The LPW Z2500 is iAM3D’s flagship ultra-large format Laser Directed Energy Deposition (L-DED) platform — engineered to redefine what is possible in industrial metal additive manufacturing.
Designed for Space-Tech, Aerospace, Defence, Oil & Gas, Heavy Engineering, and Research institutions, the LPW Z2500 enables the fabrication, repair, and surface engineering of components at scales previously unattainable in commercial Laser-DED systems.
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.
Fully opening front and rear doors provide unrestricted access for quick loading and unloading of components. The pass-through design accommodates long workpieces extending beyond the machine enclosure, enabling flexible processing of shafts, plates, and cylindrical parts.
The LPWZ2500 features a fully open front and rear machine architecture, allowing long shafts and cylindrical components to pass through the machine with ease. This enables the processing of workpieces significantly longer than the machine enclosure while maintaining safety and accessibility.
Control. Monitor. Optimize. All from a single interface.