Shtrikh 012

Laser engraving system


  • Desktop design, small size
  • Wide range of processed materials and processing methods
  • Air-cooled fiber laser with a service life of at least 30 000 hours
  • High precision mechanical movement system
  • High precision optical system

Description
Characteristics
Software

TECHNICAL DESCRIPTION


Purpose


The Shtrikh 012 laser engraving system is designed for creating high-quality images on various materials with a resolution of at least 1800 dpi. It provides manufacturing of high-quality seals and stamps.



Description


The Shtrikh 012 system is intended for creating high-quality images on such materials as rubber, metal, plastic, wood, stone, ceramics, leather, paper, cardboard, film, foil, polymers and others.

The fiber laser used in Shtrikh 012 in combination with a system of galvanometric scanners provides high quality of engraving in a static mode. The laser does not require water cooling and special maintenance.



Features:


  • Movement of the object stage along the X and Y axes is carried out by means of a two-coordinate high-precision positioning system. By using this system and sequentially engraving image fragments, it is possible to process workpieces with dimensions of up to 200 × 300 mm with high accuracy. Object processing is performed automatically according to a program specified by the operator

  • The algorithm of automatic layer-by-layer engraving and the use of a high-precision mechanism for moving the scanning head along the Z coordinate make it possible to form highly detailed 3D images up to 5 mm deep for workpieces made of various metals (steel, brass, aluminum, titanium, etc.)

  • Object processing is performed automatically without operator participation. This is especially important when carrying out layer-by-layer engraving of deep 3D images that sometimes lasts for several hours

  • Shtrikh 012 is equipped with a built-in system for removing combustion products from the zone of exposure to laser radiation. This makes it possible to protect the scanning objective lens from waste products and also to remove unwanted odor. The availability of this system is especially important when engraving on rubber and plastics

  • The Shtrikh 012 casing completely covers all zones exposed to laser radiation thus ensuring a high degree of the operator protection



TECHNICAL CHARACTERISTICS


Laser system
‎  Laser type ‎  diode-pumped fiber pulsed ytterbium laser
‎  ‎Wavelength ‎  1.05 – 1.07 μm
‎  Mean power ‎  50 W
‎  Laser resource ‎  more than 50 000 working hours
‎  Cooling ‎  air
General characteristics
‎  Processing center dimensions ‎  890 × 620 × 715 (560) mm
‎  Processing center weight ‎  99 kg
‎  Engraving modes ‎  raster, vector
‎  Processed workpiece dimensions ‎  up to 200 × 300 mm
‎  Processing area dimensions ‎  up to 100 mm × 100 mm
‎  Focal length ‎  163 mm
‎  Movement range along the Z coordinate (workpiece thickness) ‎  5 mm; this value may be increased at the customer request
‎  Engraving resolution ‎  up to 2500 dpi
‎  Geometric size reproduction accuracy ‎  ± 0.25 mm
‎  Minimum pixel size ‎  12.5 μm
‎  Position reproducibility ‎  ± 0.01 mm
‎  Power supply ‎  single-phase, 220 V
‎  Power consumption ‎  not more than 2500 W
‎  Control ‎  by means of a PC with a Windows-compatible
  software package installed
‎  Data formats ‎  BMP, GIF, JPEG, TIFF, PNG and others. Automatic import of
  tasks from Corel Draw, Adobe Photoshop, Adobe Illustrator
‎  Processed materials ‎  plastics (PVC, polycarbonate, ABS),
 rubber, metals


SOFTWARE


The software package installed in the system makes it possible to prepare tasks for laser marking and engraving, to control the processing center when carrying out the tasks, as well as to start the task execution.






Main software features


  • Loading of raster images of all major formats such as BMP, GIF, JPG, PNG, etc.

  • Import of raster and vector images from CorelDraw

  • Import of raster and vector images from Adobe Photoshop

  • Import of vector images from Adobe Illustrator

  • Engraving of 3D objects using the STL format

  • Availability of a task preparation wizard

  • Manual positioning of images in a task

  • Automatic positioning of images in a task

  • Color inversion for engraving of white or black fragments of the image

  • Mirroring of images for getting correct stamp imprints

  • Scaling of the work area with images for convenient viewing and positioning

  • Ability to easily customize the user interface for the needs of a specific operator

  • Availability of the snap to object and the snap to grid functions for convenient alignment and organization of objects in the work area