Laser Marking Guide — How It Works, Types & How to Choose

Start With the Material, Not the Brochure

The material decides the source; the source decides almost everything else. Once the source is right, power and field size follow from your part and your throughput. This guide walks through that logic, then points you to deeper articles on each step.

The Four Sources at a Glance

Fiber marks metals and hard plastics. CO2 marks organics and glass. UV marks heat-sensitive materials with almost no heat. MOPA tunes the pulse for color and fine work. Most buyers need one source; a few need two.

Marking vs Engraving

Marking changes the surface; engraving removes material for depth. Knowing which one your spec really asks for saves a lot of back-and-forth — covered in marking vs engraving.

SourceWavelengthBest onHeatTypical use
Fiber1064 nmmetals, hard plasticslowIDs, codes, logos on metal
MOPA1064 nm tunablestainless color, anodized blackvery lowcolor / fine marking
CO210.6 µmwood, acrylic, glass, leathermediumnon-metal marking
UV355 nmsensitive plastics, glassminimalmedical, cosmetics, electronics

Read Next

How laser marking works · marking vs engraving · fiber vs CO2 vs UV · deep engraving · laser vs non-laser methods.

Getting It Right Before You Buy

Send a part, get a sample mark, then quote — that order keeps surprises off the production floor.

Request a Sample Mark · Browse the Source Guides

Related: Fiber Marking · CO2 Marking · UV Marking.

Marking is where small details matter most — the right source type and lens make the difference between a mark that lasts and one that fades. Fiber, UV and CO2 each have their place.

Wang Jiachao — Senior Laser Equipment Engineer, Technical Department Manager · 16 years experience
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