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Target Drone Parachutes

The target parachute is an efficient safety system designed for drones to ensure a safe landing when a recovery command is received. The system operates as follows:

When the drone receives the recovery command, the control system opens the tank and releases the drone with the attached tow parachute into the rear airflow. The tow parachute quickly inflates, helping to extract the main parachute and straighten the parachute lines. Once the main parachute is fully inflated (triggered by a delayed cutter releasing the binding line), the drone lands steadily, ensuring a safe descent. During this process, the connection adapter detaches, and the parachute is separated from the drone, allowing the drone to land safely.

This design not only enhances the safety of the drone but also ensures reliable performance in various environments. It is suitable for a wide range of application scenarios, such as military training and shooting practice. The use of target parachutes helps reduce training risks and improve the skills and tactical capabilities of operators.

The target parachute is designed to ensure that the drone can land safely after receiving the recovery command. When the drone is released, the tow parachute rapidly inflates, extracting the main parachute and ensuring stability during the landing process. This safety mechanism significantly reduces the risk of drone crashes and protects the safety of people and property on the ground.
The structural design of the target parachute ensures smooth inflation and full deployment of the main parachute, providing stable landing performance. The delayed cutter release of the binding line optimizes the deployment process, reducing the possibility of unstable landings due to parachute line entanglement or incomplete deployment. This stability is crucial for high-risk operations, such as military training.

The target parachute system can be activated swiftly once the drone receives the recovery command, ensuring a timely landing in emergencies. The efficient response mechanism of the control system eliminates the need for manual intervention, while the automated design enhances the overall safety and operational efficiency.

The system is designed for simplicity, allowing the operator to issue a recovery command through the control system without complicated procedures. This ease of use reduces operator training costs and enables both novice and experienced operators to quickly master the system.

The target parachute system is compatible with many types of drones, whether for military or civilian use. Its wide applicability makes it an essential safety device in various drone operations, including training, tactical exercises, and high-risk missions.

By effectively preventing drone crashes, the target parachute reduces the maintenance and replacement costs associated with equipment damage. The safe landing of the drone protects its internal components and expensive accessories, improving overall economic efficiency.

Target Parachute System

The target parachute is an efficient safety system designed for drones to ensure a safe landing when a recovery command is received. The system operates as follows:

When the drone receives the recovery command, the control system opens the tank and releases the drone with the attached tow parachute into the rear airflow. The tow parachute quickly inflates, helping to extract the main parachute and straighten the parachute lines. Once the main parachute is fully inflated (triggered by a delayed cutter releasing the binding line), the drone lands steadily, ensuring a safe descent. During this process, the connection adapter detaches, and the parachute is separated from the drone, allowing the drone to land safely.

This design not only enhances the safety of the drone but also ensures reliable performance in various environments. It is suitable for a wide range of application scenarios, such as military training and shooting practice. The use of target parachutes helps reduce training risks and improve the skills and tactical capabilities of operators.

High Safety

The target parachute is designed to ensure that the drone can land safely after receiving the recovery command. When the drone is released, the tow parachute rapidly inflates, extracting the main parachute and ensuring stability during the landing process. This safety mechanism significantly reduces the risk of drone crashes and protects the safety of people and property on the ground.

Stable Landing Performance

The structural design of the target parachute ensures smooth inflation and full deployment of the main parachute, providing stable landing performance. The delayed cutter release of the binding line optimizes the deployment process, reducing the possibility of unstable landings due to parachute line entanglement or incomplete deployment. This stability is crucial for high-risk operations, such as military training.

Quick Response Capability

The target parachute system can be activated swiftly once the drone receives the recovery command, ensuring a timely landing in emergencies. The efficient response mechanism of the control system eliminates the need for manual intervention, while the automated design enhances the overall safety and operational efficiency.

Easy to Operate

The system is designed for simplicity, allowing the operator to issue a recovery command through the control system without complicated procedures. This ease of use reduces operator training costs and enables both novice and experienced operators to quickly master the system.

Wide Applicability

The target parachute system is compatible with many types of drones, whether for military or civilian use. Its wide applicability makes it an essential safety device in various drone operations, including training, tactical exercises, and high-risk missions.

Reduce Maintenance Costs

By effectively preventing drone crashes, the target parachute reduces the maintenance and replacement costs associated with equipment damage. The safe landing of the drone protects its internal components and expensive accessories, improving overall economic efficiency.