Stable deep ablation in hard metal: no focus tracking required.
In deep 3D ablation, the cavity floor sinks out of focus layer by layer. And with a standard Gaussian the ablation rate and wall angle drift as it goes. An elongated focus stabilises the process. It holds a usable spot across the whole depth, so removal rate and wall angle stay constant. The process runs open-loop, with no focus tracking. Demonstrated in hard metal, together with an industry partner.
- Deep 3D ablation in hard metal: layer-wise, cavity depth grows well beyond the focus
- Strong depth dependency: as the floor sinks out of focus, the ablation rate changes
- Focus tracking normally required to hold the rate, and the wall angle still breaks down
- 7× more stable process — ablation depth held to ±2% vs. ±15% for a standard Gaussian
- Constant wall angle across depth, instead of a wall that breaks down
- No focus tracking — the elongated focus (DOF 0.7 → 1.5 mm) decouples quality from focus position
- Drop-in retrofit in <30 min — a mirror swap, no head redesign

The numbers on deep ablation
7× more stable
Ablation depth held to ±2% vs. ±15% for a standard Gaussian: a far more repeatable layer-wise removal.
2× the depth of focus
Usable DOF reaches 1.5 mm vs. 0.7 mm, with a constant wall angle instead of one that breaks down with depth.
No focus tracking
Quality is decoupled from focus position, so the step runs open-loop, and it retrofits as a drop-in in <30 min.
Measured with an industry partner on 1 mm deep cavities in hard metal. Values are configuration-specific and confirmed per setup.
Product & further use cases
Have a similar ablation challenge?
Tell us your laser and application. We’ll assess feasibility and start your first project together.
Discuss your challenge