
- Overview
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Overview
In recent years, with the rapid development and widespread application of the drone market, the frequency of unauthorized drone flights (commonly referred to as “black flying”) has increased significantly. These incidents, which include interference with aviation, smuggling, and even potential terrorist attacks, have caused substantial economic losses and raised numerous safety concerns and accidents. To address the potential low-altitude security threats posed by “low, slow, and small” (LSS) drone targets, our company, leveraging its two decades of experience in the optoelectronic industry, has introduced the “High-Energy Laser Damage Defense System.”
This system comprises radar detection equipment, intelligent tracking devices, laser disposal devices, and a command, control, and surveillance platform. The various devices are deployed in a distributed manner and are interconnected through the command, control, and surveillance platform to truly achieve detection and disposal of all types of drones, especially LSS drones.
The radar detection equipment is capable of continuously detecting and discovering unmanned aerial vehicles (UAVs) within a 5km airspace range of key areas, 24/7 and in all weather conditions. It can accurately provide the command, control, and surveillance platform with the UAVs' trajectory information, including their azimuth, distance, altitude, and speed. Upon receiving the target's location information, the platform can parse it into the horizontal, elevation, and zoom linkage information for the intelligent tracking device. The intelligent tracking device can automatically select matching position linkage information based on the target's location, size, and speed, enabling precise linkage tracking of moving targets within a 5km airspace range of key areas. Command personnel can use the command, control, and surveillance platform to review the moving target's trajectory information and real-time video preview, and freely deploy on-site disposal personnel to use countermeasures such as anti-drone guns to interfere with the navigation and control channels of drones operating on specific frequencies, thereby forcing them to land or return to their point of origin.
When the target enters the dangerous zone within 1-2km of the key area, the laser disposal device can be activated to directly destroy the drone, ensuring the safety of the key area.
System operating distance diagram
Advantages of integrated processing unit
The Integrated Processing Unit is based on a ruggedized laptop with a triple-screen setup and a control joystick. The terminal display and control software integrates the control and display functions of the system's equipment, featuring the linkage function between the radar detection device, intelligent tracking device, and laser disposal device. The platform can receive the target's azimuth, distance, altitude, and speed information from the radar and display the map along with the trajectory of the moving target. It can also parse the target location information detected by the radar into horizontal, elevation, and zoom linkage information for the intelligent tracking device and laser disposal device, allowing real-time preview of the tracking video and remote operation of the laser to strike the target.
The system is easy to operate and has a low dependency on specialized skills. Operators can become familiar with the system operation after just ten minutes of training provided by our company.
Advantages of high energy laser treatment equipment
Modular Design: Quick assembly and disassembly, high reliability, adaptable to various scenarios, rapid maintenance and replacement.
Interconnected Equipment: Achieves AI - based area denial, coordinated strikes, and counter - drone swarm capabilities.
Visual Tracking: Intelligent rapid identification and locking onto targets with high tracking precision.
ExtendedLasing Time: Capable of continuous long - duration target engagement.
Excellent Damage Effect: Achieves damage within 10 seconds.
Stealthy Engagement: Silent and invisible, undetectable and inaudible.
Remote Control: Remote intelligent operation, automatic target locking, and high - precision target engagement.
Unlimited Ammunition: Operates as long as there is power, extremely low - cost engagement, always ready.
Straight - Line Trajectory: Lock - on equals hit.
Unmanned Combat: Game - like warfare, everyone is a marksman.
No Collateral Damage: Precision - strike with no collateral damage; non - live - fire drills with extremely high safety; capable of targeting specific individuals in a crowd.
Strong EnvironmentalAdaptability: Suitable for low - and high - temperature environments.
Interlinking and Expandability: Capable of interlinking with other search and detection devices, supports compatibility and expansion.
System technical parameters
Equipment Name |
Item |
SHR-T1 |
SHR-T3 |
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High energy laser treatment equipment |
Target |
Small drones, drones |
Small drones, drones |
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Power |
3000W |
5000W |
10000W |
12000W |
15000W |
30000W |
|
Maximum range @ time in excellent weather |
1.3km@≤25s |
1.5km@≤25s |
1.9km@≤25s |
2.6km@≤25s |
2.9km@≤25s |
3.3km@≤25s |
|
Typical range @ time |
1km@≤10s |
1.2km@≤10s |
1.5km@≤10s |
2km@≤10s |
2.2km@≤10s |
2.6km@≤10s |
|
Maximum continuous single-shot light time |
≥5min |
≥5min |
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Fire switching time |
≤5s |
≤5s |
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Cooling method |
Water Cooling |
Water Cooling |
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Motion range |
Azimuth -175°~+175° Pitch -15°~+50° |
Azimuth -175°~+175° Pitch -15°~+50° |
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Fully charged battery life |
≥30min |
≥30min |
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Operating temperature |
-20℃~+50℃ |
-20℃~+50℃ |
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Photoelectric tracking equipment |
Working distance |
Small UAV, FPV (0.35m×0.35m) tracking distance ≥5km, identification distance ≥3km |
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Visible light focal length |
20~1200mm, 60x optical zoom |
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Video resolution |
2688 × 1520 |
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Thermal imaging focal length |
45~900mm, 20x optical zoom |
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Thermal imaging resolution |
Refrigeration movement 640×512 |
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Rotation angle |
Horizontal 0°~ 360°, unlimited continuous rotation; pitch: -25°~+60° |
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Laser ranging |
Range measurement of UAV targets ≥5km |
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Working mode |
Support visible light/infrared thermal imaging video switching tracking, integrated with multiple tracking algorithms, can be manually/automatically switched according to different scenarios, support target temporary loss and recapture and lock; |
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Target classification and recognition |
Can perform automatic detection and recognition of UAV targets based on deep learning for white light and infrared images, support multi-target detection |
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Radar detection equipment |
Working frequency band |
Ku band/X band/S band |
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Detection distance |
Small drone targets ≥5km (RCS=0.01m2) |
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Action range |
Azimuth coverage 360°; pitch coverage ≥40° |
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Measurement accuracy (RMS) |
Distance: ≤15m; Azimuth: ≤1°; Pitch: ≤1° |
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Comprehensive processing Triple screen reinforced notebook |
CPU |
i9-12900H+RTX3070 |
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Memory |
32GB |
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Storage |
1T solid state drive |
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Display |
Three 17.3-inch wide-viewing angle LED LCD screens, resolution 1920x1080, extended display of 3 different images, outdoor use, high brightness, anti-reflection. |
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Operating System |
win10 |
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Interface |
USB3.0×2; USB2.0×4, audio microphone interface, 2 Gigabit Ethernet ports, RS232 or other |
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Digital Video Interface |
HDMI |
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Operating Temperature |
-20℃~+50℃ |
Note: The indicated effective distance is when visibility is above 20km and air humidity is below 60%; the effective distance will vary due to different weather conditions.
Application
◎ Conflict Defense & ◎ Key Point Defense
◎ Aviation and Airport Defense & ◎ Petrochemical Defense
◎ Hydropower Station Defense & ◎ Nuclear Power Plant Defense
◎ Border and coastal defense hot air balloon/drone countermeasures & ◎ Large event security
Successful Application