5W UV Laser Marking Machine for Crystal 3D Inner Engraving
5W UV Laser Marking Machine for Crystal 3D Inner Engraving
Product Overview
The 5W UV Laser Marking Machine is a high-precision, non-contact laser system specially designed for 3D inner engraving in crystals, glass, and other transparent materials. Utilizing a 355nm ultraviolet (UV) laser, it delivers ultra-fine, high-resolution engravings with minimal heat-affected zones, ensuring clean and crack-free results.
Key Features
High-Precision 3D Engraving
Capable of creating intricate 3D inner engravings inside crystals with pinpoint accuracy.
Ideal for personalized gifts, awards, memorials, and artistic designs.
5W UV Laser Source
355nm wavelength ensures superior absorption by transparent materials.
Produces minimal peripheral damage, resulting in smooth, high-contrast markings.
Advanced Galvo Scanning System
High-speed galvanometer for fast, precise laser positioning.
Supports variable focal lengths for dynamic depth control in 3D engraving.
User-Friendly Software
Compatible with industry-standard design software (e.g., CorelDraw, AutoCAD).
Supports 3D modeling and layer-by-layer engraving for lifelike internal images.
Wide Material Compatibility
Perfect for crystal, glass, sapphire, ceramics, and some plastics.
Suitable for surface marking, deep engraving, and subsurface imaging.
Stable & Reliable Performance
Air-cooled laser system with low maintenance requirements.
Compact design suitable for industrial and small workshop environments.
Depth Control: Adjustable (multi-layer 3D engraving)
Cooling Method: Air-cooled
Software Support: Compatible with .AI, .DXF, .BMP, .STL, etc.
Why Choose Our UV Laser Marker?
✔ Superior Detail – Ideal for micro-engraving with crisp edges. ✔ Non-Destructive – No physical contact preserves material integrity. ✔ Efficient & Versatile – Suitable for both 2D surface marks and 3D inner engravings.
Perfect for businesses specializing in customized engravings, this machine combines precision, speed, and creativity to deliver stunning 3D effects inside crystals.