| Certificates/Standards: | N; |
| Monthly Output: | Not provided |
| Regional: | Not provided |
| Packaging Information: | Not provided |
| Mode Of Payment: | Not provided |
| Delivery Lead Time: | Not provided |
| Main Sales Markets: | North America,Central/South America,Western Europe,Eastern Europe,Australasia,Asia,Middle East,Africa |
| Sample Provided: | No |
| Sample Policy: | Not provided |
| Minimum Quantity: | Not provided |
01 Product Features——Micro Tension-Compression Sensors
- High Reliability
The mirco tension-compression sensors is designed to be robust and durable, able to maintain stable performance under long-term and high-intensity operation conditions. The sensor utilizes self-compensation strain gauge technology and an integrated design, which effectively reduces the welding process and enhances the overall reliability of the sensor. Additionally, the application of full-sealing technology makes the protection level of the sensor reach IP67, and its fatigue life is up to 5 million cycles, ensures the stable operation of the sensor in harsh environments.
- High Precision
The sensor can accurately measure the tension and compression during the robot's operation, ensuring the precision and stability of the robot's movements. Thanks to the brand new film backing strain gauge technology, which results in the consistency of creep and zero returns better than 0.1%FS and the zero output stability better than 0.1%FS/month.
- Easy Integration
The sensor supports a variety of communication protocols and data interfaces, it is convenient for users to carry out secondary development and customization, and making it easy to integrate with other robotic components and systems.
- High Customization
Support collaborative research and development, integrate force sensors according to the structural characteristics of the robot body, improve space utilization and reduce overall manufacturing costs.
02 Application Scenarios——Micro Tension-Compression Sensors
Micro tension-compression sensors plays a crucial role in humanoid robots, providing strong support for the robots' precise control, safety monitoring, interactive feedback, gait optimization and environmental adaptation.