FAQs
Q:
How to Ensure High-Speed Point Cloud 3D Reconstruction During Scanning with 3DeVOK device?
A:

The dual black-and-white cameras are mounted at a specific angle to each other, and the optimal scanning angle occurs when both cameras can detect the target object at near-vertical incidence angles. Point B yields the highest point cloud density, while points A and C produce the sparsest data. For challenging areas or dead zones, the scanner can be re-positioned to ensure simultaneous object visibility by both cameras.

For optimal scanning results, maintain a working distance between 200mm and 400mm to achieve the highest point cloud quality and finest detail resolution.

- Optimal scanning distance of Infrared Structured Light Scan: 300 mm

- Optimal scanning distance of Infrared Laser: 300 mm

- Optimal scanning distance of Blue Laser: 210 mm

Q:
What is the mechanism of hybrid alignment of 3DeVOK MT/MQ?
A:

This advanced mode enables simultaneous recognition of:

  • Geometric features (surface contours/edges)
  • Texture features (natural patterns)
  • Markers (when applied)

The hybrid alignment mode improves scanning performance through:

  • Enhanced alignment accuracy 
  • Reduced marker dependency (enabling scans with: Zero markers for textured objects and 3-5 markers for low-feature surfaces)
Q:
What is distinction between Laser ClassⅠ and ClassⅡ ?
A:

ClassⅠ Lasers are classified as inherently safe. Direct beam viewing, including with the use of optical aids, will not result in injury. Safety is achieved through engineering design and protective housing (for instance, a high-power laser source is fully contained, allowing only non-hazardous radiation leakage).

ClassⅡ Lasers are classified as conditionally safe. Their safety is dependent upon the natural aversive response (blink reflex) of the eye. While an inadvertent exposure is within safe limits, deliberate fixation on the beam presents a risk of retinal damage.