Bunjil Composites, in partnership with USL Robotics, provides wearable ergonomic solutions and exoskeletons designed to optimise human performance by minimising muscle strain and fatigue during work, while safeguarding physical health in manual lifting tasks.
Short for Flexible Integrated Technology, the FIT-HV lumbar exoskeleton robot integrates cutting-edge technology, including an intelligent digital driver, an integrated modular deceleration system, and an adaptive motion control system from ULS Robotics. It also incorporates ULS Robotics’ proprietary software for mechanical impedance, a self-learning adaptive gait, and an AI-driven motion control algorithm with pattern recognition.
The FIT-HV active electric-driven lumbar exoskeleton robot utilizes high-strength engineering materials and incorporates a hip joint width adjustment mechanism. This high level of man-machine integration significantly enhances the strength and endurance of the user’s waist and hip joints, reducing the labor burden on workers by over 60%.
By adopting this technology, enterprises can expect improved production efficiency, as well as access to digitalized and visualized data on employee performance and health. These advancements will not only help prevent work-related injuries but also reduce the hidden costs associated with staff turnover and retraining.
FIT - HV
Dimension (L*W*H) 872mm x (500~560)mm x 320mm
Suitable bodyweight 45~110kg
Assisting effect > 60%
Product weight < 5.8kg
Power source Electrical assist drive
Auxiliary force 30kg
Ambient temperature -20°C~50°C
Working time 5~8 h
Battery Lithium battery 36V
Degree of freedom 4
Material Nylon plastic, aluminum alloy, carbon fiber
FIT-HV(EN) (pdf)
DownloadLumbar exoskeleton introduction
Lumbar exoskeleton donning (how to wear)
Manufacturing
Mining
Construction
Logistics and warehouse
Health care
Aircraft maintenance
We use cookies to analyze website traffic and optimize your website experience. By accepting our use of cookies, your data will be aggregated with all other user data.