

1.High-Performance Hardware Configuration
1.1 Self-developed 30W fiber laser with built‑in red light preview function high stability for long-term continuous operation; Theoretical service life up to 100,000 hours.
1.2 Self-developed high-speed digital signal galvanometer system with U.S. invention patents; integrated high-strength aluminum alloy structure, realizing high positioning accuracy, strong anti-interference capability and stable performance
1.3 Display-Controller: 10.4-inch suspended display-controller unit with compact and highly integrated design for easy operation; slave marking control mode supporting USB 2.0 communication with low reliance on industrial PCs and enabling gap-free marking; high-strength metal protective structure and excellent heat dissipation, offering better protection than ordinary exposed PCB boards and enabling non-stop operation.
2.Optimized Structural & Appearance Design
2.1 External Optical Path: Fully enclosed optical system, protecting optical components from external environmental impacts
2.2 Marking Direction: Able to configure the laser head downward, horizontally or upward to suit diverse applications; optional adjustment mechanism can be added for multi-angle laser output
2.3 Control Cabinet: Compact control box mountable on lifting table base; smaller footprint and ideal for narrow installation spaces
2.4 Touch Screen: Fixed to the side of the lifting platform via a multi-directional adjustable bracket, with ergonomic operation design
2.5 Lifting Platform: Robust yet lightweight lifting mechanism allowing adjustment of height and horizontal position within a certain range
2.6 Overall Appearance: Anodized aluminum alloy machined parts with painted A3 steel sheet metal, attractive appearance, strong corrosion resistance and adaptability to industrial production environments.
3.Versatile Expansion Capabilities
3.1 Detection: Professional fiberoptic probe enabling gap-free and missed-mark-free marking; foot switch available for static marking
3.2 Speed Measurement: Reserved rotary encoder interface supporting optional speed-measuring encoder for real-time speed feedback to the control system for parameter compensation, ensuring consistent on-line marking quality.
3.3 Communication: Standard Ethernet, serial, USB ports and expansion slots for convenient data communication and hardware expansion
3.4 Protection: Protective cover can be fitted to the laser to ensure a safe operating environment.
4.Mature Software System:
Linux operating system with customizable language settings, dedicated laser flying marking control software, graphical interface, comprehensive functions and userfriendly operation.
Suitable for high‑speed flying marking on metals, selected plastics and coated non‑metals, including color‑printed cartons, plastic bottles, flexible packaging, aluminum cans, milk powder cans and coated iron containers. Supporting marking of production date, batch number, expiry date, data‑linked traceability codes, QR codes and barcodes.
Laser Wavelength | 1064nm |
Laser Power | 30W |
Power Stability | ≤5% |
Single Pulse Energy | 1mJ |
Operating Frequency | 20-200KHz |
Minimum Line Width | 0.1mm |
Minimum Character Size | 0.30mm |
Repeated Positioning Accuracy | ±0.01mm |
Standard Marking Area | 100mm×100mm |
Standard Focal Length | 188±2mm(distance from laser head base plate to focal plane) |
Optional Marking Area Range | 70mm×70mm -- 400mm×400 mm |
Marking Line Speed | ≥10000mm/s |
Marking Character Speed | >700 characters per second |
Supply Voltage, Power Demand | AC 220V/50HZ/3A |
Total Power Consumption | Peak≤0.5KW,Average≤0.25KW |
Cooling Method | Air Cooling |
Ingress Protection (Ip) Rating | IP54 |
Cable Length | 3m |
Dimensions | Main Beam:627mm×96.5mm×124mm |
Main Control Cabinet:512mm×220mm×476mm | |
Lifting Platform:450mm×450mm×1100mm( multiple sizes available) |