Laser Marking Machine Features
- Stable performance – can work continuously for 24 hours, low maintenance cost
- High precision – 0.01mm accuracy, supports various complex graphics and QR codes
- Clear Marking – Creates clear, high-precision markings that are easy to identify and read
- Versatile Material Compatibility – Metals (stainless steel, aluminum), ceramics, plastics (ABS, PC), and coatings
- Energy saving and environmental protection – almost no consumables are required, economical and environmentally friendly
How does a laser marking machine work?
A laser marking machine emits a laser, focused by an optical system into a high-energy-density spot that irradiates the material surface. The material absorbs this energy, undergoing physical/chemical changes to form a clear mark.
High-Speed Galvanometer Scanner
- High precision: can achieve 0.01mm level positioning and scanning, ensuring the accuracy and clarity of the mark
- Double efficiency: complete a large number of marking tasks in a short time, improve production efficiency
- Strong flexibility: through computer software programming, it is easy to achieve the marking of various complex patterns, texts and marks
- Wide application: suitable for a variety of materials from metal to non-metal

More About Laser Marking Machine
- Sample Pictures
- Parameter List
| Specification | CHL-T20 | CHL-T30 | CHL-T50 | CHL-T100 |
| Maximum Laser Output Power | 20W | 30W | 50W | 100W |
| Optical Maser Wavelength | 1064nm | 1064nm | 1064nm | 1064nm |
| Engraving Range | 110mm*110mm | 110mm*110mm | 110mm*110mm | 110mm*110mm |
| Carving Depth | 0.5mm | 0.8mm | 0.8mm | 0.8mm |
| Engraving Line Speed | 7000mm/s | 7000mm/s | 7000mm/s | 7000mm/s |
| Minimum Linewidth | 0.03mm | 0.03mm | 0.03mm | 0.03mm |
| Minimum Character | 0.2mm | 0.2mm | 0.2mm | 0.2mm |
| Repeated Accuracy | ±0.01mm | ±0.01mm | ±0.01mm | ±0.01mm |
| Power Demand | 220V/Single-
phase/50Hz |
220V/Single-
phase/50Hz |
220V/Single-
phase/50Hz |
220V/Single-
phase/50Hz |
Related Products
A high-energy laser beam heats the material surface (via vaporization, oxidation, or color change) to create permanent marks (text, QR codes, logos).
Metals: Stainless steel, titanium (aerospace parts in France).
Non-metals: Leather (Brazilian footwear), ceramic (Spanish tiles).
Avoid: Highly reflective surfaces (e.g., mirror-finish silver) without pretreatment.
Depth: Increase power, slow speed, or lower focal distance .
Clarity: Clean lenses, calibrate beam alignment.
















