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HI

Human In Motion Robotics Inc.

The startup develops a lower-body wearable robotic exoskeleton that utilizes miniaturized robotic joint technology for the hip, knee, and ankle to facilitate rehabilitation and personal mobility. This system enables paralyzed and physically disabled individuals to walk independently and maintain balance during complex activities like climbing stairs and navigating uneven terrain.

Vancouver, CanadaFounded 2016343K+ followers
Updated 3 months ago

Funding

$13.1M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Individuals with lower extremity motor deficits often face significant challenges in performing complex mobility tasks, limiting their independence and freedom of movement. Existing exoskeleton technologies may not fully replicate the physiological motion of the lower extremity, hindering the user's ability to maintain balance and perform natural movements.

Solution

Human In Motion Robotics offers XoMotion™, a next-generation exoskeleton platform designed to restore hands-free, upright mobility for individuals with lower extremity motor deficits. XoMotion™ mimics the physiological motion of the lower extremity, enabling users to perform complex mobility tasks such as walking, climbing stairs, and navigating uneven terrain. The device's advanced sensor systems and multi-modal controllers provide users with hands-free functionality, postural control, and an unprecedented level of freedom and independence. XoMotion™ is designed to be adjustable to accommodate a range of body types and is intended for use in ambulatory training, therapeutic recovery, and personal mobility.

Target Audience

The primary target audience includes individuals with spinal cord injuries, stroke, and other neurological conditions, as well as clinicians and researchers focused on rehabilitation and mobility solutions.

Features

  • Self-balancing and hands-free operation for enhanced stability and ease of use
  • Mimics physiological motion of the lower extremity to enable complex walking motions
  • Advanced sensor systems and multi-modal controllers for real-time adjustments and responsiveness
  • Adjustable design to accommodate users ranging from 5’ 0” to 6’ 4” in height and up to 220 lbs
  • Continuous use with hot-swappable battery for extended operation
  • Open control system available to investigators for research and development purposes
  • Access to kinematic, activity, and sensor-based data for analysis and optimization
This profile is AI-generated and may contain inaccuracies.