Robot mugikor autonomoa eta robot kolaboratiboa industria adimendunerako diseinatutako irtenbide aurreratua da. Sistema honek mugikortasun autonomoa eta lankidetzarako gaitasuna konbinatzen ditu, ingurune industrialetan objektuen garraio malgu eta eraginkorra ahalbidetuz. Aurrerapen teknologikoekin hornituta, robot honek prozesuen optimizazioa, kostu operatiboen murrizketa eta lanpostuko segurtasunaren hobekuntza bermatzen ditu.
Advanced manipulation with robots
Flexibility for robotic applications
Internal logistics with mobile robots
Manufacture and assembly of components by robots
Quality control with robots
2D and 3D Lidar
Sensing and ranging technology that helps the robot map its environment and avoid obstacles.
Provides a three-dimensional view of the environment, enhancing the robot's accuracy and responsiveness. This is a system used for the precise positioning of the robot within the environment.
5G communication with teleoperation capability and Fleet manager
The integration of 5G technology allows for ultra-fast communication and low latency between the robot and control systems. This facilitates the teleoperation of the robot, enabling operators to control and monitor the robot's operations in real-time from remote locations. Teleoperation is especially useful in hazardous or inaccessible environments, improving safety and operational efficiency.
Dedicated software for the orchestration and coordination of more than one C2M2, interoperable among different manufacturers.
Mobile Robot
The core of the system that enables autonomous and safe movement within industrial facilities.
Photoneo
Advanced vision system that allows for rapid image capture and processing for more efficient manipulation. It includes a CAD-based bin picking system that can be mounted on multiple robotic arms, whether industrial or collaborative.
UR10e Robotic Arm
Collaborative robotic arm that can be integrated into the mobile robot to perform complex and precise manipulation tasks. This arm is ideal for applications requiring high repeatability and flexibility in industrial environments.
Research and deployment of a communication architecture to coordinate the work of the collaborative mobile robot with the machine being serviced for machine tending.
Deployment of a database and dashboard to monitor, collect, and analyze information from both the robot and the process.
Evaluation of scenarios and real needs to automate them fully or partially through a mobile manipulator robot.
Fleet orchestration
Given a robotic arm and a mobile robot (AMR or AGV), from the same or different manufacturers, integration of these two components through a PLC and/or industrial PC.
Research and deployment of human-robot interaction paradigms
Research and development of new functionalities beyond a mere pick'n place task, such as force control, polishing, and material application, both autonomously and in cooperation with a human.