Knee + Ankle Collaborative Rehabilitation Exoskeleton | 1.2kg Full Carbon Fiber Smart Knee Exoskeleton with AI Gait Prediction & Stair Assistance | 48% Upstairs / 38% Downstairs Energy Saving — for Post-Surgery, Stroke & Elderly Gait Rehabilitation

Knee + Ankle Rehabilitation Exoskeleton — 1.2kg Smart Walking & Stair Assist for Post-Surgery, Stroke & Elderly Recovery

  • Knee + Ankle Synergy — knee stability & buffering combined with ankle push-off & gait rhythm for natural walking.
  • Ultra-Light 1.2 kg Carbon Fiber — high strength, form-fitting comfort you can barely feel.
  • AI, Data-Driven Gait Prediction — Smart Insole + IMU + ChatGPT-supported AI make proactive, precise assistance.
  • Proven Stair Assistance — 48% upstairs / 38% downstairs energy saving, with reduced impact and fear.
  • Modular Single or Both-Leg Wear — adapts to individual rehabilitation needs.
  • High-Value Rehab Outcomes — reduces fall risk, improves weight-bearing tolerance, enables earlier real-world training.
  •  Support OEM & ODM.

Knee + Ankle Collaborative Rehabilitation Exoskeleton | Smart Walking & Stair Assistance

So Light It Can Be Ignored. So Strong It Can Be Relied Upon.

The Knee + Ankle Collaborative Rehabilitation Exoskeleton is a full carbon fiber smart walking assist device weighing only about 1.2 kg. By rebuilding the synergistic relationship between knee joint support and ankle joint push-off, it targets gait impairments after surgery, stroke and in the elderly — driving the rehabilitation process with data, so every step returns to safe, natural and sustainable walking.

About Knee + Ankle Exoskeletons

The knee joint carries the highest load and risk in the lower limbs — the real issue is not strength, but support, buffering and timing control. A knee + ankle collaborative exoskeleton works on both joints at once: the knee is responsible for stability and buffering, while the ankle restores push-off force and gait rhythm. Together, they provide stable support and safe weight-bearing, helping patients stand steadily and go up and down stairs safely.

🚀 Key Features & Benefits

  1. Knee + Ankle Collaborative Design The knee controls flexion/extension rhythm with support and buffering; the ankle stabilizes plantar force and landing control — rebuilding the synergy between the two joints for natural, confident walking.

  2. Ultra-Light 1.2 kg Full Carbon Fiber Frame Full carbon fiber construction delivers high strength at an ultra-light weight — form-fitting, stable, and comfortable enough to be worn all day.

  3. Modular Wear — Single or Both Legs The modular design supports independent wear on one or both legs, adapting to each patient’s rehabilitation needs.

  4. AI-Powered Gait Prediction A Smart Knee Insole + IMU sensing system enables the exoskeleton to truly understand movement, while ChatGPT-supported AI gait prediction makes proactive judgments — every step is data-driven, not guesswork.

  5. Stair Assistance — Both Up and Down Intelligent energy-saving assist reduces effort by up to 48% going upstairs and 38% going downstairs, significantly reducing impact and fear during stair negotiation.

  6. Purpose-Built for High-Risk Gait Users Designed for post-knee surgery (TKA, ligament reconstruction), sub-acute stroke patients with lower limb instability, and elderly users with fear of stairs, knee buckling and balance loss.

  7. Proven Rehabilitation Value Reduces fall risk, improves weight-bearing tolerance, and supports earlier entry into real-world environment training — the key stage of “daring to walk, walking steadily.”

📊 Technical Specifications

Feature Specification
Product Knee + Ankle Collaborative Rehabilitation Exoskeleton
Weight Approx. 1.2 kg
Frame Material Full Carbon Fiber
Wearing Style Modular · Single or Both Legs
Sensing System Smart Knee Insole + IMU
Gait Prediction AI-Powered (ChatGPT-Supported)
Upstairs Energy Saving Rate 48%
Downstairs Energy Saving Rate 38%
Knee Joint Function Stability · Buffering · Flexion/Extension Rhythm Control
Ankle Joint Function Push-Off Force · Gait Rhythm · Landing Control
Target Users Post-Knee Surgery · Sub-Acute Stroke · Elderly

🏥 Ideal For

  • Post-knee surgery patients — TKA and ligament reconstruction recovery
  • Sub-acute stroke patients — insufficient lower limb stability during gait rehabilitation
  • Elderly users — fear of stairs, knee buckling and easy loss of balance
  • Gait rehabilitation programs — hospital, rehab center and home-based training
  • Real-world walking training — transitioning from clinic to daily environments

✅ Why Choose This Knee Exoskeleton / Dynasty Medical?

  • Only 1.2 kg full carbon fiber frame — high strength you can barely feel
  • Knee + ankle synergy addresses both stability and push-off for natural gait
  • AI-driven, data-based gait prediction — proactive support, not passive response
  • Proven energy saving: 48% upstairs, 38% downstairs
  • OEM/white-label cooperation available — contact us for quotation and customization

❓ Frequently Asked Questions

What is a knee + ankle collaborative exoskeleton? It is a wearable smart walking assist device that supports both the knee and ankle joints simultaneously. The knee provides stability and buffering while the ankle restores push-off force and gait rhythm — helping users walk safely and naturally during rehabilitation.

How much does the exoskeleton weigh? Approximately 1.2 kg, thanks to its full carbon fiber construction — light enough to be worn comfortably for extended periods.

How does it help with stairs? The intelligent energy-saving assist reduces effort by up to 48% going upstairs and 38% going downstairs, reducing impact and fear when negotiating stairs.

Who is the exoskeleton designed for? It is designed for post-knee surgery patients (TKA, ligament reconstruction), sub-acute stroke patients with lower limb instability, and elderly users with balance or stair concerns.

How does the AI gait prediction work? A Smart Knee Insole + IMU sensing system tracks movement in real time, and ChatGPT-supported AI predicts the user’s gait — enabling proactive, data-driven assistance rather than passive response.

Can it be worn on one leg or both? Yes. The modular design supports independent wear on a single leg or both legs, depending on the patient’s needs.

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