Augmentus

No‑code AI‑powered robotics platform that automates complex industrial robot programming for welding, spraying, and surface‑finishing tasks.

Augmentus provides a no‑code robotics software platform that uses 3D scanning, computer vision, and AI to generate robot toolpaths for welding, thermal spraying, surface finishing, sandblasting, and similar industrial processes. The system lets manufacturers automate complex, high‑mix tasks without deep robotics expertise, reducing setup time from days to minutes and cutting downtime and programming costs on the factory floor.

RT Corporation

RT Corporation develops AI‑driven robotics and ROS‑based platforms for education, research labs, and industrial automation, including food‑processing lines and collaborative robots.

RT Corporation builds AI and robotics products centered on ROS, supplying research and educational institutions with robot platforms and simulation tools while also deploying collaborative robots, AI vision systems, and production‑line automation for food‑processing and light‑manufacturing facilities. The company focuses on practical, ROS‑integrated robots that can be used in classrooms, research projects, and industrial settings where automation must run reliably alongside human workers.

Agile Medical Technology

Agile Medical Technology (AGIBOT) builds embodied AI robots and robotic systems for manufacturing, healthcare, and other real-world tasks.

Agile Medical Technology (AGIBOT) develops embodied AI robots, humanoid robots, and robotic platforms for practical use in manufacturing, healthcare, logistics, and service settings. Its product lineup includes general-purpose robots, industrial robots, and application ecosystems built around AI and robotics.

ARIS Robotics

AI waste sorting and recycling tech for waste recognition, sorting, and circular operations.

ARIS Robotics builds adaptable AI for waste recognition and sorting. Its technology supports recycling workflows, waste analysis, and circular operations for businesses and public sector teams working with waste streams and resource recovery.

Appetronix

Appetronix builds autonomous robotic kitchen systems for quick-service restaurants and high-traffic foodservice spaces.

Appetronix develops autonomous robotic kitchen systems for quick-service restaurants and foodservice operations. Its technology combines robotics, AI, and automation to prepare made-to-order meals in high-traffic environments like airports, hospitals, universities, and stadiums.

Akson Robotics

AI and drone software for precision farming, weed detection, and spray maps that reduce chemical use and improve yield.

Akson Robotics develops AI and drone-based software for precision farming. Its CropUp platform detects weeds and crops from aerial images, then creates spray maps for targeted application. The technology supports weed mapping, crop mapping, and smarter field spraying for agriculture and related farm operations.

AdapTronics

AdapTronics develops electro-adhesive grippers with tactile sensing for robots to handle objects of any shape, size, or material in industrial automation, agritech, and space operations.

AdapTronics creates plug-and-play electro-adhesive interfaces powered by the Electro Active Adhesive Layer (EAAL). This thin-film technology uses electrostatics to grip diverse objects—rigid, soft, porous, or curved—with high force density and AI-driven sensor feedback for proximity and contact detection. Mounted on robot end-effectors or automated machines, it activates in milliseconds without pneumatics, magnets, or heat. Applications cover pick-and-place in factories, gentle fruit handling in agritech, packaging on conveyors, last-mile delivery robots, and space tasks like satellite servicing or debris capture.

Aerones

Aerones uses robotic systems for wind turbine blade inspections, cleaning, repairs, and coatings to boost efficiency and safety in maintenance.

Aerones delivers robotic services for wind turbine maintenance, covering blade and tower inspections, cleaning, leading-edge coatings, and repairs. The technology replaces manual rope work with faster, safer robotic operations that cut downtime and extend turbine life. Teams handle conductivity checks, drainage cleaning, and predictive data analysis worldwide for major operators.

Armstrong Robotics

Armstrong builds AI-powered robots for restaurant kitchens that handle dishwashing around the clock, integrating with existing setups for quick installs and labor savings.

Armstrong develops general-purpose robots designed specifically for kitchens, with the first focus on automating dishwashing tasks. These robots process dirty dishes from bus tubs, scrape and rinse them, run them through standard dish machines, and stack clean ones by type. They operate 24/7, install in hours without downtime, and deliver immediate returns through a simple monthly subscription covering everything from setup to maintenance. Advanced neural networks enable precise 3D perception to manage messy piles reliably. The platform supports most dish room layouts and evolves via software updates for future kitchen jobs like prep and frying.

Fluid Wire Robotics

Fluid Wire Robotics builds electric robotic arms using Fluid Wires transmission for harsh environments like nuclear sites, underwater ops, space, and explosive zones.

Fluid Wire Robotics designs fully electric, force-controllable robotic arms powered by proprietary Fluid Wires technology. This system moves motors and sensors to a remote sealed unit, sending power through high-efficiency fluid transmission to the arm joints. The result is lightweight robots that handle extreme conditions—radioactive areas, high heat, underwater pressure, vacuum, and explosive atmospheres—without added complexity or performance loss. They deliver smooth, precise operation where standard robots can’t go.