PRO 310 NEO
PRO 310 NEO
PRO 310 NEO
PRO 310 NEO
FUNMAT PRO 310 NEO
The FUNMAT PRO 310 NEO is a reliable, fast, and high-performance 3D printer for industrial applications.
THE ULTIMATE SOLUTION FOR INDUSTRIAL HIGH-SPEED 3D PRINTING
The FUNMAT PRO 310 NEO is an industrial-grade 3D printer designed for professionals and businesses that require high-quality, high-performance , and fast 3D printing capabilities. It boasts a large build volume, high-temperature printing capabilities, dual extrusion, and automated mesh leveling, making it ideal for producing complex parts and prototypes.
FFF PRINTING
Fused Filament Fabrication (FFF) printing, also known as Fused Deposition Modeling (FDM), is a popular Additive Manufacturing technology that revolutionizes the manufacturing process. It involves the layer-by-layer construction of objects using a thermoplastic filament. As each layer solidifies, the platform lowers, allowing subsequent layers to be added, resulting in a complete 3D object.
PRICING STARTING AT $8,495
Model | FUNMAT PRO 310 NEO
Printing Technology | Fused Filament Fabrication (FFF)
Machine Size | 700 x 655 x 700 mm
Build Volume | 305 × 260 × 260 mm
Build Platform | Flexible Build plate + Magnetic Fixation
Leveling | Mesh leveling(Max. 100 points)
Layer Thickness | 0.1- 0.3mm
Max Travel Speed | Max. XY 500mm/s
Printing Nozzles | Quick release design, easy installation, maintenance and disassembly
Extruder Temperature | Max. 160°C (320℉)
Chamber Temperature | Max. 100°C (212℉)
FREQUENTLY ASKED QUESTIONS
Below you’ll find answers to our most commonly asked questions.
You can count on personalized support around the clock by email, live chat, or by joining a live webinar.
What materials can be used with FUNMAT PRO 310 NEO?
What are the benefits of the thermostatic chamber on the FUNMAT PRO 310 NEO?
The thermostatic chamber on the FUNMAT PRO 310 is actively heated and can maintain temperatures of up to 100°C. This ensures better mechanical properties of printed parts, thanks to the lower internal stresses and improved interlayer bonding. As a result, engineers and designers can produce functional components that are comparable to those produced through traditional manufacturing techniques.
How does the Independent Dual Extruders (IDEX) Design enhance the overall printing experience?
The Independent Dual Extruders (IDEX) Design of the 3D printer provides a streamlined and efficient printing process when working with engineering materials. By allowing the two printheads to work independently along the same axis, the printer can seamlessly incorporate support structures while maintaining the printing quality of complex geometries.