X400

Fused Deposition Modeling (FDM) 3D Printer

X400 V4 3D printer swiftly and cheaply turn your ideas into prototypes, concepts or demo models. Engineered and made in Germany, the X400 V4 is designed for large format industrial 3D printing and never fails to impress all types of development teams with its high precision, speed and large printing volume.

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Simplify3D Software

One integrated software suite contains everything you need to print high quality parts. Customizable settings and advanced processes put the controls into your hands. Support for dual-extruders, multi-part printing and even multiple processes within one part. Included in scope of delivery.

Large build platform

Its 400 x 350 mm x 310 build platform and a possible height enable the X400 V4 to provide the ideal basis for printing large objects.

Printing with two print heads

The X400 V4 comes with two DD3 extruders as standard. This advanced extruder technology for two printer heads comes as a standard feature. The DD3 3D extruder developed by German RepRap features two print heads, thus allowing printing in two colors or with water soluble support material such as PVA for PLA or HIPS for ABS parts. The extruder can be heated to 290°C (554° F), thus offering flexibility in the choice of possible materials.

Innovative extruder technology

The rectangular build platform allows better utilisation of the print area since most print models don’t have a square foot print.

Adhesion optimized build platform

The new version of the X400 stands out on account of its adhesion-optimized build platform. This was achieved by means of a new heated bed design that ensures uniform heat distribution. This has a positive effect on the adhesion of print objects on the build platform.

Precision in continuous operation

The X400 offers a stable and play-free basic structure in order keep any oscillation and vibration down to a minimum. Milled aluminum parts have been added to the Y pulley of the X400, which now has a double bearing. This ensures more precise running of the belt pulley and thus helps to improve the print result.

Ease of maintenance

Quality components and low-wear materials make the X400 V4 into a durable device designed from the start for continuous industrial use. The consistent use of open source architecture ensures greater investment protection and openness compared to new developments

Stand-alone printing

The X400 V4 can be operated via an LCD display with an SD card reader. An optional network connection via Ethernet and Wifi as well as browser-based control and print monitoring via webcam are possible.



Build platform (XxYxZ): 350 x 400 x 310 mm (15.4 x 15.7 x 12.2 in)
Print speed : 10 - 200 mm/s
Travel speed : 10 – 300 mm/s
Position accuracy (X/Y) : +/- 0.1 mm
Layer high min: 0.05 mm
Filament / Nozzle diameter (standard) : 1.75 mm / 0.4 mm
Consumables* : ABS, PLA, PS, PVA, TPU93, Carbon20, Laywood, Laybrick, PP, Bendlay, Soft-PLA, SmartABS
Extruder type : Dual DD3
Extruder temperature (max) : 290° C / 554° F
Print bed technology : heatable
File transfer : LC Display with SD card slot, USB, wireless printing via Wifi, Ethernet
Software included : Simplify3D
Power consumption (max) : 600 W
Operating voltage* : 115-230 V
Ambient temperature : 15-26°C / 59 – 78.8°F
Dimensions approx : 735 x 730 x 777 mm
Weight approx.: 50 kg / 110.23 lbs
Standard: DIN 10218-2
Nozzles available: 0.25 / 0.3 / 0.35 /0.5 / 0.6 / 0.8
Nozzle material: Brass, hardened steel
Technology: FFF (Fused Filament Fabrication)

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.

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Aerospace
Automobiles
Education
Medical

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.

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