FUNMAT PRO 410

The INTAMSYS Funmat Pro 410 is a versatile and high-performance 3D printer designed for industrial applications. With a large build volume of 305 x 305 x 406 mm, this machine is ideal for prototyping, small-scale production, and rapid customization. Featuring a closed-box chamber and open material system, the Funmat Pro 410 excels at printing with temperature-sensitive and high-performance materials like PEEK, PEI, PPSU, and Carbon Fiber. Equipped with advanced features like dual extrusion, automatic nozzle cleaning, and real-time monitoring via Wi-Fi, it provides reliability, precision, and flexibility to meet demanding production needs.

This printer stands out with its high-temp capabilities, supporting extruder temperatures of up to 500°C and a heated chamber that can reach 90°C, making it suitable for various industrial sectors such as aerospace, automotive, and medical manufacturing.

Print Quality

The INTAMSYS Funmat Pro 410 delivers high precision with layer resolutions as fine as 50 microns. Its dual extrusion system enables clean, detailed prints with soluble supports, while automatic leveling ensures consistent accuracy. With nozzle options from 0.25 to 1.2 mm, it balances speed and detail, ideal for both fast and intricate prints. The linear guide system and oriental motor provide reliable, high-speed performance, making it perfect for high-performance materials like PEEK and PEI, ensuring smooth finishes for industries requiring precision.

Book a free demo or consultation of this product and get your sample parts printed:

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Advanced Temperature Control

The Funmat Pro 410 comes equipped with precision-engineered dual-nozzle technology, capable of reaching temperatures up to 500°C. Its fully heated print chamber maintains a stable environment at 90°C, ensuring optimal printing conditions for high-performance materials like PEEK and PEI. Combined with a 160°C heated bed, this design minimizes warping, allowing for more durable and mechanically strong prints even for complex geometries.

Materials That Drive Performance

The INTAMSYS Funmat Pro 410 is designed to handle a wide range of high-performance materials, making it an excellent choice for demanding industries such as aerospace, automotive, and healthcare. This 3D printer supports engineering-grade polymers including PEEK, PEI (ULTEM), PPSU, and carbon fiber composites, all known for their strength, heat resistance, and durability. These materials are essential for creating parts that require exceptional mechanical properties and can withstand extreme operational environments. Whether for prototyping or small-scale manufacturing, the Funmat Pro 410 delivers reliable and consistent performance with high-temp, high-strength materials.

Specialty Glass Plate for High-Performance Materials

Featuring a PEEK-specific microcrystalline glass plate, the Funmat Pro 410 ensures enhanced adhesion and smooth finishes when printing advanced thermoplastics. The sturdy 6mm glass plate allows for precise heat distribution and supports large builds up to 305 x 305 x 406 mm, offering reliability and consistency for high-quality industrial-grade prints.

Precision and Performance for Critical Applications

When high accuracy and material performance are non-negotiable, the INTAMSYS Funmat Pro 410 is the solution. Designed to meet the stringent demands of industries such as aerospace, automotive, and medical manufacturing, this printer consistently produces high-quality, functional parts that conform to rigorous industry standards. Its robust engineering allows for precision and reliability, making it ideal for prototyping and small-batch production where both material properties and geometric accuracy are essential.

Meet The FUNMAT PRO 410

Key Features of the FUNMAT PRO 410

Dual extruders can reach up to 500°C, allowing printing with high-performance materials like PEEK, PEI (ULTEM), PPSU, and carbon fiber composites.
Heated print bed up to 160°C and a heated chamber up to 90°C for optimal printing conditions and reduced warping.

Allows printing with soluble support materials for cleaner, more complex designs and smoother finishes.

Generous build area of 305 x 305 x 406 mm (12 x 12 x 16 inches), enabling the printing of large parts or multiple parts in a single print run.

Sensor-assisted automatic bed leveling ensures consistent and accurate prints with minimal manual adjustment.

Compatible with a wide range of 1.75 mm filaments from third-party manufacturers, providing flexibility and cost efficiency.

Print layers as fine as 50 microns, with multiple nozzle sizes (0.25 mm to 1.2 mm) allowing for a balance between speed and detail.
Linear guide and oriental motor system for high-speed, precision printing.

INTAMSYS FUNMAT PRO 410 Specs

Printing TechnologyFused Filament Fabrication (FFF)
Build Volume305 x 305 x 406 mm
Build PlatformPI Sheet Heating + Ceramic Glass
LevelingAutomatic Leveling
Layer Thickness0.05-0.5mm
Printing SpeedMax. 300mm/s
Printing Nozzles2 Printing Nozzles Without Scratching
Extruder TemperatureMax. 500°C
Platform TemperatureMax. 160°C
Chamber TemperatureMax. 90°C
Filament Chamber TemperatureMax. 70°C
Input File TypeSTL, OBJ
Filament Diameter1.75mm
Position ResolutionXY: 16µm  Z: 1.6 µm
Smart Monitor & controlFilament Jam Warning, Filament Absence Warning, Power Failure Recovery
Safety CertificationFCC and CE
ConnectivityWiFi, Ethernet, USB
Supported MaterialsPEEK, PEEK+CF, PEKK, ULTEM (PEI), PPSU, PC, PC Alloys, PA, PA+CF, ABS, Carbon Fiber-Filled, Metal-Filled, Fiberglass-Filled, ASA, PETG, ESD-Safe, HIPS, TPU, PLA, PVA, etc.

Revolutionize Your Workflow with INTAMSUITE NEO

The all-new INTAMSUITE NEO slicing software is a game-changer for additive manufacturing. Designed to streamline your 3D printing experience, this powerful platform offers automated slicing for model design and repair, enabling users to simplify complex projects effortlessly.

INTAMSUITE NEO is not just a slicing tool—it’s an all-in-one collaborative platform that brings together online monitoring and process optimization. With its intelligent path planning algorithms, it optimizes print paths for maximum efficiency and quality, reducing material waste and improving overall production times.

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