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Exoskeleton

HAL®医療用下肢タイプJP

Built by Cyberdyne · Japan

Updated May 2026·methodology
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The HAL®医療用下肢タイプJP is a Exoskeleton developed by Cyberdyne (Japan), launched 2018.

Robo Index

A

Strong evidence

5 of 10 signals present

Recomputed nightly from public data. Missing data is skipped, never zero-filled — and rankings are never for sale.

Weighted factors

average of the 5 scored · blanks don't count

Commercial maturity20%85/100
Deployment footprint18%unknown
Proven track record12%80/100
Spec completeness12%100/100
Company financial health12%unknown
Company maturity8%100/100
Manufacturer portfolio6%100/100
Media mentions (trailing 12 months)6%unknown
Independent recognition4%unknown
Market momentum2%unknown

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Overview

The HAL®医療用下肢タイプJP is a medical exoskeleton designed for rehabilitation purposes, assisting patients with lower limb mobility issues. It utilizes advanced sensors to detect bioelectric signals from the user's skin, enabling the device to support natural movement patterns. This model is specifically tailored for the Japanese market, adhering to local regulatory standards. The exoskeleton is used in clinical settings to aid in gait training and recovery for individuals with spinal cord injuries, stroke survivors, and other neurological conditions.

Flagship features

  • Designed for individuals with lower limb movement difficulties
  • Adjusts to user size including leg and foot dimensions
  • Provides real-time monitoring through HAL Monitor
  • Limited to users with detectable bio-electrical signals
  • Not available for rental to individual users

Buyer decision signals

Deployments

1 known operator in Japan

京都大原記念病院グループ

Viability

est. 2004

新型医療用HAL下肢タイプの国内レンタル販売開始

Specifications

Category: Exoskeleton
Payload
100 kg
Weight
14 kg
Battery
1 h
Launch year
2018
Price
Contact for quote
Status
active
VerifiedSelf-reportedEstimated

Company profile

Founded
2004

Detailed specifications

Motion & kinematics2
Joints Actuated
hip,knee,ankle
Joint Rom Breakdown
{"hip":"20° extension / 120° flexion","knee":"6° extension / 120° flexion"}
Other19
Load Path
ground
Assist Mode
active
Applications
rehabilitation_clinic
Sub Category
medical_rehabilitation
Actuator Type
electric_motor
Body Coverage
lower_body
Sizes Offered
custom
Company Country
JP
Adjustable Range
leg length, hip width, foot size
Control Strategy
intent_detection,gait_phase_detection
Device Weight Kg
14
Industries Served
healthcare
Indication For Use
spinal cord injury,post-stroke gait training
User Weight Max Kg
100
User Weight Min Kg
40
Countries Available
Japan
Regulatory Clearance
PMDA
Additional Information
- Designed for individuals with lower limb movement difficulties - Adjusts to user size including leg and foot dimensions - Provides real-time monitoring through HAL Monitor - Limited to users with detectable bio-electrical signals - Not available for rental to individual users
Insurance Reimbursement
true

Who runs it· deployment evidence

1 on record · none maker-verified yet. Each links to its source — open it and judge.

  • 京都大原記念病院グループ· Japansource ↗
Verified — maker-confirmedReported — in a public source, not maker-confirmed

Where to buy

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Company milestones

  • May 2026Launch新型医療用HAL下肢タイプの国内レンタル販売開始
  • Feb 2026LaunchLB06 model sales begin
  • Jan 2026MilestoneCybernicx Future 2026 announced for Istanbul
  • Nov 2024MilestoneMTX Neuro HAL Plus expanded to wider areas
  • Jan 2024MilestoneFirst Cybernics & Neurobionics Summit in Hannover
  • Oct 2020MilestoneFDA submission describing HAL-ML05/ML07
  • Oct 2020MilestoneFDA review summary cites 207 patients in PMS
  • Oct 2020MilestoneFDA submission describes HAL-ML05 exoskeleton

Frequently asked questions

Who makes the HAL®医療用下肢タイプJP?
The HAL®医療用下肢タイプJP is developed by Cyberdyne, based in Japan.
What type of robot is the HAL®医療用下肢タイプJP?
The HAL®医療用下肢タイプJP is a Exoskeleton made by Cyberdyne.
How much does the HAL®医療用下肢タイプJP cost?
Pricing for the HAL®医療用下肢タイプJP is not publicly listed — contact Cyberdyne for a quote.
When was the HAL®医療用下肢タイプJP launched?
The HAL®医療用下肢タイプJP was launched in 2018.

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