The MiniMode Autopilot is a compact, high-performance flight control system designed for small UAVs. It offers precise navigation, stability, and autonomous control, ensuring reliable performance in a wide range of environments. Perfect for applications that require a lightweight yet powerful solution, MiniMode delivers seamless integration and exceptional ease of use for both commercial and research-based UAV operations.
Key Features
- PWM Outputs: 10 channels (5V) PWM output, supporting frequencies of 50Hz, 100Hz, and 300Hz for controlling servos, motors, and other components.
- Serial Communication: 3 x RS232 serial ports, enabling efficient communication with remote controllers, sensors, and other flight control systems.
- CAN Bus: 2 x CAN2.0 A/B interfaces, offering high-bandwidth, low-latency data transmission for multiple sensors or multi-drone coordination.
- SBus Interface: 1 x SBus interface, compatible with most remote controllers and ground control stations for stable flight control.
- Voltage Input: 1 x voltage input (0 ~ 120V), compatible with a variety of battery systems and power sources.
- RPM Input: 1 x RPM input (3.3 ~ 5V) for real-time monitoring of motor speeds and ensuring precise control.
- IO Input: 1 x IO input (3.3 ~ 5V), suitable for connecting external sensors or switches to enhance autonomous operations.
Size and Weight
- Dimensions: 53 x 60 x 20 mm
- Weight: 66g – lightweight and ideal for compact UAVs.
Power Requirements
- Operating Voltage: DC 11 ~ 36V, supporting various battery configurations for stable flight performance.
Interface
- J30J-31TJL Interface, providing seamless integration with other UAV systems and making upgrades and development easy.
Environmental Range
- Operating Temperature: -40 ~ 65°C, capable of withstanding extreme weather conditions and high-altitude environments for reliable operation.
Applications
The Mini-Mode Autopilot is designed for a variety of UAV applications, including agricultural monitoring, surveying, aerial photography, and search & rescue operations. With its robust performance, low power consumption, and strong expandability, it is the ideal solution for building and operating modern UAV systems.