The MPS 035L is an innovative robotic tool changing system designed for applications with payloads of up to 20 kg. With a total weight of just 0.321 kg on both the robot and tool sides, the MPS 035L stands out for its exceptionally low weight. This means that more payload is available for the tool, offering maximum dynamics and efficiency.
Its compact, modular design eliminates the need for an adapter flange for robots with a 50 mm pitch circle diameter. Its comprehensive modularity, featuring four module spaces and eight integrated air passages, offers significant flexibility and adaptability to diverse media, data, and power transmission requirements.
Our proven ball locking technology ensures reliable tool locking performance and safety, with repeatability of +/- 0.0015 mm and up to 500,000 change cycles. Stäubli's leading transfer technology ensures maximum efficiency and productivity in all applications. The optional MPS Safety+ system provides maximum safety in compliance with Performance Level d, Category 3.
The MPS 035L is an outstanding solution for those seeking a lightweight yet robust system offering precision, versatility, and reliability, and enabling maximum efficiency for robots with small payloads.
A teaching aid and a weight-optimized tool hanger module are also available for even easier integration and use.
Whether your projects have individual and comprehensive requirements or need a fast solution, Stäubli's range of robotic tool changers can quickly meet all complex demands thanks to the modular product concept.
| MPS 035L | |
| Payload | 20 kg |
| Max. static moment (Mx/My) | 40 Nm |
| Max. static moment (Mz) | 40 Nm |
| Max. dynamic moment (Mx/My) | 100 Nm |
| Max. dynamic moment (Mz) | 100 Nm |
| Operating pressure | 0.3 - 0.8 MPa |
| Operating temperature | 5 °C...+60 °C |
| Repeatability | +/- 0.0015 mm |
| Height (coupled) | 46 mm |
| Pitch circle diameter (PCD) robot adapter flange | ISO 9409-1-50-4-M6 |
| Module places | 4 |
| Integrated pneumatic feedthroughs | 8 x M5 |
System for personal and system safety.