In firefighting and emergency rescue missions, a continuous and stable power supply is crucial for the reliable long-term operation of drones. The core technology of the MYUAV FC100 tethered drone system lies hidden within its highly efficient and reliable energy system.
The system's "heart" is comprised of a ground-based tethered base station and an airborne bionic power supply. The ground base station employs a mature 1000V DC high-voltage power transmission scheme, directly powering the aerial platform through a specially designed tethered cable. This design significantly reduces line losses during long-distance power transmission, ensuring efficient energy transfer. The cable itself possesses a tensile strength of ≥3000N and a high-temperature resistance of ≥300℃, sufficient to withstand the harsh environment of fire scenes.
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In the air, the airborne power supply, weighing only 10.8kg, acts as an "intelligent voltage regulator." It receives 1000V high-voltage DC power and outputs the voltage required by the drone with a conversion efficiency of up to 96%, with fluctuation accuracy controlled within ±1%. Combined with built-in dynamic voltage compensation technology, the system can respond to power supply fluctuations in real time, providing the flight platform with near-battery-powered stability.
It is this integrated high-power, highly stable power supply solution from the ground to the air that breaks through the endurance bottleneck of traditional electric drones, enabling the FC100 to achieve up to 6 hours of uninterrupted operation with an 80kg payload, providing a solid "energy foundation" for various application scenarios.
In firefighting and emergency rescue missions, a continuous and stable power supply is crucial for the reliable long-term operation of drones. The core technology of the MYUAV FC100 tethered drone system lies hidden within its highly efficient and reliable energy system.
The system's "heart" is comprised of a ground-based tethered base station and an airborne bionic power supply. The ground base station employs a mature 1000V DC high-voltage power transmission scheme, directly powering the aerial platform through a specially designed tethered cable. This design significantly reduces line losses during long-distance power transmission, ensuring efficient energy transfer. The cable itself possesses a tensile strength of ≥3000N and a high-temperature resistance of ≥300℃, sufficient to withstand the harsh environment of fire scenes.
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In the air, the airborne power supply, weighing only 10.8kg, acts as an "intelligent voltage regulator." It receives 1000V high-voltage DC power and outputs the voltage required by the drone with a conversion efficiency of up to 96%, with fluctuation accuracy controlled within ±1%. Combined with built-in dynamic voltage compensation technology, the system can respond to power supply fluctuations in real time, providing the flight platform with near-battery-powered stability.
It is this integrated high-power, highly stable power supply solution from the ground to the air that breaks through the endurance bottleneck of traditional electric drones, enabling the FC100 to achieve up to 6 hours of uninterrupted operation with an 80kg payload, providing a solid "energy foundation" for various application scenarios.