Motion Lib develops Real-Haptics technology that provides robots with human-like tactile feedback and force control, enabling more precise and delicate interactions. This technology addresses the challenge of enhancing collaboration between humans and robots in various applications, from remote operation to automation of intricate tasks.
Funding
$3.6M 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.
Founders
Product
Problem
Robots often lack the tactile feedback and fine-grained force control necessary for delicate or complex tasks, hindering their ability to perform human-like manipulations and limiting their use in applications requiring precision and adaptability. This deficiency makes it difficult for robots to collaborate effectively with humans or automate intricate processes that demand a sense of touch.
Solution
Motion Lib's Real-Haptics technology provides robots with human-like tactile feedback and force control capabilities. This technology enables more precise and delicate interactions by giving robots a sense of touch, allowing them to perform tasks requiring careful manipulation and responsiveness. The core of the solution is the AbcCore control IC chip, which incorporates Real-Haptics algorithms and can be integrated with various commercially available motors and actuators to easily implement force control. Real-Haptics facilitates remote operation with tactile feedback, force and tactile sensing, automation of delicate movements, and the creation of touch-enabled VR experiences.
Target Audience
The primary target audience includes companies seeking to improve their automation processes, develop new products incorporating haptics, and research institutions exploring advanced robotics control. Specific industries include construction, manufacturing, and remote operation.
Features
- AbcCore control IC chip embedding Real-Haptics algorithms for force and tactile control
- Compatibility with a wide range of commercially available motors and actuators
- Solutions for remote operation with tactile feedback, enabling operators to feel the objects being manipulated
- Force and tactile sensing capabilities for robots to understand the forces they are applying
- Automation of delicate movements requiring precision and control
- VR integration for creating touch-enabled virtual experiences