50W/70W/100W Flying Table Fiber Laser Marking Machine
Features of the Laser Marking Machine
- Compact: The high-tech product, which is combined of laser device, computer, auto controller and precision machinery.
- High Precision: Re-position precision is 0.002mm
- High Speed: Imported scanning system makes the scanning speed is up to 7000mm/s
- Easily Operating: Afford the specific marking software based on Windows, which is real-time adjust the laser power and pulse frequency. You can input and output by computer according to edit in the both of the specific marking software and the graphic software such as AutoCAD, CorelDRAW or Photoshop.
- High Reliability: MTBF>100,000 hours
- Energy Saving: The efficiency of optic-electrical converting is up to 70%
- Low Running Cost: No wearing part. Free maintaining, no need to adjust the laser path.
Parameters of the Fiber Laser Marking Machine
Machine Specifications |
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Model |
HEF50W |
HEF80W |
HEF100W |
Wave length of laser |
1064nm |
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Laser power |
50W |
80W |
100W |
Marking scope |
200*200/300*300mm |
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Laser sources |
Raycus / JPT / IPG / MAX |
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Laser Head |
Scanning head |
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The minimum focus facula diameter |
20μm |
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Minimal character |
0.01mm |
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Marking speed |
≤7000mm/s |
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Repeated accuracy |
0.0025mm |
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Cooling ways |
Force-air cooling |
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Power supply |
220V/ 50Hz/2kVA |
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Process Material |
All kinds of metal |
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Support format |
PLT, BMP, DXF, JPG, TIF, AI etc |
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Package |
Standard export plywood case |
Customers Samples Photos
APPLICATIONS
Electronic components, integrated circuits, mobile communications, medical equipment, eyeglasses and clocks, jewelry, auto parts, plastic buttons
MATERIALS
All metals including gold, silver, titanium, copper, alloy, aluminum, steel, manganese steel, magnesium, zinc, stainless steel, carbon steel, mild steel, all kinds of alloy steel, electrolytic plate, brass plate, galvanized sheet, all kinds of alloy plates, all kinds of sheet metal, rare metals, coated metal, anodized aluminum and other special surface treatment, electroplating the surface of the aluminum-magnesium alloy surface oxygen decomposition