Laser Nanofactory
Product page ↗R&D Laser Workstation - built to create micro-scale 3D structures from glass and polymers using hybrid - additive and subtractive - femtosecond laser technologies (alternative to 3D printing)
We provide 3D micro-fabrication machines & services with selective laser etching (SLE), laser ablation, multiphoton polymerization (MPP) technologies
Figures as published by Femtika. Confirm against the current datasheet before specifying or ordering.
R&D Laser Workstation - built to create micro-scale 3D structures from glass and polymers using hybrid - additive and subtractive - femtosecond laser technologies (alternative to 3D printing)
Multiphoton polymerization (MPP) is a technology that enables the production of arbitrary shape polymeric structures within submicrometric resolution.
| Additive manufacturing | |
|---|---|
| Minimum XY feature size | 150 nm |
| Minimum surface roughness Ra | ≤ 20 nm |
| Maximum fabrication speed | 30 mm/s |
| Accuracy (XYZ) | ± 300 nm |
| Resolution (XYZ) | 1 nm |
| Maximum speed (XY) | 200 mm/s |
| Repeatability | 0.4 µrad RMS |
| Autofocus system | Automatic glass/polymer or glass/air interface optical detection |
| Weight | ~ 700 kg |
| Electrical requirements | 110 V AC, 20 A – 230 V AC , 10 A |
| AC power (normal operation) | typical 2 kW |
Selective laser etching (SLE) is a subtractive laser technology allowing fabrication of complex-shape 3D glass parts with micrometer precision.
| Substractive manufacturing | |
|---|---|
| Smallest feature size | > 1 μm |
| Minimum surface roughness | < 200 nm |
| Maximum object height | 1,6 cm |
| Aspect ratio | > 1 : 200 |
| Minimum micro hole diameter | 5 µm |
| Writing speed | 50 mm/s |
| Wavelength | 1030 ± 10 nm |
| Repetition rate | Single-shot – 1 MHz |
| Pulse duration | 290 fs – 20 ps (tunable) |
| Max. average power | 10 W |
| Accuracy (XYZ) | ± 300 nm |
| Resolution (XYZ) | 1 nm |
| Maximum speed (XY) | 200 mm/s |
| Repeatability | 0.4 µrad RMS |
| Autofocus system | Automatic glass/polymer or glass/air interface optical detection |
| Weight | ~ 700 kg |
| Electrical requirements | 110 V AC, 20 A – 230 V AC , 10 A |
| AC power (normal operation) | typical 2 kW |
Laser Nanofactory workstation allows hybrid fabrication, meaning that various processes (MPP, SLE, other) are supported by the same equipment.
| Technology | |
|---|---|
| Minimum XY feature size | 150 nm |
| Minimum surface roughness Ra | ≤ 20 nm |
| Maximum fabrication speed | 30 mm/s |
| Smallest feature size | > 1 μm |
| Minimum surface roughness | < 200 nm |
| Maximum object height | 1 cm |
| Aspect ratio | > 1 : 200 |
| Minimum micro hole diameter | 5 µm |
| Writing speed | 50 mm/s |
| Wavelength | 1030 ± 10 nm and 515 ± 10 nm |
| Repetition rate | Single-shot – 1 MHz |
| Pulse duration | 190 fs – 10 ps (tunable) |
| Accuracy (XYZ) | ± 300 nm |
| Resolution (XYZ) | 1 nm |
| Maximum speed (XY) | 200 mm/s |
| Repeatability | 0.4 µrad RMS |
| Autofocus system | Automatic glass/polymer or glass/air interface optical detection |
| Weight | ~ 700 kg |
| Electrical requirements | 110 V AC, 20 A – 230 V AC , 10 A |
| AC power (normal operation) | typical 2 kW |
FEMTIKA provides laser precision processing, 3D glass micro-structuring, and advanced micro-fabrication Contract Manufacturing Services.
A feasibility study is composed of several steps, including researching methods for fabricating, fabricating a micro-structure prototype, and preparing a study report.
Small-scale production is an essential step in the overall process of micro-structure fabrication, helping to ensure that the developed process is effective, efficient, and capable of producing high-quality micro-structures at scale.
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