Universal Laser Systems installeert eerste Multiwave HybridTM-systeem aan Hogeschool Mittelhessen in Friedberg, Duitsland
WENEN–(BUSINESS WIRE)– Universal Laser Systems, Inc, wereldwijd toonaangevend in materiaalbewerking met laser, heeft het krachtige lasersysteem XLS10MWH met de gepatenteerde Multiwave Hybrid TM -technologie geïnstalleerd in het onlangs geopende optica-laboratorium van de Hogeschool van Friedberg, in Duitsland. Dit geavanceerde systeem, dat is uitgerust met een CO2 -laser van 250W en een glasvezellaser van 50W, staat voor de topdivisie voor materiaalbewerkingstechnologie en verruimt de test- en onderzoekscapaciteiten op vlak van hybride technologie van de faculteit en studenten in toegepaste natuurkunde van de hogeschool Mittelhessen .
Universal Laser Systems Installs the First High-Power Multiwave HybridTM System at the Mittelhessen University of Applied Sciences in Friedberg, Germany |
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VIENNA–(BUSINESS WIRE)– Universal Laser Systems, Inc., the world’s leader in equipment for laser material processing, has installed a High-Power XLS10MWH laser system with the patented Multiwave Hybrid TM technology in the newly opened applied optics laboratory facilities of the University of Applied Sciences in Friedberg, Germany. Equipped with a 250W CO 2laser and a 50W fiber laser, this advanced system represents top-of-the-line laser material processing technology, and will greatly expand the testing and research capabilities of the faculty and students in the Department of Applied Physics at the Mittelhessen University of Applied Sciences in the area of hybrid technology. The Department of Physical Engineering at the Mittelhessen University of Applied Sciences, which is an integral part of the Applied Physics Department, recently celebrated its 20th anniversary, and a significant event in this milestone was the ceremonial opening of a modern laboratory facility in a newly incorporated part of the university campus. This new building provides students and faculty members with spacious seminar, office and lecture facilities, as well as a host of modern machines, equipment, and laboratory space for research projects and practical lab work. With an emphasis on applied optics and laser technology, the Department of Physical Engineering is tightly linked to important suppliers of laser technology and can boast many years of experience in the use of high-tech laser devices. The new High-Power XLS10MWH system will occupy an important place in both the research and the educational activities of the department, and will render possible the processing and testing of materials, including plastic films, industrial films, engineering plastics, laminating adhesives and composite materials, as well as many others. “With this system, we see excellent possibilities for expanding our expertise in the processing and testing of complex composite materials, and look forward to sharing and exchanging these findings with relevant companies in the surrounding area,” says Professor Doctor Klaus Behler, Head of the academic group for Applied Laser Technology at the institute. “In this way, our cooperation with partners in industry will be strengthened for the good of everyone, and our students will be able to gain new insights into material processing that are relevant in industrial applications.” The German university system of Applied Sciences has a clear charter to develop strong relationships with industrial companies, which is meant to provide students practical experience and get them involved in projects that are relevant to these potential employers in their region. The Mittelhessen University of Applied Sciences is located in one of the most technologically advanced regions in Germany and profits immensely from its interactions with local industrial players. Daniel Thölken, a master’s graduate of the Mittelhessen University of Applied Sciences, was the primary driver behind the acquisition of the XLS-System. He manages the many high-tech devices in the newly equipped laboratory facility and said the following with respect to the recently installed machine from ULS: “We are very much looking forward to testing the extensive capabilities of this technology. Whether using the high-power 250W laser alone or in conjunction with the fiber laser, we will be able to undertake sophisticated tests on myriad different materials. In this process, we are especially hopeful that we will be able to discover new applications for the Multiwave Hybrid technology.” The industry-first Multiwave Hybrid laser system combines beams from multiple lasers into a single, hybrid laser beam. Users can leverage this technology to combine a number of different laser power levels and wavelengths. For example, 1.06 µm, 9.3 µm and 10.6 µm laser beams can be combined in any proportion to create a number of desired effects on various materials. Additionally, users can independently control each laser. Kevin Kearney, Managing Director for EMEA at Universal Laser Systems, sees great potential in cooperating with the Mittelhessen University of Applied Sciences: “The combination of academic research and proximity to industry at the Mittelhessen University of Applied Sciences is truly unique. We are convinced that the cooperation will be beneficial for all parties, and that the students and faculty at the University of Applied Sciences will discover new and important applications for our Multiwave Hybrid technology.” About Universal Laser Systems Universal Laser Systems, Inc. (ULS) is a global manufacturer of laser material processing solutions, founded in 1988 and headquartered in Scottsdale, Arizona, with subsidiaries in Vienna, Austria and Yokohama, Japan. The company’s commitment to innovation, advancing the application of modern CO 2 and fiber laser technology, and customer service has established a market-leading position with tens of thousands of customers in various industries across the globe. From the development of laser sources, productivity enhancement technologies, advanced software and beam delivery systems to an extensive investment in the research of laser materials processing science and applications, ULS is committed to providing its customers with the most innovative, cost effective, flexible and scalable laser material processing solutions for today and future needs. For more information visit www.ulsinc.com. About the Mittelhessen University of Applied Sciences The Mittelhessen University of Applied Sciences is a German institution of higher learning with locations in Friedberg, Gießen and Wetzlar, as well as branch campuses in Bad Hersfeld, Bad Wildungen, Bad Vilbel, Biedenkopf and Frankenberg. The university was established in 1971 and is accordingly one of the newest institutions of its kind in the federal state of Hessen. With 17,227 students (2016), it is the largest of the five universities of applied sciences in the federal state of Hessen. On a national basis, the Mittelhessen University of Applied Sciences is the fourth largest behind similar institutions in Cologne, Munich and Hamburg. www.thm.de. View source version on businesswire.com: http://www.businesswire.com/news/home/20170309006441/en/ Contacts Universal Laser Systems, Inc. |