GF500 Pellet 3D Printer.
Product Overview
The GF500 is a mid-format industrial pellet 3D printer built for real-world production needs. By directly using thermoplastic granules, it enables faster build times, lower material costs, and efficient manufacturing of large, functional components—all within a single print cycle.
Build Volume: 500 × 500 × 500 mm
Designed to handle mid-scale production, tooling, and full-size prototypes without splitting prints or increasing lead time.
Print Technology
FGF – Fused Granulate Fabrication
Extrusion Temperature
Up to 300°C
Bed Temperature
Up to 120°C
Chamber Temperature
Up to 50°C
Enclosure
Fully Enclosed
Material Format
Plastic Pellets (Granules)
Why Pellet-Based 3D Printing?
Reduce material costs by up to 80% compared to traditional methods
Achieve faster output with higher material flow rates
Work with a broader range of industrial-grade thermoplastics
Ideal for producing large parts and production-ready components
Engineered for Mid-Scale Production
The GF500 is designed for teams that need more than prototyping. It allows manufacturers, engineers, and R&D labs to produce large, durable parts in one go—while keeping material costs and production time under control.
Key Benefits
Lower Material Cost
Uses raw thermoplastic pellets to significantly cut material expenses, offering up to 80% savings in large-scale printing.
High Throughput Printing
Screw-based extrusion system delivers higher material flow for faster and more efficient part production.
Large Build Volume
Spacious 500 mm cubic build allows full-size parts and prototypes to be printed in a single build.
Fully Enclosed Chamber
Maintains controlled printing conditions for consistent results across complex and high-performance applications.
Material Flexibility
Compatible with a wide range of thermoplastics, including recycled, reinforced, and engineering-grade materials.
Technical Specifications
Compatible Materials
The GF500 is compatible with a diverse range of thermoplastic pellets, allowing flexibility across applications—from prototyping to production. Supported materials include:
Applications Across Industries

Manufacturing
Jigs, fixtures, and tooling for faster production workflows

Automotive
Large prototypes, ducts, and functional vehicle components

Architecture
Scaled models, molds, and structural prototypes

Research Labs
Built for Industrial Environments
Designed for long-duration, continuous printing operations
Robust mechanical structure for stability and repeatability
Industrial-grade motion system for reliable performance
Built Using GF500 Technology
Print Bigger. Spend Less. Deliver Faster.
Produce large, functional parts with higher efficiency and lower material cost—without compromise.


















