Laser research equipment for universities, research centres and industrial R&D

Research & Academics

Innovation challenges

Laser research equipment built for tomorrow’s R&D challenges

Research and R&D teams need laser research equipment that evolves as quickly as their ideas. From developing new materials to validating advanced manufacturing strategies, LASEA provides flexible platforms for laser prototyping, experimentation and industrial transfer.

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Versatile laser research equipment

Laser systems that evolve with new materials, processes and wavelengths.


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Tailor-made for Industrial R&D

Custom-built configurations developed in close collaboration with European R&D partners.


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Integrated laser process monitoring

Advanced positioning, measurement, characterization and laser process monitoring tools — all managed within a single software environment.

Outcomes

From laser prototyping to industrial validation

LASEA helps researchers bridge the gap between concept and industrial application by simplifying experimentation while expanding research capabilities.

Accelerate laser prototyping

Easily test, compare and optimise multiple laser parameters on one platform.

Simplified R&D control

All laser sources and motion systems managed in KYLA® software for seamless coordination.

Repeatable results with laser process monitoring

High stability and integrated monitoring make every experiment measurable, comparable and ready for industrial transfer.

Clients in

35+ countries

Partnerships with the most prestigious Universities

Precision machining

Laser research equipment trusted by universities worldwide

LASEA develops laser research equipment combining flexibility, precision and modularity for universities, research institutes and industrial R&D laboratories.

our academic references

Laser research projects and academic references

LASEA collaborates with leading universities and research centres across Europe, Asia and the United States to accelerate laser research and industrial innovation :

Processes

Laser processes for R&D, laser DOE and process development

LASEA supports advanced R&D through laser micromachining technologies, enabling laser prototyping, laser DOE, process optimisation and industrial validation.

Cutting

From sapphire to stainless steel, our laser cutting processes deliver burr-free, contactless results across all materials – hard, fragile, or soft. Fine edges, tight tolerances, and complex geometries come standard.

Drilling

From injectors to microelectronic components, laser drilling delivers fast, accurate results across all materials. Clean holes, straight walls, zero contact.

Engraving

From decorative detailing to industrial-grade traceability, laser engraving delivers precision and permanence without physical contact. Whether you work in luxury, medical devices, electronics, or aerospace, our engraving solutions combine sharp resolution with clean, controlled results.

Marking

Laser marking enables fast, clean, and durable inscription across a wide range of materials. Whether you need high-contrast codes, discrete internal markings, or tamper-proof branding, our systems deliver uncompromising quality – without contact, additives, or post-processing.

Tube Micromachining

From stents and catheters to micro-needles and implants, laser micromachining enables the production of ultra-precise medical components with no physical contact or tool wear. Our laser systems are engineered to handle even the smallest tube diameters with total control and consistency.

Chamfering

Laser chamfering provides a non-contact, highly controlled way to shape and polish edges delivering sharp angles and immaculate finishes, especially for high-end components. Unlike mechanical methods, it avoids tool wear, stress, and inconsistency.

Welding

Laser welding delivers high-precision, non-contact joining – ideal for miniature or sensitive components across luxury, medical, electronic, and aerospace applications. From fine seams to complex material pairings, laser welding ensures clean, strong, and consistent results where traditional methods fall short.

Debonding

Laser Lift-Off (LLO) enables the clean, precise separation of thin functional layers from transparent substrates – ideal for flexible electronics, displays, and microfabrication.

Decoating

From microelectronics to luxury packaging, laser decoating provides a fast, clean, and selective way to remove surface layers, without damaging the substrate. Whether for aesthetics or performance, the results are high quality, stress-free, and repeatable.

Decoration

From haute horlogerie to industrial surface engineering, laser decoration and texturing delivers unmatched precision, design freedom and repeatability. Whether you seek aesthetic refinement or functional surface transformation, laser processes offer a non-contact, fully digital alternative to traditional methods.

Texturing

From aesthetic finishes to functional surface engineering, laser texturing creates micro- and nano-scale patterns with speed, precision, and complete design freedom. Whether your goal is decoration, adhesion, or biomimicry, our laser solutions deliver textures that matter.

Turning

Laser turning offers tool-free precision machining for small-diameter parts – ideal for hard-to-cut materials and ultra-fine finishes. Perfect for high-end medical, electronics, and luxury components.

Wire stripping

Laser wire stripping removes insulation from ultra-fine wires with surgical precision – no contact, no blade marks, no damage. Perfect for sensitive applications in medical and electronic assemblies.

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