Raise3D RMF500

Not Rated
fai acquisti fino a 3.000€ e paga in 3 rate con  paga a rate Klarna
buy up to €3.000 and pay in 3 with  pay in 3 with Klarna
prodotto presente su  Crea3D è presente su MEPA

Fast Production of Large End-use Parts

The RMF500 is a reliable, precise, and flexible 3D printer that produces high-performance end-use parts with repeatability, making it an excellent option for small batch manufacturing, as well as for other applications.

High Performance and Lightweight Fiber Reinforced Material

The RMF500 is specialized in printing complex workpieces with a high strength-to-weight ratio in a single job, using fiber-reinforced thermoplastics. Raise3D ensures performance from each filament spool, in addition to continuously expanding material choices.

Expanding Filament Spool& Certification
Raise3D’s Open Filament Program (OFP) continuously collaborates with third-party filament manufacturers to identify and select top-performing filaments for Raise3D printers. OFP has now entered phase 2.0, with certified industrial-grade filaments with specific mechanical properties and guaranteed enhanced performance.

Filament Cartridge
The RMF500 has four large, multipurpose filament cartridges, with each cartridge having a maximum load of 2.5kg, enabling automatic switching and positive pressure humidity control below 5% RH.


High-Grade Nozzle Hardness
The RMF500 uses silicon carbide nozzles with a hardness of over 60 HRC to resist abrasion from carbon fiber and glass fiber materials.

Specialized Support Material
Each Raise3D fiber-reinforced filament is developed with a paired support material. For example, the breakaway support filament for PA12 CF can easily break away, resulting in a clean overhang surface.


Delivering Productivity and Repeatability

Thanks to the RMF500’s FFF technology, this 3D printer features repeatable positioning accuracy, consistent extrusion flow, a high print speed, and a huge build volume. These features enable the RMF500 to deliver large batches or workpieces in a highly efficient manner.

Linear Motor for Speed and Precision
The RMF500 uses a linear motor-driven system, with a 1μm synchronized closed-loop system, which overwhelms traditional system with belts, pulleys, and leadscrews. This linear motor-driven system gives the RMF500 an acceleration of 2G and a speed over 1000mm/s2.

Huge and Reliable Build Size
The RMF500’s build volume is of 500x500x500mm, for both single and dual extruder printing. Its vacuum manifold platform is installed with a PEI building plate with pressure detection to deliver worry-free startup and easy removal of prints.


High Performance IDEX
The RMF500’s independent extrusion systems (IDEX) are manufactured using high-temperature alloys and industrial ceramic composite materials. Each extruder has a heating capacity of up to 300 W, ensuring a stable and high extrusion rate of up to 500 g/hr.

Heavy Duty Structure
An all-steel structure frame grants the RMF500 high capacity and performance. The RMF500 has high-grade hardness steel for low clearance linear guides, a Z-axis with a maximum load limit of over 100kg, and a 50% lower error deflection.


Distinct Cost-Efficiency among Peers

The RMF500 is designed to achieve the maximum cost-efficiency in terms of material performance vs the process cost. The effective application of material science resulted in the optimization of the system’s design with a much lower energy consumption.

Science of Fiber-Reinforced Thermoplastic
The Raise3D material science team can produce composite filaments with significantly improved thermal and mechanical properties, by reinforcing thermoplastic with fibers. Fiber-reinforced filaments have high printability and require an environment that does not have to be as hot as with other printing materials.

Non-Heated Chamber
Without a heated chamber, peak power consumption is less than 3kW. The average power consumption per unit printing area is 60% lower than competitors.


Filament Cost
Raise3D fiber-reinforced filaments are competitively priced, making additive manufacturing with fiber-reinforced thermoplastics more accessible.




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Print Technology Fused Filament Fabrication (FFF), Powered by Hyper FFFTM
Build Volume (W × D × H) 500 × 500 × 500 mm in normal printing mode
Maximum Length on the Diagonal=707 mm (27.8 inch)
Extrusion System IDEX (Independent Dual Extruders), Auto Nozzle Wiping,
Filament Run-out Detection
Max Nozzle Temperature 330 ºC
XYZ Positioning Resolution
(XYZ Step Size)
1, 1, 0.09765 micron
Print Head Speed/Acceleration Up to 500 mm/s Speed and Up to 15000 mm/s2 Acceleration
Build Plate Spring Steel Plate, Soft Magnetic Adsorption, Auto Bed Leveling
Build Platform Temperature Up to 110ºC
Nozzle Diameter 0.4 mm (Default), 0.6 mm (Coming Soon)
Filament Feeding Auto Filament Switching, Build-in Drying System
Materials Filament 1.75 mm diameter. Load four 1 kg or 2.5 kg filaments
(2 filaments for 1 nozzle)
Raise3D Hyper Core Filaments
(For high-speed Printing)
Hyper Core ABS CF15, Hyper Core PPA CF25
Coming Soon: Hyper Core PPA GF25
Raise3D Hyper Speed Filaments
(For high-speed Printing)
Hyper Speed ABS, Hyper Speed PLA
Raise3D Industrial Filaments Industrial PET CF, Industrial PET Support
Coming Soon: Industrial PPA CF, Industrial PPA Support,
Industrial PPA GF, Industrial PET GF, Industrial PETG ESD
3rd Party Filaments Supported by Open Filament Program through Validation
Connectivity Wi-Fi, LAN, USB port, Live camera
Network Ethernet, Wireless 802.11 b/g/n, 2 × 2 MU-MIMO WLAN
Display 33.8cm (13.3 inch) Color Touchscreen (1920 × 1080)
Slicing Software ideaMaker
Supported File Types STL/ OBJ/ 3MF/ OLTP
Supported OS WINDOWS/ macOS/ LINUX
and Shipping
Power Supply Input 3-Phase 380 V AC 25 A
Operating Ambient Temperature 15 - 30 °C, 30 - 70 % RH Non-Condensing (HOLD)
Storage Temperature -40 to 54 °C, 10 - 85 % RH Non-Condensing (HOLD)
Machine Size (W × D × H) 1340 × 990 × 2370 mm
Weight Net Weight: 790 kg
Gross Weight: 1048.1kg
Shipping Dimensions 1800 × 1160 × 2260 mm

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