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201

This part was marked with a 20 watt q-switched ytterbium fiber laser with a 160 mm focal length lens. This sample was engraved to create a deep mark that would not be damaged by sand blasting. The sample was produced using a fiber laser at a setting of 17 Watts, with...

217

The UID marks were done with a 20Watt Fiber Laser Marking System using a 160 mm lens. The part was marked with multiple etched marks of 2D codes and squares. The cycle time for the 2D code was 3.28 seconds. Two different squares were marked on the part with different...

238

The Ferotek parts were marked with a 20-watt q-switched ytterbium fiber laser and a 160 mm focal length lens. The parts were surface etched to remove a layer of material and create a brightly contrasting mark. Process Parameters: Material: Ferotec Power: 14 Watts...

257

The parts were marked using a 10-watt q-switched ytterbium fiber laser marking machine with a 160 mm focal length lens. The parts were surface etched, to create brightly contrasting marks. The codes read well in the lab, although the reader used in the lab is intended...

278

This part was laser marked with a 20-watt q-switched ytterbium fiber laser with a 160 mm focal length lens. This sample was surface etched, creating a light mark on the surface of the material. This process utilized the laser at a power setting of 9 Watts, with a...

295

Purolator – Automotive Marking The Purolator samples were marked using the 10-watt Fiber Laser Marking System. The ends of the filters were cut off to compensate for the fixed workstations here in the Applications Lab. The ends were marked with the same text but...