Commercialize an AI-driven robotic exoskeleton for personal mobility
Human in Motion Robotics Inc.
18 enregistrements totalisant 6,072,427.00 $ CAN, selon les données ouvertes officielles du gouvernement du Canada.
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Par ministère
| Conseil national de recherches Canada | $3,066,043 | 16 enregistrements |
| Développement économique Canada pour le Pacifique | $3,000,000 | 1 enregistrement |
| Emploi et Développement social Canada | $6,384 | 1 enregistrement |
Enregistrements
Develop an innovative 'AI Engine' named XoMotion™ AI, designed specifically for integration with the XoMotion exoskeleton systems.
Design and manufacturing of parts for next-generation “at-home-use” lower-limb exoskeletons.
Develop Beta II – a fully functional prototype of a lower limb exoskeleton that allows wheelchair-constrained individuals to regain their legged mobility and independence.
Advanced design and manufacturing of custom orthoses for the next generation powered lower-limb exoskeletons.
The funding provided from the Innovation Assistance Program is to assist innovative, early-stage small- and medium-sized enterprises that are unable to access existing COVID-19 business support.
The funding provided by the IAP program is intended to assist innovative small and medium-sized enterprises in the start-up phase that cannot access existing commercial support related to COVID-19.
The funding provided from the Innovation Assistance Program is to assist innovative, early-stage small- and medium-sized enterprises that are unable to access existing COVID-19 business support.
In this project, HMR will focus on developing a battery pack system that can be conveniently exchanged by the users and also develop a cable management system to make power and data cables less expose...
In this specific project HMR will focus on verifying and testing different software packages that we developed in terms of their compliance with the standard software development for medical devices,...
Developing a mechanism that enables the adjustment of exoskeleton for different users.
This project will focus on establishing and implementing a robust quality system to match regulatory compliance.
Development of actuators for an exoskeleton.
Reduce the weight and size of the exoskeleton while maintaining its functionality.
Developing a customized user interface (UI) to facilitate the intuitive navigation of the robot.
Through the application of national and local priorities, the CSJ program seeks to provide youth, particularly those who face barriers to employment with access to work opportunities. Funded employers...