P-Series UV And White Light 3D

$11.500

P-Series UV And White Light 3D

 

P-Series UV and White Light 3D system is a high-precision, non-contact 3D scanner that uses UV and white light sources to capture detailed surface data. It offers micrometer-level accuracy, fast scan speeds, and compatibility with a wide range of materials. Ideal for industries like manufacturing, aerospace, and forensics, it supports applications such as quality control, defect detection, and 3D modeling with advanced software integration for visualization and analysis.

SKU: 69-P-Series UV And White Light 3D Category: Tag:
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P-Series UV And White Light 3D

P-Series UV and White Light 3D refers to advanced 3D imaging systems or scanners that leverage both UV (ultraviolet) and white light to capture high-resolution, detailed 3D surface data. These systems are often used in industrial applications, research, and quality control.

Features:

  1. Dual Light Sources:
    • UV Light: Useful for detecting surface defects, analyzing fluorescent materials, or working with surfaces that respond uniquely to UV illumination.
    • White Light: Offers broad-spectrum illumination for general-purpose 3D scanning and measurement tasks, suitable for surfaces with high color fidelity.
  2. High Accuracy:
    • Often capable of measuring micro-level details, making them suitable for precision applications like:
      • Aerospace
      • Automotive manufacturing
      • Forensics
      • Research labs
  3. Non-Contact Measurement:
    • Uses structured light or laser-based technologies to measure objects without physically touching them, preserving fragile or delicate samples.
  4. Material Versatility:
    • Suitable for a wide range of materials, including metals, plastics, ceramics, and even biological specimens.
  5. Software Integration:
    • These systems typically come with advanced software for data visualization, defect analysis, and exporting 3D models for CAD or simulation software.

Benefits:

1. Enhanced Measurement Versatility

  • Dual Light Sources:
    • UV Light: Allows the system to detect features invisible under normal light, such as surface coatings, fluorescent materials, or microscopic defects.
    • White Light: Provides broad-spectrum illumination for accurate measurements of texture, color, and geometry across diverse materials.

2. High Precision and Accuracy

  • Capable of capturing extremely fine details, often down to the micrometer scale.
  • Ideal for tasks like surface roughness analysis, micro-defect detection, and dimensional inspection.

3. Non-Contact Technology

  • Prevents damage to fragile, delicate, or soft materials.
  • Suitable for objects with intricate shapes, complex geometries, or sensitive surfaces.

4. Broad Application Range

  • Widely used across industries:
    • Manufacturing: For quality control and reverse engineering.
    • Aerospace and Automotive: Ensures components meet tight tolerances.
    • Medical and Biotechnology: Scans biological specimens, prosthetics, and medical devices.
    • Art and Cultural Heritage: Used for restoration and preservation of artifacts.

5. Fast and Efficient Data Collection

  • Scans large areas quickly while maintaining high resolution.
  • Reduces time spent on manual measurements or inspections.

6. Detailed Analysis Tools

  • Accompanied by software for:
    • Visualizing 3D models.
    • Identifying deviations or defects.
    • Exporting data for CAD and simulations.

7. Material Compatibility

  • Works effectively on a wide variety of surfaces, including:
    • Reflective materials like metals.
    • Textured surfaces like wood or ceramics.
    • Transparent or translucent objects with UV-sensitive properties.

8. Increased Productivity

  • Automates critical measurement processes, minimizing human error.
  • Frees up time for other tasks while ensuring consistent and repeatable results.

General Specifications

  1. Measurement Principles:
    • Structured light scanning (fringe projection or similar).
    • Ultraviolet (UV) and visible light source integration.
  2. Resolution:
    • Ranges from micrometer-level accuracy (e.g., 1–10 µm) depending on the system.
  3. Field of View (FOV):
    • Variable, typically adjustable depending on lens configuration.
    • Commonly ranges from 50 mm × 50 mm for fine detail to 500 mm × 500 mm or larger for scanning bigger objects.
  4. Light Sources:
    • UV Light Wavelength: Around 365–400 nm.
    • White Light: Full-spectrum, often LED-based for consistency.
  5. Camera Specifications:
    • High-resolution cameras, often with 5–25 megapixels.
    • Dual-camera or multi-camera setups for capturing multiple angles simultaneously.

Performance

  1. Accuracy:
    • Typically ±5 µm to ±20 µm, depending on the working distance and field of view.
  2. Scan Speed:
    • Scan times as fast as 1–2 seconds per frame.
    • Capable of full 3D reconstruction in minutes.
  3. Surface Compatibility:
    • Effective on reflective, matte, transparent, and UV-reactive materials.

Physical Specifications

  1. Dimensions:
    • Compact and portable units, often weighing 5–20 kg.
    • Tripod or robotic arm mounting options.
  2. Power Supply:
    • Standard 100–240 V AC, with low power consumption.

Software and Connectivity

  1. Software Features:
    • 3D model visualization and editing.
    • Measurement tools for dimensions, surface deviation, and defect detection.
    • Data export to CAD/CAM formats (e.g., STL, OBJ, STEP, IGES).
  2. Connectivity:
    • USB 3.0, Ethernet, or Wi-Fi for data transfer.
    • Integration with robotic arms or automated inspection systems.
  3. Operating System Compatibility:
    • Windows 10/11, often with additional support for macOS or Linux.

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