FOR POWDER & WIRE DEPOSITION
The planet’s largest argon atmosphere Laser DED system capable of 3D Printing ultra-large, high-performance Metal components for the world’s most demanding industries.
The world’s most capable commercial Laser-DED system. Engineered for parts that simply cannot be produced any other way — at any scale.

Wire Deposition Head
Powder Deposition Head
Console Unit inclusive of Laser Generator & Argon Purification system
Argon Chamber
2 axis Positioner
HMI

Large-format multi-axis deposition platform engineered for manufacturing, repair, and hybrid fabrication of oversized high-value metal components with exceptional geometric freedom.

Supports both powder-fed and wire-fed laser deposition — enabling high-resolution builds, ultra-high deposition rates, and flexible material strategies within a single system. Integrated BEAM SWITCH offering instant changeover.

Fully enclosed argon chamber architecture designed for reactive and aerospace-grade alloys including titanium, Inconel, tantalum, and refractory materials.

Integrated monitoring suite with HDR melt-pool imaging, pyrometer feedback, and live process diagnostics for stable deposition and repeatable metallurgical quality. Machine Learning Software & Process Library for rapid prototype development.

True simultaneous multi-axis pathing enables complex freeform geometries, internal features, and non-planar deposition with improved surface continuity and reduced support dependency.

High-power fiber laser architecture combined with optimized material delivery systems delivers rapid deposition rates for large-part manufacturing and heavy-industry applications.
Rocket nozzles, guidance fins, propellant tanks, and structural components in titanium and refractory alloys — printed on-demand.
Turbine blades, blisks, and engine components in Inconel and titanium — with 50–70% shorter lead times than conventional manufacturing.
Mission-critical structural parts with on-demand production capability — no advance batch ordering, no supply chain dependency.
Large bore cladding of shafts, seals, and housings with wear and corrosion-resistant super-alloy coatings extending operational life.
Propeller hubs, shaft journals, and large structural marine components — corrosion-resistant cladding and additive repair.
Wear-resistant surface engineering and fabrication of large wear parts — reducing replacement frequency and total cost of ownership.
Full-capability R&D platform for materials science, process development, and advanced manufacturing research programs.
Any metal AM alloy available in powder or wire form can be processed — primary focus on titanium, nickel, and refractory alloys for the most demanding applications.

| Deposition Mode | Application | Rate |
|---|---|---|
| Powder — Freeform Fabrication | 3D printing | Up to 1 kg/hr |
| Powder — Layer Cladding | Surface engineering | Up to 3 kg/hr |
| Wire — Freeform Fabrication | High-rate deposition | Up to 4 kg/hr |