HUNTER 2.0 autonomous driving robot
Hunter 2.0 is specifically developed to excel in low-speed autonomous driving scenarios. It is equipped with front-wheel Ackerman steering and rocker suspension, enabling it to effectively navigate obstacles encountered on its path. Furthermore, the new-generation power system enhances its payload capacity and extends its endurance capabilities for superior performance.
The Ackermann Front Steering Drive-by-wire Chassis. The best-in-class development platform to explore cutting-edge applications of low-speed autonomous driving applications.
Hunter 2.0 is specifically developed to excel in low-speed autonomous driving scenarios. It is equipped with front-wheel Ackerman steering and rocker suspension, enabling it to effectively navigate obstacles encountered on its path. Furthermore, the new-generation power system enhances its payload capacity and extends its endurance capabilities for superior performance.
Only logged in customers who have purchased this product may leave a review.
Related products
-
MG400 robot arm
Read moreMG400 Collaborative Robot arm
The MG400 is an ultra compact desktop grade robotic arm with footprint smaller than a piece of A4 size paper. It is safe for human collaboration, easy to use, and quick to deploy, making it perfect to automate small batch flexible productions. With 750 g maximum payload, 440 mm maximum reach, drag-to-teach and collision detection features, MG400 is a cost effective option for smart automation tasks.
-
SCOUT MINI mobile robot
Read moreScout Mini is a high-speed mini mobile robot equipped with 4-wheel drive, independent suspension, and a lightweight power system, enabling it to reach a maximum speed of 10 km/h. Its precise maneuverability makes it ideal for conducting cutting-edge research experiments.
The Miniature High-speed Drive-by-wire Chassis. MINI size is more maneuverable at high speed and in narrow spaces.
-
DOBOT Magician E6 Robot
Read moreDOBOT Magician E6 Collaborative Robot
Desktop Cobot for Education and Research
Advanced Robotic Theory and Research
This advanced Robots teaches students to develop motion control algorithms, simulations and control logic for
research purposes using ROS, Matlab, Python and C++. -
AgileX Limo Multi-Modal Mobile Robot
Read moreAgileX Limo Multi-Modal Mobile Robot
The Multi-modal ROS Powered Robot Development Platform. World’s first ROS mobile robot development platform integrating four motion modes,adaptable to a wider range of application scenarios than table-robot.
Reviews
There are no reviews yet.