The Kings P260 Pro is an SLS (Selective Laser Sintering) 3D printer that combines industrial performance with a compact format, ideal for technical research environments, design validation, and application development in medical, automotive, and other sectors. With simplified operation, modular structure, and high thermal efficiency, it is the right solution for those seeking precision, reliability, and versatility in the production of prototypes and functional parts.
Context and challenge
Technical Specifications
| Machine Dimensions | 1260×1060×2130 mm |
| Build Cylinder Size | 260×260×400 mm |
| Equipment Net Weight | 800 kg |
| Powder Layer Thickness | 0.06–0.3 mm (adjustable) |
| Scanning Speed | 10000 mm/s |
| Laser System | CO₂ 60W or 300W fiber laser |
| Galvanometer Scanner | Three-axis dynamic focusing scanning system |
| Sintering Temperature | 280℃ |
| Thermal Field Control | Independent zone control |
| Operating System | Windows 10/11 |
| System Control Software | Kings SLS-P260 Pro (proprietary development) |
| Data Format | SLC file or other convertible formats |
| Power Requirements | 380 V ±10%, 3~N/PE, 50/60 Hz |
| Operating Environment Temperature and Humidity | Constant temperature of 25 °C, humidity ≥30% (non-condensing) |
| Build Materials | PA12, PA12GF, TPU-23 |
The solution or technology
Compact Structure and Reduced Space Footprint
The P260 Pro features a compact design with an integrated modular structure, which includes a powder supply system and a built-in lifting print platform. This configuration significantly reduces the space footprint, making it ideal for laboratories, R&D centers, and industrial pilot lines with physical space limitations.
Simplified Operation and Intuitive Interface
Developed with a focus on user experience, this printer integrates easy and accessible operating software that streamlines all phases of the printing process. The build cylinder is removable and easily replaceable, facilitating maintenance operations and improving productivity time between cycles.
Stable Performance and High Efficiency
The Kings P260 Pro uses three-axis dynamic focusing technology, combined with a segmented and independent thermal control system. This architecture maintains uniform temperature distribution in the build volume, ensuring an ideal thermal field for sintering and increasing the dimensional accuracy of manufactured parts.
Adjustable Parameters and Compatibility with New Materials
The P260 Pro's open material system allows complete freedom for development and testing of new materials, making it particularly interesting for research projects and specific applications. All printing parameters can be adjusted independently, giving the user full control over the process.
Industrial applications
The Kings P260 Pro is widely used in various industrial sectors, such as:
- Automotive: Production of technical parts, functional prototypes, and assembly testing
- Medical: Manufacturing of customized devices and biomedical molds
- Animation and Multimedia: Creation of characters, props, and scenographic elements
- Rapid Prototyping: Dimensional and ergonomic validation of products
- Education and Research: Advanced training in additive manufacturing technologies
- Footwear: Development and production of complex and customized models
Results and benefits
High Nylon Powder Reuse Rate
With extensive experience in materials and equipment research and development, Kings 3D has created different types of SLS-compatible nylon powders with high reuse rates. This characteristic translates into significant reduction of operational costs and greater process sustainability.
How NM3D can help
NM3D Ibérica provides advanced additive manufacturing solutions such as the Kings P260 Pro — a high-efficiency SLS printer, ideal for those seeking precision, material versatility, and industrial performance in a compact format.
Contact us for more information.
Contact
Email: sac@nm3diberica.com
Would you like to assess this solution for your application?
Contact NM3D Ibérica to discover how the Kings P260 Pro can transform your additive manufacturing projects with precision, efficiency, and versatility.