The Stratasys H350 is a high-performance 3D printer designed for volume production. Using Selective Absorption Fusion (SAF) technology, it ensures consistent, repeatable results for end-use parts. Featuring a build volume of 315 x 208 x 293 mm, efficient material usage, and automated workflow options, the H350 is an ideal solution for manufacturers, engineers, and service bureaus looking for cost-effective, scalable additive manufacturing.
The Stratasys H350 is a next-generation industrial 3D printer built for high-volume production of durable, end-use parts. Utilizing SAF (Selective Absorption Fusion) technology, it delivers consistent part quality, excellent mechanical properties, and reliable thermal control, making it an ideal choice for functional prototyping and full-scale production.
The Stratasys H350 is designed for manufacturers requiring repeatable, high-precision 3D printing. Its large build volume, automated workflow, and material efficiency make it the perfect solution for industrial applications, reducing production costs while maintaining superior part quality.
The H350’s SAF technology ensures uniform energy absorption across the build plane, leading to consistent part properties across batches. This powder-bed fusion process optimizes repeatability, accuracy, and mechanical integrity, reducing production inconsistencies.
With a build volume of 315 x 208 x 293 mm, the H350 is optimized for batch manufacturing. Whether producing multiple small components or large single parts, its efficient nesting capabilities ensure maximum material utilization and cost-effective production.
The Stratasys H350 features automated powder handling to reduce waste and improve efficiency. Its Big Wave™ powder deposition system ensures consistent layering, optimizing material usage while lowering operational costs.
The H350 supports industry-leading thermoplastics for high-strength, functional parts, including:
The Stratasys H350 is engineered for:
The H350 offers industrial production capabilities with lower total cost per part than traditional manufacturing. Its automated workflow, large build volume, and powder-efficient system make it a cost-effective, high-volume production solution.
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