Home

Site Map

Favorites
Advanced search
English

Romana
Home -> Al Tech -> ALcode -> Information
ALcode

Print & Apply Systems

ALcode are systems for the printing/application of self-adhesive labels. They may be interfaced with a computer and can apply the just-printed label to both still and moving products.

For label printing, ALcode can integrate the various thermal transfer engines made from the Japanese SATO (or compatible). Which has specifically developed them for the use on automatic applicators: resolution of 8 or 12 dots/ mm., up to 300 mm/ sec. of print speed, 4 ", 5 " or 6 " of printable width.

In every ALcode print apply system, the mechanics, pneumatics and electronics have been suitably integrated to meet the typical requirements of machines operating in an industrial environment, which need to combine reliability, user-friendliness, accessibility, and interchange ability.

A range of standard devices has been engineered for the application of labels, thus enabling ALcode to apply labels in any position and at any linear speed.

The following versions are available:
  • Air-blow applicator, with or without piston, for non-contact labelling of moving products
  • Tamp applicator for contact labelling of still products, including to sunken areas
  • Swinging roll applicator for contact labelling of products running at high speed
  • Swinging application system, for contact labelling of moving product, also with different label sizes
  • Rotary arm applicator for front/back and/or corner labelling of both still and moving products
Thanks to the flexibility of ALcode labellers, ALTECH is able to develop complete systems for the identification of any package, such as cases, boxes, bundles and pallets.

Devices which may be added to the basic configuration in order to solve specific problems are as follows: 
  • Laser scanner for bar code control
  • Product handling and transfer systems
  • Multiple labelling programs
  • Near-end-of roll control
  • Oversized and powered unwind units
ALcode
Generated in 0.2108 seconds