F870 Large Format FDM 3D Printer
FabricationFDM 3D Printers
SAF™ (Selective Absorption Fusion™) 3D Printer for production‑grade polymer parts
The Stratasys H350™ brings true industrial additive manufacturing to organisations seeking repeatable, certifiable & cost‑efficient production
The Stratasys H350™ brings true industrial additive manufacturing to organisations seeking repeatable, certifiable and cost‑efficient production. Built on SAF™ technology, the system uses a high‑energy infrared‑absorbing fluid and precise thermal control to fuse polymer powder into strong, dimensionally stable parts. This process ensures uniform mechanical performance, even on fine features, flat surfaces and large components.
The H350’s Big Wave™ powder management system ensures even powder distribution across the entire bed, enabling consistent part quality and high yield. Combined with unidirectional architecture, the system prints, fuses and recoats in a single pass, maintaining stable thermal conditions throughout the build.
The H350 supports a growing portfolio of high‑performance materials, including:
These materials enable durable, repeatable components suitable for end‑use applications, from brackets and housings to clips, hinges and customised production parts.
The H350 is designed for manufacturers who require predictability and control. Users can choose their preferred build preparation software, reuse previous print settings and operate without enforced cloud connectivity—ideal for regulated or secure environments.
With few consumables, long‑life print heads and low maintenance requirements, the system delivers excellent uptime and reduced operational costs. High nesting density further increases throughput, enabling more parts per build and lowering cost‑per‑part.
The Stratasys H350™ is engineered for production‑grade polymer parts where consistency, durability and dimensional accuracy are essential. Its SAF™ technology and high‑performance materials make it suitable for a wide range of industrial applications, from functional prototypes to full‑scale manufacturing.

The H350 produces strong, repeatable parts ideal for brackets, housings, hinges, clips, gears and structural components. Its ability to maintain uniform mechanical properties across the entire build ensures reliable performance in demanding environments.
With materials such as PA11 and PA12 offering excellent impact resistance and thermal stability, the H350 is well‑suited for interior components, cable routing features, fluid‑handling parts, custom fixtures and lightweight assemblies.
The system’s fine detail resolution and smooth surface finish support the production of enclosures, wearables, connectors, appliance components and customised consumer goods.
Biocompatible and chemically resistant materials allow the H350 to produce durable components for medical devices, orthotic elements, laboratory equipment and functional prototypes. Its repeatability supports traceable, certifiable workflows.
The H350 excels at producing jigs, fixtures, assembly aids, positioning tools and end‑use factory components. Its strong, ductile materials withstand repeated use, making it a cost‑effective alternative to machined polymer tooling.
The system’s ability to deliver consistent, lightweight and dimensionally stable parts makes it suitable for non‑critical aerospace components, cabin elements, ducting features, covers and customised hardware.
With high nesting density and predictable output, the H350 is ideal for producing customised parts, low‑volume production runs, spare parts and on‑demand manufacturing where traditional tooling is too slow or costly.
The H350 is purpose‑built for organisations transitioning from prototyping to true digital production. Its combination of repeatability, material performance, workflow freedom and cost efficiency makes it a powerful platform for scaling additive manufacturing.
Whether you’re producing short‑run batches, customised components or high‑volume end‑use parts, the H350 provides the consistency, reliability and control required for industrial‑grade manufacturing.