
Robot ROSMASTER X3 ROS2 Standard (without RPi 5 8G)
ROSMASTER X3 is an educational robot based on the Mecanum Wheel robotic operating system, compatible with Jetson NANO/Orin NX/Orin NANO and Raspberry Pi 5. It is equipped with lidar, depth camera, voice interaction module and other high-performance hardware modules.
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Доставка 7-14 дней
DHL/FedEx/UPS/авиа/море
Оригинал гарантирован
Официальные поставщики
Полный пакет документов
ECCN, CO, CI, PL, EUS docs
Поддержка 24/7
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Экспортный контроль
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Robot ROSMASTER X3 ROS2 Standard: an advanced educational device for learning robotics
ROSMASTER X3 ROS2 Standard is an advanced educational device for teaching and research in the field of robotics. It is equipped with many functions and modules. These make it an ideal choice for students and enthusiasts interested in robotics. Let's look at the features and design of the robot, as well as its educational purpose.
Features and specifics
- 18 servos, which ensures high precision and flexibility of movements.
- Jetson NANO as the main platform for data management and processing.
- Supports many additional modules and sensors, including a depth camera, lidar, voice interaction module and high-capacity batteries.
- Using the ROS2 operating system. It provides high performance and flexibility;
- Programming in Python3, making it accessible to most users.
Robot device
- housing, which provides protection and stability.
- motors and servos that provide movement and control of the robot;
- sensors provide data about the external environment;
- Jetson NANO is responsible for data management and processing;
Educational purpose
ROSMASTER X3 ROS2 Standard is designed for teaching robotics to students and schoolchildren. It comes with detailed instructions and software. This makes it easier to use and integrate into training programs.
The robot can be used to study the following areas:
- control of the robot and its movement;
- data processing and machine learning;
- computer vision and visual recognition;
- navigation on 3D maps and overcoming obstacles;
- synchronous control and coordination of the work of several robots;
- development of a docker container and integration of various modules and sensors.
Overall, the device is an advanced educational device. It is actively used for teaching and researching new technologies and algorithms in the field of robotics. Its high performance, flexibility and ability to expand functionality make it an ideal choice for students and enthusiasts interested in robotics.







