698

Material: Black Polypropylene Method Used: Etch Depth: <.001 Laser Type: 20 watt Q-Switch Fiber Laser Focal Length Lens: 160mm Power: 30 - 100% ...
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699

Material: Glass Method Used: laser marking Depth: Surface Laser Type: 100W CW CO2 (10.6um) Focal Length Lens: 300mm Power: 10% ...
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700

Material: Steel Method Used: etch Depth: >.003 Laser Type: 20 Watt Q-Switch Fiber Laser Focal Length Lens: 160mm Power: 98% ...
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701

Material: Plastic Method Used: etch Depth: <.001 Laser Type: 20 Watt Q-Switch Fiber Laser Focal Length Lens: 160mm Power: 57% ...
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laser cutting copper

702

Material: Copper Method Used: etch Depth: <.002 Laser Type: 20 Watt Q-Switch Fiber Laser Focal Length Lens: 160mm Power: 50%-98% ...
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703

Material: Composite Method Used: Cutting Depth: Through Laser Type: CO2 Focal Length Lens: 300mm Power: 25% ~ 25 Watts Frequency: 5 kHz Speed: ...
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705

Material: Acrylic Method Used: etch Depth: <.002 Laser Type: 20 Watt CW Fiber Laser Focal Length Lens: 254mm Power: 40% ...
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706

Material: PET Method Used: Cutting Depth: Through Laser Type: CO2 200W Focal Length Lens: 3.75" lens Power: ~50 Watts Frequency: 4 kHz Speed: ...
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707

Material: Foam Method Used: Cutting Depth: Kiss & (Through) Laser Type: CO2 Focal Length Lens: 3.75" Power: 40 Watts (60 ...
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Laser Cutting Acrylic

Application Details The Application was done with a low power system in the lab. The recommendation for this process would ...
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For over 35 years, Laser Photonics has been an innovative technology leader in the engineering and manufacturing of world-class Fiber and CO2 Laser material processing equipment for Fortune 1000 companies in various industries. We offer standard and custom laser machinery that can be stationary, portable, or incorporated into assembly lines and structures. Our machines are built in-house and use the highest quality components available in the market. Laser Photonics maintains an in-house applications laboratory for processing customer samples and assisting with process development. Our R&D team stands ready to modify standard systems or design specialized systems as new industry challenges arise; adapting to changes in manufacturing with continuous system improvements as new, viable technologies emerge. For cleaning applications, we provide the highest quality analysis of each and every mark using our Surface Quality Assessment™ (SQA™) software. With our SQA™ software, we have the ability to guarantee and verify the accuracy and quality of our surface treatment.

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