate 3-D surface reconstruction.
    • The sensor's high resolution and frame rate make it suitable for demanding metrology applications in robotics.