Transport collaborative robot
1. Equipped with force sensors, laser radar and other sensors. For example, when the robot comes into contact with people or obstacles, the force sensors will immediately detect and stop the robot.
2. It can perform a variety of transportation-related tasks, and can also achieve more functions by replacing the end effector or adding different functional modules.
3. Its structure is relatively simple, small in size, easy to move and reposition, and can adapt to new production layouts and task requirements in a short time
4. It supports fast programming and debugging, which can greatly shorten the implementation cycle of the project and enable the robot to be put into production more quickly.
5. It undertakes repetitive and regular transportation tasks to improve overall production efficiency and work quality.
The transport collaborative robot is an intelligent device designed specifically for modern industrial and logistics scenarios, aiming to achieve efficient, accurate and safe material transportation and collaborative operations.
It has fast moving speed and precise positioning accuracy, with a maximum load capacity of 25 kg. It can still maintain a stable running speed and high positioning accuracy when fully loaded.
Designed to work seamlessly with human operators, the robot uses sensors to sense the location, movements and intentions of humans in real time. When a human is detected approaching, the robot will automatically slow down or stop moving.
Supports a variety of work modes and task types, whether it is simple material handling, pallet transportation, or complex assembly line collaboration, sorting and shelving of warehouse goods, etc., can be easily achieved through quick replacement of the end effector and simple programming settings.
Equipped with a simple and intuitive operating interface and convenient programming method, operators do not need to have deep robot expertise and programming skills. Through the touch screen interface or the guidance of the teach pendant, they can easily complete the robot's task programming.
The use of high-quality components and strict production processes ensures that the robot can maintain stable and reliable operation under long-term and high-intensity working conditions.
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