3D printer Intamsys Funmat Pro 310 Neo
Intamsys Funmat Pro 310 Neo — an industrial FFF 3D printer with an independent dual-nozzle IDEX system, designed to work with two materials, soluble supports, as well as duplication and mirror printing modes. Thanks to independent extruder control, the printer can simultaneously produce two identical parts or create complex products using a separate material for support structures. The printer is equipped with nozzles heated to up to 350 °C, a build platform heated to up to 160 °C, and a fully enclosed thermally stabilized chamber with a temperature of up to 100 °C. When using a single extruder, the available print area is 305 × 260 × 260 mm, making it suitable for producing medium-sized functional parts. In dual-nozzle mode, the working area is 260 × 260 × 260 mm and supports dual-material, mirror, and duplicate printing.
Independent IDEX System for Different Production Scenarios
The key feature of the Intamsys Funmat Pro 310 Neo is its independent dual-nozzle IDEX (Independent Dual Extruder) system, which allows each extruder to operate autonomously. This expands the printer's capabilities and makes it possible to select the optimal operating mode depending on the type of product and production task.
Mirror Mode — Mirror Printing
In this mode, two extruders simultaneously create symmetrical parts, while one model is automatically mirrored relative to the central axis. This function is especially useful for manufacturing right- and left-hand components, paired housing parts, and other symmetrical elements.
Duplicate Mode — Duplicate Printing
Both print heads operate in parallel and produce two identical parts. This approach makes it possible to increase productivity during small-batch manufacturing, prototyping, and production of functional components.
Support Mode — Soluble Support Printing
The IDEX system makes it possible to separate the materials used for the main model and supports. This technology simplifies the production of structures with complex geometry, internal channels, significant overhangs, and other areas where support structures are required.
Dual Color Mode — Two-Color Printing
The Funmat Pro 310 Neo can also work with two materials of different colors simultaneously. This makes it possible to create separate color zones on the finished part without additional painting.
Thus, the IDEX system of the Funmat Pro 310 Neo provides a wide range of operating scenarios — from combining materials and using soluble supports to simultaneously manufacturing two identical or symmetrical parts.
High-Speed Printing and Motion Control Algorithms
For different materials, the printer offers eight high-speed printing profiles, while the stated productivity ranges from 500 to 1000 g of parts per day. When operating in Duplicate Mode and Mirror Mode, productivity can reach up to 1 kg of parts per day. The Funmat Pro 310 Neo uses a new-generation control board based on an NXP microcontroller, optimized for high-speed operation. System movements are controlled by intelligent speed prediction and material flow compensation algorithms. The printer analyzes the characteristics of the toolpath and adjusts filament feed parameters accordingly, contributing to more stable surface formation during high-speed printing.
Standalone Filament Feed Container with Active Drying
The Intamsys Funmat Pro 310 Neo comes with a standalone filament container that maintains a controlled material storage environment directly during printing. The sealed container is equipped with a drying system and sensors that monitor temperature and humidity. This is particularly important when using hygroscopic polymers that can actively absorb moisture from the surrounding air. The design also features an active spool fixation system that ensures stable filament tension and helps prevent sagging and tangling. The container can simultaneously accommodate two spools weighing up to 2 × 1 kg.
Supported Materials and Applications
The Intamsys Funmat Pro 310 Neo is designed to work with engineering thermoplastics, composite materials, and high-performance polymers.
Recommended Printing Materials
- Engineering thermoplastics: PC, ABS-HS, PA.
- Composite materials: PPA-CF, PPA-GF, and other polymers reinforced with carbon or glass fiber.
- High-performance polymers: PPS.
- Support materials: support and soluble materials.
Thanks to its compatibility with a wide range of technical filaments, the printer can be used for rapid prototyping, production of functional components, manufacturing of tooling, and small-batch production of parts that require increased strength and resistance to temperature loads.
Applications
- Mechanical engineering and industrial manufacturing: production of functional parts, housings, brackets, tooling, and various fixtures.
- Robotics and automation: production of gears, hinges, manipulator components, load-bearing elements, and parts for automated systems.
- Automotive industry: creation of functional components, electrical parts, and prototypes.
- Electronics and electrical engineering: manufacturing of housings, mounting parts, and protective elements.
- Research and educational projects: implementation of engineering developments, testing of new designs, educational tasks, and 3D printing service projects.
Technical Specifications
| Parameter | Value |
| Printing technology | FFF |
| Chamber type | Fully enclosed |
| Extruder type | IDEX |
| Number of nozzles | 2 |
| Max. number of spools | 2 pcs. up to 1 kg each |
| Filament storage system | Fully sealed container with built-in reusable molecular sieve for drying, real-time temperature and humidity monitoring, standalone operation |
| Filament diameter | 1.75 mm |
| Layer thickness | 0.1–0.3 mm |
| Max. nozzle temperature | 350 °C |
| Max. chamber temperature | Up to 100 °C |
| Max. platform temperature | Up to 160 °C |
| Max. printing speed | Up to 500 mm/s |
| Max. printing acceleration | Up to 10,000 mm/s² |
| Build surface | Magnetic flexible platform |
| Max. build volume | Single extruder: 305 × 260 × 260 mm; two extruders (IDEX): 260 × 260 × 260 mm |
| Platform calibration | Automatic mesh leveling (up to 100 points) |
| Resolution | XY: 16 μm; Z: 1.25 μm |
| Display | 7" touchscreen |
| Software | INTAMSUITE NEO |
| Supported file types | .stl, .obj, .x3d, .3mf, .stp, .iges |
| Compatible operating systems | Windows |
| Connection interfaces | Wi-Fi, Ethernet, USB |
| Max. power | 1500 W |
| Input voltage | 200–240 V, 7 A, 50/60 Hz |
| External model cooling | Fan cooling |
| Nozzle maintenance | Quick-release design, easy installation and removal |
| Functions | Filament runout warning, remote control, remote printing, online updates |
| Safety features | Door lock, overheat protection, overload protection, warning labels |
| Filtration system | HEPA + activated carbon, replaceable filters |
| Operating temperature | 0 °C – 30 °C |
| Operating humidity | 20–70 % |
| Storage temperature | -20 °C – 55 °C |
| Storage humidity | 10–90 % |
| Device dimensions | 700 × 655 × 700 mm |
| Device weight | 80 kg |
Ordering the 3D Printer and Selecting Materials and Components
You can order the Intamsys Funmat Pro 310 Neo from our website with delivery across Ukraine. If you need assistance selecting engineering, composite, or high-temperature materials, consumable components, or accessories, our specialists can help determine the optimal configuration based on your specific production requirements. You can also receive advice on material compatibility and selecting the appropriate equipment for stable 3D printer operation.
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