Why Choose Eazy Walking ?
ViGX exoskeletons distinguish themselves from the competition through the use of unique algorithms that adapt the device’s operation to your body’s natural movement. This makes them ideal for elder care, tourism experiences, and industrial operations. In short, ViGX exoskeletons make advanced mobility available to everyone.

Sports Assist Robot π is a lightweight lower limb exoskeleton product that integrates core technologies such as ergonomics, power, electronics, and AI algorithms. It can sense lower limb movement trends and provide timely assistance, effectively reducing the burden on the legs and offering exercise protection for a more balanced cardiovascular workout. The device features a stylish and cool appearance; it weighs only 1.8 kg; provides significant assistance, with a maximum output of 15 Nm; has a flexible waist design that accommodates a wider range of body types; allows for easy on and off; and boasts a unique modular disassembly and folding structure that takes up minimal space for easier storage. The battery is replaceable, making it suitable for outdoor environments. The AI smart learning algorithm automatically adapts to walking habits, making it widely applicable across various aspects of daily life and work.
Ant-H1 Pro walking assist exoskeleton robot is the leading Ant series of Kenqing Technology lightweight model of walking assisted exoskeleton robot. It integrates advanced sensor network and servo power control system, can keenly capture the micro-motion of human walking, follow human movement to provide user-controlled synchronous torques, effectively help users save physical energy during walking, running and climbing, reduce muscle fatigue and joint stress, make exercise easier and more interesting, and users can exercise longer, especially for the elder.
Ant-H1 Pro also offers a fitness mode, intelligently provide reverse leg swing forward and backward resistance, accurately and efficiently exercise the user's walking core muscles while walking, to achieve fitness shaping effect.