Desktop Metal Studio System – BMD-PP0000 Metal 3D Printer Designed for safe, office-friendly metal 3D printing. No lasers. No loose powders.
The Studio System by Desktop Metal is the world’s first office-friendly, end-to-end metal 3D printing solution, purpose-built for engineers, designers, and low-volume manufacturers. Leveraging Bound Metal Deposition™ (BMD) technology, it enables the creation of high-quality, complex metal parts — all without the need for hazardous powders, loose wires, or dedicated industrial facilities. With its streamlined workflow and intuitive design, the Studio System brings professional-grade metal additive manufacturing directly to the workspace.
Ideal for functional prototyping, tooling, and small-batch production, the Studio System empowers teams to iterate quickly and cost-effectively in a wide range of metal alloys. By combining easy setup, automated debinding and sintering (when paired with its full suite), and clean operation, it significantly lowers the barrier to entry for metal 3D printing. Whether you're developing new products or refining existing designs, the Studio System offers an accessible and efficient path to real-world, end-use metal parts.
Key Features:
· Model Number: BMD-PP0000
· Technology: Bound Metal Deposition™ (BMD)
· Material Form: Bound metal rods (safe, easy to handle)
· Build Volume: 300 x 200 x 200 mm (11.8 x 7.9 x 7.9 in)
· Layer Height: 50–300 microns
· Compatible Materials: 17-4PH, 316L, H13, Copper, and more
· No Hazardous Powders or Lasers – Safe for office/lab environments
· Integrated Software: Fabricate™ software automates support generation and print prep
· Connectivity: Ethernet, USB, and cloud-based print managementWhat’s Included:
· Desktop Metal Studio Printer – Model BMD-PP0000
· Power cord, accessories, and user manuals
· (Note: Debinder and Furnace not included – this listing is for the printer unit only)Ideal Use Cases:
· Prototyping functional metal parts
· Design verification before full-scale production
· Academic and engineering lab research
· Low-volume manufacturing of complex geometries
