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Suresh Indu Lasers Pvt Ltd

3D Laser Marking Machine

3D Laser Marking Machine

Product Details

Model SIL Accuwrite F 3D – 50/60/100 Watts
Power 20 W to 100 W
Wavelength 1063 ±3 nm
Beam Quality <1.2 (M2)
Output Power Adjustment Range 10 – 100 %
Pulse Repetition Rate 20 – 400 KHz
Power Stability <±1%
Focus Spot Diameter <0.05mm
Working Area 70 X 70/100 X100/150 X 150/200 X 200/300 X 300 mm
Max Marking Depth 1.2mm
Max Marking Speed 1500 Standard Characters / Second
Minimum Line Width 0.05mm
Minimum Character 0.5mm
Repetition Accuracy ±0.003 mm
Operation System Windows XP /7/8/10
Cooling Mode Air Cooling
Ambient Temperature 15°C – 35° C
Power Requirement 220V/single phase/50Hz/<600W
Life of Laser Module 100000 Hrs
Guide Laser/Red Aiming Beam Yes 660 nm

A mirror galvanometer is used to scan the laser beam and mark the product surface. Moving the focus lens (used instead of the f˜ lens) back and forth enables adjusting the beam not only on the x and y axes, but also on the z axis.

 

3D Software Extension

Ideal for the three-dimensional reproduction of designs and engravings with major detail, requiring different levels of engraving depth. This software extension, optionally provided, is based on the management of STL files, allows the 3D reproduction of solids authentic to their real proportions.

 

3 Axis Auto-Movement

Axis position management through software, allowing the serial marking of multiple objects on the same tray and at the same time, even having different shapes and sizes. Based on the management of Cartesian coordinates, the use of this module, makes possible to program the movement of all axes depending on the position of the objects to be LASER-marked, making possible to boost productivity by the serial marking.

 

Features :

  • Hi-tech technology
  • Permanent, high quality marks
  • High efficiency and low operation cost
  • Good accessibility, even to irregular surface
  • Non-contact marking and no special working environmental needed
  • The minimized metallurgical and mechanical damage
  • Easy to automate and integrate (direct writing of patterns can established
  • Using computer-controlled movement of the beam or sample)
  • Precise beam positioning and a beam highly localized energy
  • Transfer to the work piece
  • High reproducible and high speed, effective
  • Minimal heat load
  • Contamination free

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