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3D scanner SHINING 3D OptimScan Q9

3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
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3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
3D scanner SHINING 3D OptimScan Q9
  • Stock: In Stock
  • Product code: 827588000002728409
  • Weight Brutto: 3.50kg
185 100 zł
Ex Tax: 150 488 zł

High-Precision 3D Scanner for Quality Control OptimScan Q9

SHINING 3D OptimScan Q9 is a stationary optical 3D scanner designed for high-precision geometry control, metrological measurements, and 3D digitization of small and medium-sized parts. The device provides accuracy up to 0.005 mm and allows comparing scan results with CAD models. It is actively used in mechanical engineering, automotive, and aviation industries, as well as in mold manufacturing. The scanner is equipped with four 9 MP cameras, supports two scanning ranges with instant switching, and operates based on blue LED illumination.

SHINING 3D OptimScan Q9 during industrial part scanning
SHINING 3D OptimScan Q9: scanning an industrial part for geometry control and 3D digitization.

Advantages of SHINING 3D OptimScan Q9

  • Two scanning ranges. The large one covers 430 × 300 mm, the small one 160 × 110 mm. Switching occurs without manual adjustment of the aperture or focal length. Data from both ranges are easily combined in the software.
  • High object scanning accuracy. In the small range, the accuracy is 0.005 mm, in the large range 0.015 mm. Verification is performed according to VDI/VDE 2634 Part 2 and ISO 10360.
  • Distance between points. In the large range, it is 0.11 mm, in the small range 0.05 mm. This provides sufficient data density for most industrial parts.
  • One-shot time less than 1 second. The built-in dual-chip computing module accelerates shooting and processing.
  • Monocular-Stereo Fusion (MSF) function. Combines monocular and stereo data, improving coverage of complex areas, including corners, joints, and recesses.
  • Multiple exposure modes. Intelligent automatic exposure is available, simplifying work with different types of surfaces.
  • Mounting flexibility. Manual operation, semi-automatic mode with a tripod and turntable, as well as full automation with a robot are possible.

High Accuracy and Structured Light Technology

OptimScan Q9 operates using structured light technology with a blue LED source. The projector overlays grid patterns on the object's surface, and four 9-megapixel cameras capture their distortions. 3D reconstruction algorithms based on the obtained images form an accurate point cloud and reproduce the surface geometry. The Monocular-Stereo Fusion technology allows simultaneous data collection in monocular and stereoscopic configurations. This significantly improves coverage of areas with complex geometry — corners, joints, and deep holes. Accuracy in the small range reaches 0.005 mm. Each system undergoes verification according to VDI/VDE 2634 Part 2 and ISO 10360 in the manufacturer's laboratory accredited to ISO/IEC 17025.

Optical system of SHINING 3D OptimScan Q9
Optical system of OptimScan Q9: design of cameras and optics for high-precision 3D data collection.

Two Scanning Ranges for Different Sized Parts

OptimScan Q9 has two scanning ranges that can be switched without manual adjustment of the aperture and focal length. The large range is 430 × 300 mm, and the small one is 160 × 110 mm.

For the large range, the working distance is 590 mm, and the depth of field is 300 mm. For the small range, these parameters are 210 mm and 60 mm, respectively. This configuration allows adapting the scanner to objects of different sizes and levels of detail without mechanical reconfiguration of the optics. Data obtained in different ranges can be combined in the software, combining wider surface coverage with detailed scanning of individual zones.

Fast Scanning and Intelligent Exposure

The built-in dual-chip computing module accelerates data acquisition and processing. Forming one shot takes less than a second, allowing for the rapid collection of dense arrays of highly detailed points.

The scanner supports multiple exposure modes, including intelligent automatic. The system independently selects shooting parameters depending on the surface characteristics, simplifying work and reducing preparation time.

Automated part inspection with SHINING 3D OptimScan Q9
Automated inspection: integration of OptimScan Q9 with robotic systems for industrial part inspection.

Applications of OptimScan Q9

  • Geometry control of processed parts. Inspection of engine blocks, transmission housings, turbine blades, and brake system components. 3D data are compared with CAD models and analyzed by GD&T.
  • Quality control of stamped and sheet parts. Scanning of wings, body elements, chassis parts. Allows detecting springback, deformations, wrinkles, and cracks.
  • Development and repair of molds and casting molds. Digitization of surfaces for geometry analysis, reverse engineering, and wear assessment.
  • Automated inspection on the production line. Integration with robotic systems for regular control of serial parts, result analysis, and report generation.
  • 3D digitization of industrial objects. Used in automotive, electronics, aviation industries, and mold manufacturing. 3D models are used for reverse engineering, FAI, and geometry compliance verification.
SHINING 3D OptimScan Q9: demonstration of high-precision 3D scanning and scanner capabilities for industrial part geometry control.

Technical Specifications of SHINING 3D OptimScan Q9

Specification Value
Scanner type Optical, structured light
Accuracy 0.015 mm / 0.005 mm
Distance between points 0.11 mm / 0.05 mm
Working distance 590 mm / 210 mm
Depth of field 300 mm / 60 mm
Camera resolution 4 × 9 MP
Light source Blue LED
One-shot time Less than 1 s
Data cable length 5 m
Compatible software SHINING3D Inspect, PolyWorks, Geomagic Control X, EXModel Pro, Geomagic Design X, BlueStar Mapping
Certifications CE, FCC, ROHS, WEEE, KC, FDA, UKCA, IP50, TELEC, TiSAX
Acceptance tests VDI/VDE 2634 Part 2 and ISO 10360 (ISO/IEC 17025 laboratory)
Net dimensions 366 × 162 × 132 mm
Net weight 3.5 kg

Practical Tips for Operation

  • Choose the small range for small elements and high detail, the large one for covering a larger area.
  • For surfaces with varying reflectivity, activate multiple exposure mode or intelligent automatic exposure.
  • For complex geometries with deep holes or corners, enable the MSF function.
  • Compare the obtained data with CAD in SHINING 3D Inspect or compatible metrology software for report generation.

Order SHINING 3D OptimScan Q9

The SHINING 3D OptimScan Q9 3D scanner is a reliable solution for enterprises needing a stationary high-precision tool for geometry control and 3D digitization of industrial parts. Contact us for consultation, configuration selection, and supply conditions clarification.

Key Parameters
Type Automatic (desktop)
Autonomy Wired
Features Metrological
Scan Accuracy (mm) 0.005
Cross-lines (Speed scan) none
Parallel Lines (Detailed scan) none
Deep pockets scan No
VCSEL No
Structured Light Yes
Photogrammetry No
Texture scanning No
Color Scanning No
Warranty Period (months) 12
Certifications CE, FCC, ROHS, WEEE, KC, FDA, UKCA, IP50, TELEC, TiSAX
Export formats OBJ, STL, PLY, ASC, 3MF
Manufacturer Country China
Weight & Dimensions
Dimensions Netto (mm) 366×162×132
Weight Netto (kg) 3.5

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