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Multi-target multi-material printer (e.g., metals, semiconductors, insulators, nanocomposites, alloys, etc.) for automated printing of multi-materials and hybrid devices on flat and conformal surfaces.

Built for conformal printing, the platform can project DXF designs onto imported 3D parts or print from pre-wrapped 3D DXF. Coordinated 3-axis motion follows complex surfaces, while real-time laser sintering and in-process target switching enable precise direct-write printing across curved and irregular geometries.

Overlay your geometry directly onto the live overhead camera view of the print area. Position, scale, and align each design on the substrate before printing, giving you complete control over exactly where every feature is placed.

Select a fiducial on the substrate through the live camera view, then choose its matching point in the CAD design. The software automatically snaps the geometry into position, creating a fast and accurate alignment between the digital design and the physical part.

As the dry aerosol is deposited, an integrated laser sinters the material directly onto the substrate. Deposition and consolidation happen together, producing conductive and mechanically stable printed features in real time.

Integrated mass flow control continuously manages the carrier-gas flow while monitoring system pressure in real time. This maintains stable aerosol transport and consistent deposition throughout the printing process.

Automatically move between multiple solid-source targets without replacing inks, cartridges, or printheads. Material changes can be incorporated directly into the printing sequence for streamlined multi-material fabrication.

The automated focusing mechanism positions the galvo scanner at the correct focal distance from the target. This keeps the laser precisely focused for efficient and consistent nanoparticle generation.

Save motion, flow, laser, material, and deposition parameters within a reusable recipe. Complex printing sequences can then be repeated consistently without rebuilding the process each time.

Live camera views provide continuous visibility of the substrate, nozzle, and printing area. Operators can confirm positioning, inspect alignment, and follow the deposition process directly from the software.

Process parameters, equipment states, and sensor data can be logged throughout every run. Each print produces a traceable process record for evaluation, optimization, and repeatability.

A vision-guided alignment system detects the laser position and uses an automated actuator to center the beam with the nozzle and deposition area. This simplifies setup while maintaining precise alignment on the substrate.
From intelligent automation to advanced process control, every NanoPrintek system includes even more capabilities built to simplify operation, improve consistency, and expand what is possible.
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