3D Printers & AM Systems


Fused Deposition Modeling (FDM) | Fused Filament Fabrication (FFF)

FUNMAT 410 Pro is a Large Volume Printer for high end engineering plastics like Ultem, PEEK, PC and CF. The printer is an all metal completely enclosed system with complete insulated heated chamber (upto 90°C) to enable use of engineering grade plastics like PEEK & Ultem. It is equipped with filament detection and auto start option to allow continuous printing process.

The FUNMAT PRO 410 is an industrial additive manufacturing 3D printer designed and manufactured by INTAMSYS.For the very first time, the INTAMSYS FUNMAT PRO 410 features a dual extruder which operate in a large 305 x 305 x 406 mm build chamber (12 x 12 x 16 inch).The 500°C Max. hot end temperature, 160°C Max. heat bed temperature and 90°C Max. chamber temperature, provide a no warping and cracking printing of big size functional materials.

The FUNMAT PRO 410 is a Multiple Functional Materials 3D printer (PEEK, PEKK, PPSU, ULTEM, ABS, PC and much more). A linear guide and a high performance oriental motor ensure a high speed and a high precision.For an optimum comfort of use, nozzles can be cleaned automatically, a filament absence warning system is included, status are indicated by a LED system while an inside camera provides you with a live observation how the printing process.

Model: FUNMAT PRO 410
Printing Technology: Fused Filament Fabrication (FFF)
Build Volume: 305 × 305 × 406mm (12 × 12 × 16in)
Build Platform: PI Sheet Heating+Ceramic Glass
Levelling: Automatic Levelling
Layer Thickness: 0.05-0.5mm
Max Travel Speed: XY: Max. 500mm/s XY: Max. Acceleration 5000mm/s^ 2
Printing Nozzles: 2 Printing Nozzles Without Scratching, Able to Move up and Down
Extruder Temperature:Max. 500℃/932℉, Nozzles Liquid Cooling System
Platform Temperature : Max. 160℃/320℉
Chamber Temperature : Max. 90℃/194℉
Filament Chamber Temperature : Max. 70℃/158℉
Input File Type : STL, OBJ
Filament Diameter : 1.75mm
Position Resolution : XY: 15.6µm Z: 1.56µm
Smart Monitor & Control :Filament Jam Warning, Nozzles Liquid Cooling System, Filament Absence Warning, Power Failure Recovery
Safety Certification : FCC and CE
Connectivity : Wi-Fi, Internet, USB
Supported Materials : PEEK, 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, PLA, PVA, etc


The main driver in 3D printing for vehicles is not printing the entire vehicle, but a move to 3D printing tooling and end-use parts. According to SmarTech, prototyping has only penetrated automotive prototyping by 15% to 20%. Ford, for example, has been 3D printing prototypes for over 20 years to decrease design time.

Research & Development

Research & Development is a very crucial part of many industries as well as markets, it has its own benefits. Manufacturers and firms need to ensure that their products constantly evolve and meet the ongoing trends, changing market demands, challenging competition, varying consumer requirements and at the same time be cost efficient.


3D printing is used to produce detailed architecture models. Rather than relying on the past methods for creating models of buildings, it’s possible to convert standard CAD models used to design structures into 3D-printable files.


Education now finds a real meaning with the engineering practice and occupational skills training designed to build platform for innovative and efficient design. The process now provides student with the space for stimulating new originality and innovation, the design tools for transformation of concept sketch or real objects to 3D digital model, hardware support for getting 3D data from products, the intelligent manufacturing system that creates physical model from digital model quickly, and the manufacturing support for realizing small batch production of products.

General Engineering

When engineering challenging designs, 3D printing let’s you try new prototypes, address problems and find solutions as you go, all in a matter of hours. It also allows you to work with complex internal structures and geometries, something traditional methods just can’t offer.


Perhaps the most immediate and life-affirming industries currently benefiting from 3D printing are the medical industries. The most common application may be the use of a patient’s medical imaging data, such as a CT scan, to create a 3D-printed medical model.


From making prototypes to making complete games, today miraculous things are being done with 3D Printing. Gaming and 3D printing come together in a variety of ways, from the creation of board game and tabletop RPG pieces to a myriad of video game-focused projects, including a video game-inspired prosthetic arm as well as a prosthetic hand with its own onboard video game.


The aerospace industry is one of the main markets for 3D Printing or Additive Manufacturing. This sector has a long history of early adopters, manufacturers find their needs being fulfilled. Environmental performance restrictions, competitive market conditions and high manufacturing cost are just some of the challenges that aerospace faces today.

Batch Manufacturing in Aerospace

Hot Process - No residual stress,No heat treatment. Excellent Material Properties - Controlled microstructure, Better than cast, Compliant with applicable standards. Cost-Efficient Production - High productivity, Material recycling, Competitive powder cost.

Batch Manufacturing in Medical

Excellent Material Properties - Controlled microstructure, Better than cast, Compliant with applicable industry standards, Cost-Efficient Production, High productivity and Material recycling

Intamsys FUNMAT HT 3D Printer Gallery

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