Triumph 700W-2000W Enclosed Air-Cooled Fiber Laser Cutting Machine 300x200mm F3020
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Air-Cooled Fiber Laser Cutting Machine
The F3020 represents the next generation of air-cooled fiber laser cutting technology. Engineered for high mobility, exceptional energy efficiency, and maintenance-free operation, it provides ultra-precise metal sheet processing without the need for bulky external water chillers.
Machine Details






Technical Specifications
| Model | TR-F3020 |
| Laser Source | Fiber Laser |
| Laser Power | 700W/1300W/1700W/2000W |
| Max.Cutting Speed | 40m/min |
| Max.accelerated | 1G |
| Repositioning accuracy | 0.02mm |
| Cooling Method | Active Air Cooling (No Water Chiller Required) |
| Applicable Materials | Stainless Steel, Carbon Steel, Aluminum, Brass, Galvanized Sheet |
| Operation Mode | Continuous |
| Power Supply | AC 220V ±10% / 50/60Hz |
| Features | Compact footprint, high photoelectric efficiency, zero maintenance |

This product is exclusively available for sea freight delivery with an estimated transit time of 25 days. For custom shipping quotes, port clearance assistance, or direct logistics inquiries, please contact our team directly.
Frequently Asked Questions
What are the primary advantages of an Air-Cooled fiber laser cutter?
Air-cooled fiber laser systems eliminate the need for external water chillers. This dramatically reduces overall power consumption, eliminates liquid maintenance issues (such as coolant changes and freezing risks), lowers system footprint, and simplifies field operation.
How is sea freight shipping arranged and tracked?
The unit is securely packed in export-standard wooden crates. Once dispatched via ocean freight, we provide complete bill of lading (B/L) information, vessel tracking numbers, and port-of-entry guidance for a smooth 25-day delivery window.
Can the F3020 handle continuous daily industrial operations?
Yes. The advanced air-cooling thermal architecture is designed to maintain optimum diode temperatures under continuous industrial workloads, guaranteeing stable laser power output and beam quality throughout long production cycles.