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Long battery life and powerful load: DJI Matrice 400 has an amazing 59-minute long endurance (loaded flight) and a load capacity of up to 6 kilograms. In aeromagnetic detection missions, long battery life means that it can cover a larger detection range and reduce the time loss caused by frequent battery replacement; its strong load-carrying capacity allows Catalico aeromagnetic equipment to be stably mounted, whether it is in a vast area. The M400 can easily respond to large-scale surveys in plains or fine surveys in complex mountainous areas, ensuring that aeromagnetic detection missions are completed efficiently.
Top obstacle avoidance and precise positioning: It integrates ring-scan lidar, six-direction millimeter wave radar and fisheye vision to achieve wire-level obstacle avoidance. In the process of aeromagnetic exploration, complex terrain and obstacles are common challenges. The M400's obstacle avoidance system can keenly sense the surrounding environment, automatically avoid obstacles, and ensure flight safety. At the same time, its precise positioning system provides accurate acquisition of aeromagnetic data. Provide reliable guarantees to ensure that the equipment flies stably on a predetermined route and obtain high-precision aeromagnetic data.
Ultra-remote image transmission and intelligent functions: Support O4 image transmission industry enhanced version and aerial image transmission relay, with a transmission distance of up to 40 kilometers, allowing the operator to control flight status and aeromagnetic data in real time even at a long distance. In addition, the M400 also has powerful intelligent functions such as visible light and thermal imaging model detection, AR projection, and ship take-off and landing. With rich automated operation capabilities, it can operate stably in various complex environments, providing more opportunities for aeromagnetic detection. possibility.
Advanced aeromagnetic measurement technology: Catalco introduces advanced technology from Canada and continues to innovate on this basis. Its aeromagnetic equipment adopts aeromagnetic optical pump and fluxgate dual compensation technology, and integrates a high-precision rubidium optical pump magnetometer and a high-precision fluxgate three-component magnetometer. During flight, whether it is interference caused by aircraft maneuver or magnetic field interference caused by complex geological environment, the interference can be effectively removed through real-time or post-flight compensation methods using software compensation, thereby obtaining extremely accurate aeromagnetic data, providing a reliable basis for geological analysis.
Comprehensive sensor integration: In addition to magnetometer, it is also equipped with various sensors such as GPS, laser altimeter, and 9-axis attitude sensor. GPS ensures accurate recording of the flight trajectory, laser altimeter measures the flight altitude in real time, and 9-axis attitude sensors accurately sense the attitude of the aircraft. These sensors work together to ensure the accuracy and stability of aeromagnetic data collection in all directions, making the detection results more scientific and reliable.
Long battery life and powerful load: DJI Matrice 400 has an amazing 59-minute long endurance (loaded flight) and a load capacity of up to 6 kilograms. In aeromagnetic detection missions, long battery life means that it can cover a larger detection range and reduce the time loss caused by frequent battery replacement; its strong load-carrying capacity allows Catalico aeromagnetic equipment to be stably mounted, whether it is in a vast area. The M400 can easily respond to large-scale surveys in plains or fine surveys in complex mountainous areas, ensuring that aeromagnetic detection missions are completed efficiently.
Top obstacle avoidance and precise positioning: It integrates ring-scan lidar, six-direction millimeter wave radar and fisheye vision to achieve wire-level obstacle avoidance. In the process of aeromagnetic exploration, complex terrain and obstacles are common challenges. The M400's obstacle avoidance system can keenly sense the surrounding environment, automatically avoid obstacles, and ensure flight safety. At the same time, its precise positioning system provides accurate acquisition of aeromagnetic data. Provide reliable guarantees to ensure that the equipment flies stably on a predetermined route and obtain high-precision aeromagnetic data.
Ultra-remote image transmission and intelligent functions: Support O4 image transmission industry enhanced version and aerial image transmission relay, with a transmission distance of up to 40 kilometers, allowing the operator to control flight status and aeromagnetic data in real time even at a long distance. In addition, the M400 also has powerful intelligent functions such as visible light and thermal imaging model detection, AR projection, and ship take-off and landing. With rich automated operation capabilities, it can operate stably in various complex environments, providing more opportunities for aeromagnetic detection. possibility.
Advanced aeromagnetic measurement technology: Catalco introduces advanced technology from Canada and continues to innovate on this basis. Its aeromagnetic equipment adopts aeromagnetic optical pump and fluxgate dual compensation technology, and integrates a high-precision rubidium optical pump magnetometer and a high-precision fluxgate three-component magnetometer. During flight, whether it is interference caused by aircraft maneuver or magnetic field interference caused by complex geological environment, the interference can be effectively removed through real-time or post-flight compensation methods using software compensation, thereby obtaining extremely accurate aeromagnetic data, providing a reliable basis for geological analysis.
Comprehensive sensor integration: In addition to magnetometer, it is also equipped with various sensors such as GPS, laser altimeter, and 9-axis attitude sensor. GPS ensures accurate recording of the flight trajectory, laser altimeter measures the flight altitude in real time, and 9-axis attitude sensors accurately sense the attitude of the aircraft. These sensors work together to ensure the accuracy and stability of aeromagnetic data collection in all directions, making the detection results more scientific and reliable.