Metal fiber laser machine
1. High precision marking: Advanced fiber laser technology is used to achieve 0.1mm fine marking, presenting complex patterns, text, and QR codes clearly.
2. Widely applicable: supporting various materials such as metal, plastic, ceramics, etc., widely used in industries such as electronics, hardware, automotive, medical equipment, etc.
3. Efficient and energy-saving: The electro-optical conversion efficiency can reach up to 50%, with no consumables and low energy consumption, helping enterprises save costs while promoting green production.
4. Stable and durable: The laser source has a lifespan of up to 100000 hours, and the core components are imported to ensure long-term stable operation of the equipment.
5. Easy to operate: simple software interface, one click import of design files, support for automated batch marking, even beginners can quickly get started.
6. Flexible and portable: compact in size and structure, suitable for integrated or independent use on production lines, meeting diverse production needs.
7. Safety and Environmental Protection: The laser is fully enclosed and equipped with a safety protection system, which is pollution-free and noise free, and meets CE/ISO international certification standards.
Metal fiber laser machine
The working principle of a fiber laser marking machine is based on the interaction between the laser beam and the material surface, which can be categorized into three main mechanisms:
Vaporization Marking: For most metal materials, the laser beam rapidly raises the surface temperature to the melting or boiling point. This causes the surface material to melt and vaporize instantly, and the vaporized material escapes the surface, forming a clear mark. This method is ideal for creating deep, high-contrast marks on metals like steel, aluminum, and copper.
Chemical and Physical Change Marking: When dealing with non-metal materials such as plastics, the laser energy triggers a photochemical reaction, altering the molecular structure of the material and changing its color. This results in a clear, permanent mark without removing any material, which is perfect for marking on plastic components in the electronics and automotive industries.
Carbonization Marking: For materials like wood and paper, the laser beam's heat causes the surface to carbonize, creating a dark, distinct mark. This method is widely used in the packaging and handicraft industries.
The entire process is controlled by specialized software, allowing users to easily import designs, adjust parameters such as laser power, scanning speed, and marking depth, and achieve precise and consistent marking results.
Applicable materials
Applicable Industry
| Effective Working Area | 110mm*110mm (200mm optional) |
| Laser Power | 30W (20W,50w optional) |
| Worktable | Fixed high quality aluminum worktable |
| Wave Length | 1064nm |
| Laser Frequency | 30-60KHZ |
| Computer System | WINDOWS XP/Win7/8/10 32/64bits(Mac supported if you use Lightburn software) |
| Minimum Character | 0.3mm |
| Minimum Linear Width | 0.01-0.1mm |
| Cooling way | Air Cooling |
| Maxi Marking Speed | 5000mm/s |
| Data Transfer | USB2.0 transmission |
| Control System | BJJCZ original (EZCAD2 Controller) |
| Graphic Format Supported: | bmp, gif, jpg, jpeg, dxf, dst, Ai |
| Compatiable Software | BSL(support Lightburn) |
| Total Power | 500W ( AC220V/AC110V ) |
| Package Weight | 45KGS |
| Package Size | 63*44*40cm |
| Standard accessories with the machine. | U disk(for software/lens settings),power cable,USB cable,tools,foot switch, safety glasses |
| Optional parts | D80 rotary device |


