 
                Grappling of space vehicle ground demonstration
          On-Orbit Servicing
          and Refueling of Space Vehicles
        
          Serving Intra-Vehicular Robotics (IVR)
          and Extra-Vehicular Robotics (EVR)
        
          Serving In-Space Satellite Assembly & Manufacturing (ISAM)
          and Space Access, Mobility, and Logistics (SAML)
        
 
            Certifiable, flight-ready, and modular software for controlling robotic arms in space.
Our full autonomy and supervised autonomy-based solutions for robots in space have been designed with NASA JSC, NASA Ames, and the US Space Force to support high latency connections, enabling mission control to safely command robots from afar. We enable your space-grade robots to more safely and reliably do things too dangerous and tedious for humans to do in space.
 
             
             
          
              Reduce time
              to launch
            
              Enable rapid repurposing as
              mission requirements change
            
              Support new mission conops
              with general purpose approach
            
              Accelerate development
              of new robotic capabilities
            
              Save R&D costs by modular
              software reuse (up to 75%)
            
              Dramatically reduce the need
              for a dedicated robotics staff
            
              UI for supervised autonomy
              eases transition from R&D to ops
            
              Develop a robot hardware
              agnostic solution