An exoskeleton is a wearable robotic system that provides physical support during movement.
Using sensors, actuators, and an intelligent control system, an exoskeleton tracks the user's movements and provides adjustable robotic assistance when needed.
Exoskeletons can assist with walking and mobility, reduce physical effort and fatigue, and help users make more effective use of their own strength.
With a net weight of 3.2 kg, the Sensorised Exo V1 is designed for practical and comfortable use.
Provides up to 20 Nm of peak output to support movement when additional assistance is required.
Four modes: Rest, Comfort, Sport, and Fitness - allow assistance to be selected according to the activity.
Recognizes different movement conditions including flat ground, stairs, walking, jogging, running, and cycling.
Smart control through an Android application for convenient system operation and adjustment.
Battery runtime of ≥3 hours at full load and ≥6 hours under light load at 40% power.
Configure exoskeleton assistance levels and choose from four modes: Rest, Comfort, Sport, and Fitness - with flexible configurations to suit different activities and user needs.
Exoskeletons provide additional support during walking and movement, helping reduce physical effort and fatigue during everyday activities.
Exoskeletons can provide additional support during sports and recreational activities, helping reduce fatigue during longer or more demanding movement.
Robotic exoskeletons can support rehabilitation by assisting movement and helping users practice and develop more consistent movement patterns.
Exoskeletons can provide additional support, helping older adults reduce physical effort and fatigue while maintaining greater independence.
Additional assistance can support movement when climbing stairs, walking on trails, and taking part in light hiking activities.
Exoskeletons can provide support during pedaling and help reduce physical load and fatigue during longer cycling activities.
Sensorised provides advanced stretchable sensors and elastic sensing solutions using liquid metal conductive ink for strain sensing. Our technology enables reliable muscle deformation sensing and force estimation for wearable and soft robotic applications. We integrate tactile sensing with vibrotactile feedback and temperature-based haptic feedback, delivering real-time haptic feedback systems for robotics and teleoperation. Our pinch force sensing forearm band is a soft wearable that tracks forearm muscle deformation to estimate pinch force in real time, enabling precise control and fine touch in robotic teleoperation. In addition, our soft robotics joint module is designed to enhance interaction and adaptability in human-robot interaction environments.