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A Lithuanian SME with extensive experience in laser micromachining station manufacturing is offering customized tools and technologies for laser micromachining. The technology allows to achieve precision and repeatability within the micrometer scale by implementing advanced beam steering of ultrashort pulse lasers. Industrial partner or researchers are sought for an acquisition of the technology under a commercial agreement with technical assistance or technical cooperation agreement.
This Lithuanian company, established in 2010, mostly holds experience in designing and manufacturing laser micromachining workstations with implemented nanosecond, picosecond and femtosecond lasers for scientific and industrial applications. The company holds extensive knowledge in ultrafast laser development and applications, enabling to achieve optimized configuration of laser micromachining equipment that they develop.
Currently developed micromachining workstations are suitable for ablation, drilling, scribing and intro-volume marking processes in ever extending range of materials, including silicon, silicon carbide, sapphire, diamond, tungsten carbide, biological materials, biodegradable polymers, glass, majority of metals, ferroelectric ceramics and etc.
This micromachining technology is currently used in eight major application sectors that require high-precision material processing:
· Cold micro-marking of metals
· Thin film solar cell processing
· Flexible electronics manufacturing and selective polymer ablation
· Silicon, glass and sapphire wafer cutting and scribing
· Treatment of metal, synthetic diamond or ceramic mechanical tools
· Medical device manufacturing
· Patterning of optical and metal coatings
· Drilling of fuel injector nozzles and mechanical filters
The company is looking for long-term cooperation with industrial partners eager to innovate their precision manufacturing processes for a commercial agreement with technical assistance or researchers for co-developing and implementing the technology for scientific research purposes under a technical cooperation agreement.
The micromachining workstation is developed in such way to achieve micrometer scale precision in a wide range of materials - silicon, silicon carbide, sapphire, diamond, tungsten carbide, biological materials, biodegradable polymers, glass, most metals, ferroelectric ceramics and etc., while maintaining an ergonomic product design.
Industrial manufacturing SMEs or MNEs are sought that want to innovate their high-precision manufacturing processes by implementing ultrafast pulse laser micromachining technology.
Academia and R&D institutions are sought for project proposals or for further development of the technology in order to apply microfabrication in new sectors under a technical cooperation agreement.