CCL-5020 Line Confocal 3D Measurement Sensor
CCL-5020 Line Confocal 3D Measurement Sensor
CCL-5020 Line Confocal 3D Measurement Sensor
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  • CCL-5020 Line Confocal 3D Measurement Sensor
  • CCL-5020 Line Confocal 3D Measurement Sensor
  • CCL-5020 Line Confocal 3D Measurement Sensor

CCL-5020 Line Confocal 3D Measurement Sensor

Specifically designed to reliably measure surfaces that traditional laser 3D sensors—such as transparent/semi-transparent, highly reflective, or mirror-like surfaces—cannot handle with stability. Breaking industry limitations, it offers a wider field of view, faster speed, and enhanced measurement capabilities!

Keywords:

Detailed

  • High precision, high resolution
  • Specifically designed to reliably measure surfaces that traditional laser 3D sensors—such as transparent/semi-transparent, highly reflective, or mirror-like surfaces—cannot stabilize.
  • Break through industry limitations, broaden your horizons, accelerate your pace, and enhance your measurement capabilities!

Principle

The light source emits a high-energy, broad-spectrum white light that, when passed through an apochromatic lens, forms an ultrafine, strip-shaped measurement spot. As this measurement spot reflects off different locations on the surface of the object being measured, it returns light at different wavelengths. The reflected light is then directed to a spectroscopic receiving system via a dispersive prism. After filtering, the spectroscopic receiving system focuses the light onto a CMOS sensor, which rapidly processes the signal and outputs the Z-axis profile height value of the measured sample.

More accurate high-resolution measurement feedback; ultra-high-resolution surface profile measurement.

A specially designed color laser source combined with slit-filtering devices fabricated using semiconductor technology—this combination achieves an extremely small measurement spot with exceptionally high energy. Moreover, the scanning line is a genuine, continuous beam of light, rather than a line assembled from discrete points as in similar products. While maintaining a length of 4.3 mm in the X-direction, the width in the Y-direction is only 7 μm. By employing an apochromatic lens, it is possible to obtain surface grayscale measurements with ultra-high resolution. By superimposing high-precision surface height measurements with high-resolution surface grayscale measurements, we can achieve ultra-high-resolution surface profile measurements.

Ultra-high-speed, high-precision online measurement

A special CMOS sensor employing ROCC technology (Rapid On-Chip Computing) boasts an image-processing capability of up to 15.4 billion pixels per second, enabling a 3D scanning speed of 7,000 profiles per second in full-frame mode. The maximum scanning speed can reach as high as 64,000 profiles per second.

Parameter Table

Model CCL-5010CCL-5020CCL-5030CCL-5040CCL-5110
Points / Contour line 19281928183218322000
Working distance (mm) 11.511.5101036.5
Z Direction range (mm) 0.770.81.31.33
X X Direction measurement range (mm) 2.23.234.312
X X Directional resolution (µm) 1.21.71.62.46.2
And Y Directional resolution (µm) 22.52.53.57.5
Z-axis accuracy (µm) 0.10.10.30.51
Z Directional resolution (µm) 0.010.010.030.050.2
Angular characteristics (°) ±45° ±45° ±33.5° ±33.5° ±27°
Measurement speed (full-scale range) 0.5kHz-7kHz
Fastest measurement speed 64kHz
Output interface GigE Gigabit Ethernet
Input interface Encoder, Trigger

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Update time:

2024-12-20

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Update time:

2024-12-17

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Update time:

2024-04-22

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Update time:

2022-06-14

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