Our CO2 laser marking machine adopts Davi laser and RC1001 galvanometer, which can perform high-precision laser marking with high speed and pollution-free characteristics. CO2 laser marker can mark various materials such as bamboo products, wood, paper, leather, glass, textiles, acrylic, product packaging, etc.
CO2 Laser Marking Machine Demonstration Video
CO2 Laser Marking Machine Display
Component Of CO2 Laser Marking Machine
CO2 Laser Marking Machine Parameters
Model | HTCS-30 | HTCS-40 | HTCS-60 |
Power | 30W | 40W | 60W |
Marking area | 110-110mm | 110-110mm | 110-110mm |
Laser source | Davi | Davi | Davi |
Galvanometer | RC1001 | RC1001 | RC1001 |
Wavelength | 10.6μm | 10.6μm | 10.6μm |
Rated output power | ≥35W | ≥40W | ≥60W |
Power stability | <±8% | <±6% | <±6% |
Beam quality | / | M²<1.3 | M²<1.2 |
Beam diameter | / | 1.8±0.2mm | 1.8±0.2mm |
Working frequency | 0-25KHZ | 0-25KHZ | 0-25KHZ |
Input voltage | 48VDC±2% | 48VDC±2% | 48VDC±2% |
Maximum average current | 12.5A | 12.5A | 25A |
Thermal load | <600W | <600W | <1200W |
Cooling system | Air cooling | Air cooling | Air cooling |
CO2 Laser Marking Machine Advantages
Machine Tool Lights
Our CO2 laser marking machine’s machine lights provide sufficient illumination, allowing you to clearly see the marking area and workpiece, reducing errors caused by insufficient light and improving work efficiency.
Equipped with machine tool lights makes CO2 laser marker more professional and modern, enhancing the overall image, operating experience, and production efficiency of the equipment.
Galvanometer System–RC1001
The RC1001 galvanometer adopts a high-performance scanning motor and internationally leading photoelectric sensing technology, which has good stability, high positioning accuracy, strong anti-interference ability, and can achieve fast marking.
The galvanometer of our CO2 laser marking machine is compact in size and design, and the driver has position and speed advanced detection function, greatly improving the dynamic response performance and scanning speed of the entire system.
Field Lens–Wuhan Hansel
Our CO2 laser marking machine adopts a Wuhan Hansel ammeter with fast response ability, which can complete high-frequency scanning operations in a short time, improve overall work efficiency, and is suitable for high-speed processing applications.
Wuhan Hansel ammeter adopts high-quality materials and components, with a long service life, reducing the frequency of maintenance and replacement, and lowering the cost of using CO2 laser marker.
Well-organized Internal Wiring
Orderly arrangement of internal circuits can effectively reduce the risk of electrical short circuits or faults, ensuring smooth and reliable operation. Convenient installation and post maintenance, reducing maintenance costs.
CO2 Laser Marking Machine Features
- The CO2 laser marking machine is easy to use and has good space and time control. The size of the machine and the degree of freedom in the processing environment are very large. It is particularly suitable for automated processing and special surface processing, and the processing method is flexible. This CO2 laser marker can meet the needs of a single design in the laboratory and can also meet the requirements of industrial mass production.
- The CO2 laser marking machine has no consumables and no maintenance, and the marking depth can be controlled at will. It has low processing costs and requires no consumables. The beam pattern is good, the system performance is stable, maintenance-free, and suitable for large-volume use. It is suitable for industrial processing sites with multiple varieties, high speed, and high precision continuous production.
CO2 Laser Marking Machine Sample Display
This CO2 laser marker can mark different products. Can be used for processing metal and non-metallic materials, such as wood, glass, clothing accessories, pharmaceutical packaging, alcohol packaging, building ceramics, beverage packaging, fabric cutting, rubber products, shell nameplates, craft gifts, electronic components, leather and other industries.