MAX A is an advanced AI-powered rehabilitation exoskeleton designed to restore lower-limb mobility and accelerate patient recovery. Using a world-first flexible drive system and precise force control, it ensures safe, comfortable, and effective rehabilitation. Real-time human-robot interaction allows seamless transitions between active, power-assisted, and passive modes to match user progress. Integrated with IoT and cloud connectivity, MAX A collects and analyzes training data for personalized rehabilitation plans. Its AI-driven quantitative assessment enhances therapy accuracy while motivating patients to take active participation, making it ideal for hospitals, rehabilitation centers, and medical research facilities.
Drive Type: Flexible drive system (patented)
Training Modes: Active / Power-Assisted / Passive
Force Control: Precision force feedback and adjustment
AI System: Real-time gait analysis and adaptive learning
Connectivity: IoT integration (Cloud–Robot–Human)
Data Function: Quantitative rehabilitation assessment and reporting
Safety: Multi-level protection and emergency stop
Applications: Hospitals, Clinics, Research Institutions
Hospitals can utilize MAX A for standardized, data-driven therapy sessions. Cloud-based AI assessments allow therapists to monitor multiple patients simultaneously and tailor sessions based on real-time performance analytics.
For patients with spinal cord or nerve injuries, MAX A delivers targeted power assistance to stimulate neural pathways. AI-driven feedback supports continuous progress tracking, improving rehabilitation outcomes over traditional methods.
MAX A assists patients recovering from strokes by providing adaptive lower-limb training that restores balance, gait, and coordination. The intelligent force control system ensures smooth, progressive movements, helping patients regain confidence and mobility step by step.
For patients with spinal cord or nerve injuries, MAX A delivers targeted power assistance to stimulate neural pathways. AI-driven feedback supports continuous progress tracking, improving rehabilitation outcomes over traditional methods.
MAX A features a unique flexible drive and AI-enhanced adaptive training system that ensures precise control, high comfort, and seamless transitions between training modes for optimal rehabilitation results.
It’s designed for patients with lower-limb dysfunction due to stroke, spinal injury, or neurological disorders, and also supports elderly users needing mobility assistance under professional supervision.
AI analyzes gait and muscle performance in real time, adjusts power assistance accordingly, and provides quantitative data for therapists to refine recovery strategies.
Yes. It features multi-level safety protections including emergency stops, overload prevention, and real-time motion monitoring to ensure full user safety during operation.
Absolutely. The IoT system enables cloud-based data storage, progress tracking, and remote access for clinicians and research purposes.
MAX A offers Active, Power-Assisted, and Passive modes, which switch automatically based on patient engagement and muscle response.
Through built-in sensors and AI algorithms, MAX A conducts quantitative assessments of gait, balance, and strength improvements over time.
Yes, professional supervision ensures the correct setup, safe operation, and optimal progress throughout the rehabilitation process.
All the essential technical documentation to help you understand, assemble, and operate your robot step by step.
Development resources, APIs, and SDKs to extend functionalities or integrate the robot with other platforms.
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Tutorials and visual guides for setup, daily use, maintenance, and troubleshooting.
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