
Ultrafast lasers solved the quality problem. Throughput is the remaining one
Beam splitting, polygon scanning and higher repetition rates are the levers turning femtosecond precision int…
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Femtosecond and picosecond processing for electronics, medical and semiconductor work.

Beam splitting, polygon scanning and higher repetition rates are the levers turning femtosecond precision int…

Femtosecond pulses remove material before heat diffuses. Repeat them at high rates and heat accumulates anywa…

Self-focusing inside the glass creates a column of modified material through the full thickness. The glass th…

Every via must stop cleanly on a copper pad a few micrometres away. Throughput is set by how reliably the pro…

A rotating mirror sweeps at speeds a galvanometer cannot reach. That turns average power from a heat problem…

Delivering several closely spaced pulses instead of one larger pulse improves removal efficiency and surface…

Self-organising ripples at sub-wavelength scale change wetting, friction and adhesion. The obstacle was never…

Modifying material inside the wafer wastes no width and produces no debris. It also demands a substrate that…

Fiber-based and sealed architectures removed the alignment, purge and environmental control that kept femtose…

Stent struts and cannula features are specified in micrometres. Holding that across a batch depends on fixtur…

Polymerisation only happens where intensity is high enough for two photons to arrive together, which confines…

Percussion drilling with millisecond pulses is fast and leaves a damaged layer. Ultrafast drilling is slow an…