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Aerial EO/IR System

Aerial EO/IR System

Our aerial EO/IR system is a lightweight, high-performance payload tailored for UAVs, helicopters, and fixed-wing aircraft. Integrating HD electro-optical and cooled IR sensors, it delivers long-range detection, precise tracking, and clear imaging—even in low light, haze, or turbulence. Equipped with anti-vibration technology and real-time data downlink, it ensures stable performance during aerial missions. Designed for easy payload integration and intuitive operation, this system empowers aerial operators with actionable intelligence for surveillance, reconnaissance, and emergency response
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Product Introduction

Custom Aerial EO/IR system Manufacturer

 

 

 

 

Lightweight & Compact:
Weighs under 2kg, ideal for small-to-medium UAVs without compromising flight endurance or maneuverability.

 

Long-Range Aerial Detection:
Detects human targets up to 3km and vehicles up to 8km from aerial platforms, with 40x optical zoom for detail recognition.

 

Anti-Vibration & Stable Imaging:
Built-in 3-axis gimbal and shock-absorbing structure eliminate aerial turbulence interference, ensuring blur-free visuals.

 

Fast Target Lock & Tracking:
AI-powered auto-tracking algorithm locks onto moving targets (vehicles, personnel) in 0.3s, maintaining focus during flight.

 

 

 

aerial EO/IR system

 

 

Product Specifications

Parameter Category Index Item Specific Parameter Requirements


Maximum Angular Velocity of Rotation

Azimuth ≥60°/s
Pitch ≥60°/s

Maximum Angular Acceleration of Rotation
Azimuth ≥100°/s²
Pitch ≥60°/s²
Rotation Range Azimuth 360° continuous rotation, left as negative and right as positive
Angle Reporting Accuracy & Resolution / Resolution: ≤1 mrad (milliradian)
Stable Accuracy / ≤0.1 mrad (milliradian)

 

 

Working Principles
 
 

Huirui is a professional customized EO IR systems manufacturer.

 

Aerial Sensor Alignment

3-axis gimbal synchronizes with aircraft attitude, keeping sensors focused on targets despite flight movements or wind.

 
 

Dual-Sensor Data Capture

EO sensor captures visible light; cooled IR sensor amplifies thermal signals from ground objects, converting both to electrical data.

 
 

Aerial Image Optimization

Onboard processor reduces atmospheric haze and motion blur, enhancing target contrast for aerial views.

 
 

Real-Time Downlink

Processed images and GPS target coordinates are transmitted to ground control via encrypted wireless (5G/COFDM) with sub-100ms latency.

 

 

 

Application Fields

 

Aerial Surveillance: Border patrol and crowd monitoring via UAVs, providing wide-area coverage and real-time threat detection.

Search & Rescue (SAR): Locating missing persons in remote areas, forests, or flood zones from aerial platforms, day or night.

Precision Agriculture: Aerial thermal scanning to identify water-stressed crops, pest infestations, and optimize irrigation resources.

Disaster Response: Assessing wildfire spread, building damage, and trapped survivors post-earthquakes or floods via aerial missions.

 

 

 


 

FAQ

 

 

 

Q: What UAV weight classes is this system compatible with?
A: It's optimized for UAVs with 5-50kg takeoff weight, including popular models like DJI Matrice 350 RTK and Autel Dragonfish.

 

Q: How does it perform in high-altitude or low-temperature environments?
A: It operates reliably at altitudes up to 6km and temperatures from -30°C to 55°C, with anti-condensation design for high humidity.

 

Q: What's the maximum flight time it supports without data loss?
A: It has ultra-low power consumption (12-20W) and supports 2-4 hours of continuous operation, matching most UAV flight durations.

 

Q: Can it capture and store images/videos locally during flight?
A: Yes, it has 128GB internal storage and supports real-time saving to SD cards, with encrypted data to prevent leakage.

 

Q: Does it come with a ground control software (GCS) for operation?
A: A free, user-friendly GCS is included-supporting target marking, waypoint tracking, and data export to GIS systems.

 

Q: What's the maintenance cycle for the aerial payload?
A: Routine maintenance is recommended every 50 flight hours; the core components (sensors, gimbal) have a 3,000-hour service life.

 

 

 

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