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The UGV Beast Tracked AI Robot, Dual Controllers, All-Metal Body for Raspberry Pi 4B w/ Pan/Tilt (US) is an advanced open-source robotic platform designed for exploration and innovation. It features a robust all-metal body and is compatible with the Raspberry Pi 4B, making it suitable for tech enthusiasts and beginners in programming. The robot is equipped with dual controllers, combining the high-level AI capabilities of the host controller with the efficient operations of the sub-controller, ensuring precise and smooth functionality.
This AI robot supports high-frame rate real-time video transmission and multiple AI computer vision functions, making it an ideal platform for realizing creative ideas. It includes a 360 flexible omnidirectional pan-tilt and a 5MP 160 wide-angle camera, allowing for comprehensive visual coverage and control. The robot’s design facilitates easy control via a cross-platform web application, eliminating the need for additional software installation.
The UGV Beast is built on a tracked mobile robot chassis with independent suspension systems, providing stable off-road capabilities. It also features a multi-functional mounting plate for installing various peripherals, enhancing its adaptability to different operational scenarios. The robot supports gesture recognition, face detection, and intelligent object recognition, leveraging OpenCV and MediaPipe technologies for advanced interaction and processing capabilities.
For enhanced connectivity, the robot supports ESP-NOW wireless communication, allowing for multi-device collaboration with low-latency communication. It also offers gamepad control for a more intuitive operation experience and supports 4G/5G expansion for scenarios without WiFi. The robot’s high-strength aluminum body and high-speed motor with high-frequency PID closed-loop speed control ensure durability and performance.
The UGV Beast provides extensive tutorial resources and open-source demos, facilitating learning and secondary development. It includes a multi-functional driver board with an ESP32 module, capable of handling low-level computations and sensor data processing, thereby optimizing the host controller’s resources. The robot’s design also supports real-time information feedback and multiple audio interaction methods, enhancing its interactive capabilities.
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