3D Printer Pellet

IT3D P300 Pellet

The most advanced, economical and sustainable 3D pellet printer on the market

IT3D P300 Pellets

The IT3D P300 Pellet is a 3D printer specifically designed for additive manufacturing using direct extrusion of thermoplastic materials in pellet form. This system eliminates the need for filament, allowing materials to be processed directly in their most basic state, including experimental polymers, composites, or formulations not commercially available.

It is built to work with high-performance polymers and post-consumer recycled plastics, making it especially suitable for research, new product development, and low-cost production. Its open-system architecture enables the validation of custom polymers, reinforced compounds, and other thermoplastic materials that are not typically available in filament form.

With a build volume of 300 x 300 x 450 mm, the P300 allows for the reliable and precise fabrication of medium-sized parts. Its enclosed structure ensures greater thermal stability during the printing process.

The IT3D P300 Pellet redefines the future of plastic through 3D printing with recycled materials, promoting the circular economy. This innovative system merges sustainability and technology by enabling the use of plastic waste in flake form as raw material in 3D printing, reducing environmental impact, supporting the reuse of post-consumer plastics, and allowing for scalable and responsible production.

High Performance Ceramic Materials

The IT3D P300 Pellet allows the use of ceramic-filled materials, making it ideal for advanced research and development.

Advantages of the IT3D Pellet Extruder: Manufacturing with Advanced Materials

If your goal is to work with pellets, the innovative technology developed by IT3D offers key benefits that are transforming additive manufacturing. The pellets, small polymer pellets, serve as raw material directly into the printer’s extrusion system, eliminating the need for a prior filament manufacturing process. This not only reduces costs, but also preserves material properties.

Features of the IT3D pellet extruder:.

    • Handling of complex materials: some examples are: (Inox 316L), (PA12 30% CF), (PC+20% CF), (PEKK CF), (PC-PTFE) … And many more!
    • Maximum head temperature: 300 ºC
    • Adjustable nozzles: 0.4 mm | 0.6 mm | 0.8 mm | 1.0 mm | 2.0 mm
    • Extruder with double temperature control: Ensures a homogeneous melting of the material, improving the adhesion between layers and the final quality of the pieces

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From Waste to Resource:
The 3D Printer for the Circular Economy

The IT3D P300 Pellet is an additive manufacturing platform focused on the valorization of recycled materials in 3D printing processes. This system enables the direct extrusion of plastics in flake or pellet form, allowing for the reuse of post-consumer waste as technical raw material, without requiring prior conversion into filament.

Thanks to its ability to process non-standard and recycled materials, the P300 is an effective tool for circular economy strategies applied to additive manufacturing. Its architecture is designed to integrate into technical recycling processes, promoting the reduction of environmental impact associated with plastic use, while enabling a scalable, efficient, and responsible production in terms of material use.

This approach not only allows for the direct use of plastic waste, but also advances research and optimization of new recycled or hybrid materials for industrial and sustainable development applications.

Reduction of environmental impact

Transforms plastic waste into new products.

Circular Economy

Circular Economy

Efficient production

Less waste of resources, higher productivity.

Compatibility with advanced materials

Compatibility with advanced materials

Sustainability

Contribute to a greener future by reusing materials.

Scalability

Ideal for large parts or series where the filament does not yield.

IT3D P300 Pellet

The best value for money in 3D printing with pellets

The IT3D P300 Pellets stands out as one of the most advanced and affordable printers on the market, combining high-performance technology with economic efficiency.

Highlighted features:

    • Printing volume: 300 × 300 × 450 mm, ideal for pieces with an important size.
    • Resolution of up to 0.05 mm, for high precision finishing.
    • Fused Granulate Deposition (FGD) technology, which eliminates the need for filament and reduces production costs.
    • Nozzle temperature up to 300 °C and hot bed up to 120 °C, compatible with technical and recycled materials.
    • Automatic leveling and flexible magnetic base, for a comfortable and precise use experience.
    • 7-inch LCD touch screen, with intuitive and easy-to-use interface.
    • Connectivity via Wi-Fi, Ethernet and USB for agile and remote management.

Perfect for laboratories, companies and manufacturers looking for an efficient, sustainable and professional solution.

Technical Specifications

FeatureDetails
Printing technologyFGD (Fused Granulate Deposition)
Printing volume300 x 300 x 450 mm
Layer height0.1 – 1 mm
Operating speedMax. 180 mm/s
Resolution0.05 mm
Compatible pelletPLA, ABS, TPU, PETG, etc.
Nozzle diameter0.4 – 0.6 – 0.8 – 1 – 2 mm
Number of extruders1
Heated chamberBy air fan (max. 60º)
Hotbed temperatureMax 120 ºC
Nozzle temperatureMax 300 ºC
FilterHEPA H13 and activated carbon (99.95% of particles)
LCD screen7-inch color touchscreen
Slicing softwareCura Slicer
File formats for slicingSTL, OBJ, Gcode
ConnectivityEthernet cable, Wi-Fi, USB
Nominal voltage100-120V / 200-240V / 50-60 Hz
Output voltage24 V
Nominal power270 W
Integrated chamberYes
Calibration60 kg
LevelingAutomatic
PlatformFlexible magnetic bed
3D printer dimensions560*510*1020 mm
3D printer weight75 kg
Weight of 3D printer with packaging98.5 kg
Operating systemWindows 7 or higher, MAC OS, Linux
Totally closedYes
Resumption of printing after power failureYes
Extruder with double temperature controlYes

IT3D LEARNING

Course: Introduction to Pellet-Based 3D Printing

Develop practical expertise in direct pellet extrusion, focusing on material preparation, screw-driven flow regulation, and process optimization. This course is tailored for professionals aiming to adopt high-throughput additive manufacturing using thermoplastic pellets across diverse industrial and research applications.

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