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Ultra R9000

Cutting Cutting This item can be cut using a CO2 laser. You should achive very good results with our materials. If not, your laser settings may need adjusting. Please consult your user manual or the company that you bought your laser from for specific advice
Engraving Engraving This item can be engraved using a CO2 laser. Some materials can be engraved using engraving compounds such Cermark but these are not included in this category
Marking Marking This item can be marked using a CO2 laser. It may be possible to mark some materials using HPDFO - High Power Density Focussing Optics but these are not included
Recyclable Recyclable This item can be recycled
Recyclable Recycled This item can be recycled
Sustainable Sustainable This wood product has been sourced from sustainable resources. This material is covered by the Forestry Stewardship Council scheme.
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Sale price£1.60 Sale price£1.33

 

The ULTRA R9000 platform offers laser material processing for a wide range of materials. It is designed and ideally suited for material processing in manufacturing, research and development, academic research, and prototyping environments. With its unique modular architecture, customizable solutions can be easily reconfigured with a wide array of options for enhancing performance, capability, and safety to complete the perfect solution to meet present and future business needs.

The ULTRA R9000 platform has a materials processing envelope of 1219 x 610 mm, with support for materials with a thickness up to 305 mm.

Configure the customizable ULTRA R9000 platform with up to two laser sources consisting of two interchangeable CO2 lasers or one CO2 laser and one fiber laser. When the platform is configured with two lasers users can take advantage of MultiWave Hybrid™ technology enabling up to two of three wavelengths from 9.3 µm, 10.6 µm, and 1.06 µm – to be simultaneously combined into a single coaxial beam. Each spectral component of the beam is independently controlled and can be modulated in real time.

Major features and options include multiple laser support, rapid laser beam positioning, precision material-independent autofocus, controllable laser power density, automation interface, multi-camera vision & registration and over temperature detection.

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All Universal laser machines are made to order in the Scottsdale, USA with an approximate lead time of 8-10 weeks.

Shipping and delivery will be included in any formal quotation for the laser and no additional fees are applicable.

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