Overview
Non-metals are CO2’s home ground — the materials a fiber beam would pass straight through or fail to mark.
Why CO2 Suits These Materials
At 10.6 µm the beam is absorbed by organic and non-metal surfaces, so wood, acrylic, glass, leather, paper, ceramics, rubber and plastics all mark cleanly. Coated, anodized and painted metals work too, through a color shift in the coating. Bare metal is the exception — for that, fiber is the right source, and we’ll tell you so.
Built to Last
The mark is a change in the surface itself, not ink on top, so it’s permanent and non-fading, resisting handling, washing and time. No consumables, no solvents — an environmentally cleaner method than inkjet.
Specs That Matter
10.6 µm RF CO2, 30W–40W across the range, fields from 100×100 mm, carving depth to about 0.4 mm on the desktop build, speeds to 10,000 mm/s.
How to Mark a Non-Metal Part
- Fixture the part and set the focus with the dual red-light autofocus.
- Import the mark file and set power, speed and frequency for the material.
- Run a sample, check contrast and depth, then save the recipe.
- Set repeat positioning and start the batch.
- Inspect the mark and log first-article approval.
Where It’s Used

Wood and bamboo products, acrylic and plexiglass displays, glass and ceramics, leather and fabric, paper and packaging, PCB and electronic housings, anodized-aluminum profiles, crafts and signage.
CE Compliance
CE-marked, with conformity documentation available on request. We never claim SASO, SABER, GCC or UKCA we do not hold.
Getting It Right Before You Buy
Send us your part. We’ll mark it on the CO2 build, show you the result, and confirm the setup before you order.
Request a Quote · Download the Spec Sheet
Explore: CO2 Laser Marking. Related: Non-Metal Marking.
1-year warranty; installation, training & after-sales support available.