Q-UGV Cesare

Flag_of_Italy

The Q-UGV Cesare by Veco Robotics is a highly resilient, agile, and weather-resistant ground robot, suitable for use in a wide range of unstructured urban and natural environments for defense, homeland security, and corporate applications. The agility provided by its four legs allows the Q-UGV Cesare to go virtually anywhere humans can go.

It tackles stairs and steep hills, climbs rocks, and wades through swamps. Thanks to its innovative, next-generation intelligent balancing system, the Q-UGV Cesare by Veco Robotics maintains stability even on soft or slippery terrain, such as ice or particularly uneven surfaces. The project is the result of a close technological collaboration with Ghost Robotics, of which Veco Robotics is an exclusive partner, guaranteeing an advanced and highly reliable platform.

Field Repairable

The Q-UGV Cesare’s components can be easily replaced in minutes, including the legs, battery, main CPU, and front and rear sensor heads.

Resistance and Durability

It can travel up to 10km on a single charge, depending on operating conditions. Operating time is over 3 hours on the go and up to 21 hours with the computer turned on and the RGB cameras in monitoring mode.

Extreme Conditions

IP67 rating: The platform is completely dustproof and can be submerged in water up to 1m for up to 30 minutes. It can operate from -40°C to 55°C (-40°F to 131°F).

Open Architecture

The Q-UGV Cesare’s robust SDK can integrate any sensor, radio, or electronic device using the industry-standard Robot Operating System (ROS/ROS2) framework. Almost any type of peripheral can be used.

Blind Mode

The Q-UGV Cesare has the ability to move through tall grass and unfamiliar terrain, even when its vision sensors are obscured by mud, rain, snow, or direct sunlight.

Applications

Cesare Q-UGV can be used for various applications, including CBRN, security, detection, and rescue operations.

Configurations

Cesare Q-UGV can be configured with a wide range of accessories and payloads to make it perfectly suited to multiple operational objectives.

Informations Request