Glass Cutting Laser, Glass Marking Laser & ITO Removal Technologies

Glass Cutting Laser Based on Zero-Width Laser Cutting Technology

Zero-Width Laser Cutting Technology (ZWLCT) is a patented technology that separates glass at the molecular level placing no stress on the material eliminating chips, cracks and any other form of debris resulting in zero yield loss.  ZWLCT is the fastest glass cutting technology in the industry eliminating both post grinding & polishing operations while improving edge-quality up to 80% compared to any other mechanical scribing technology.  Each glass cutting system is designed around the application XY dimension with plate thickness < 1.2mm.

ZWLCT is the preferred technology in the Mother-Glass (see grouping of systems below) industry with a family of glass cutting systems supporting up to GEN 10 sizes.  In the Flat Panel Display (see grouping of systems below) sector, specialized systems based on glass sizes up to 4’ x 4’ support mobile devices, computers, navigation, HDTV and other forms of display applications. In the Semiconductor ( see a grouping of systems below) sector, ZWLCT is adapted to dicing wafers made of glass, silicon or ceramic materials as well as cutting the wafer’s diameter from a square piece of material.  Other examples include microscope slides/covers for medical application and high-pressure window glass cutting applications.

Glass Marking Based on Laser Assisted Material Redeposition (LAMR).

Laser Assisted Material Redeposition (LAMR) (hyperlink to LAMR flyer) is a proprietary Additive Manufacturing glass marking technology that embeds silicon inside the glass creating the industry’s first black marking technique providing the ultimate in contrast for barcoding that is permanent, non-removable and easily readable with a mobile phone scanner.

FL600™

The FL600™ is a basic ITO removal system utilizing proprietary fiber laser technology by Laser Photonics. It performs direct imaging by laser beam for patterning of ITO coated glass and plastics offering flexible, immediate, CAD friendly large area patterning without wet photolithographic processes.

Main Features:

  • Highest ITO removal speed in the industry on glass and plastic substrates at speeds up to 12 m/sec with up to 1000 characters per second.
  • Laser Spot size 25 – 100 microns.
  • Line width – 50 – 200 microns.
  • Individual Field size coverage– 220 x 270 mm.
  • Maximum substrate size – fully scalable up to 550 x 650 glass panels.
  • Sintered metal vacuum hold-down table with substrate hovering capabilities for securing all substrate sizes without table replacement or vacuum zone selection.
  • Maximum stroke 600 x 700 mm.
  • Unlimited component size.
  • Minimized HAZ. Does not overheat the Glass or PET surface; no long term micro-fracturing.

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SBM-777-DC

The SBM777DC redesigned general purpose ceramic and glass scriber system is designed and fabricated from modern components allowing modular replacement and enhanced reliability. Direct drive 4 axis motion system, vision image recognition and advanced vacuum holding table makes it an ideal tool for high production volumes. System can be equipped with CO2 laser and innovative fiber laser for better precision and higher edge quality. (Selection depends on ceramic type).

Economical advantages for users:

  • Reduced space for Laser Scribing
  • “Plug-n-play” characteristics give the system ease of installation and quick start-up times.
  • Remote Internet monitoring and diagnostics.
  • Programmable Loading and Unloading positions for in-line integration.
  • Large substrate size up to 600 x 600 mm.
  • It can be equipped with dual heads for increased throughput. Video system will allow automatic machine set up and fiduciary marks recognition for automatic parts alignment.

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Fantom G3: Laser Glass Scribing System

The Fantom  G3 Laser Scribing tool is a part of a new line of industrial laser cutting systems from Laser Photonics.  It incorporates a new generation modular design laser and precision direct drive high-resolution linear motion system forming a precision, stand-alone, small footprint, automatic tool which can be easily integrated into an inline system.

Used for:

  • Color Filters
  • FPD (Flat Panel Display) Manufacturing.
  • Smaller Touch Screens.
  • Precision Glass Fabrication.
  • Micro displays.
  • Microscope Slides and Covers.

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