60W CO2 Laser Marking Machine

60W CO2 Laser Marking Machine

60W CO2 Laser Marking Machine Product Introduction CO2 laser marking machine adopts infrared wavelength, 10600nm gas laser, CO2 gas is charged into the high pressure discharge tube to produce glow discharge, so that the gas molecules release laser light, the laser energy amplifies to form the...
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Product Introduction

60W CO2 Laser Marking Machine

Product Introduction

CO2 laser marking machine adopts infrared wavelength, 10600nm gas laser, CO2 gas is charged into the high pressure discharge tube to produce glow discharge, so that the gas molecules release laser light, the laser energy amplifies to form the laser beam on the material processing, the laser beam makes the processed body surface vaporization to achieve the purpose of engraving.

 

CO2 Laser Marking Machine

Product Parameters

Model

MRJ-CO-60D

Laser Power

60W

Cooling Method

Air Cooling

Laser Wavelength

10600nm

Marking Field

300mmx300mm

Marking Line Speed

≤14000mm/s

Min. Line Width

30μm

Min. Character

0.2mm

Repetition Precision

±0.01mm

Power Consumption

1500W

Input Power

220VAC/50Hz/15A

60W CO2 Laser Marking Machine

 

Product Advantage

  • Maintenance-free, no consumables, low running cost
  • Small size, light weight, easy to move.
  • Stable operation, low failure rate.
  • High laser pulse frequency, fast marking speed.
  • Laser service life of up to 30,000 hours.
  • Marking software is full multi-language interface, easy and intuitive operation.
  • Marking clear, not easy to wear, flexible and variable marking content, fine lines.
  • Engraving depth control, can adapt to a variety of products.

60W Laser Marking Machine

 

Working principle
The CO2 laser marking machine consists of main control power system, XY vibrating mirror system, optical system, software operating system, precision table positioning system, etc. The laser beam with a wavelength of 10.6μm output from the laser resonant cavity is expanded by the beam expanding mirror and then reflected by the lenses of two vibrating mirror scanners in X-axis and Y-axis, and then passed through the optical focusing lens (field mirror) to the working surface. The oscillation of the scanner is controlled by the computer, so that the laser beam is scanned in the X and Y directions, and the laser beam is gathered on the surface of the processed object to form a micro-surface ablation to form an engraving. Through this continuous computer-controlled process, the pre-programmed characters, graphics and other markings are permanently etched on the surface of the object.

 

 

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