Products

Military EO/IR Systems
Custom Military EO/IR Systems Manufacturer

All-weather, all-time visible/infrared imaging capability :
Supports dual-channel visible light and infrared imaging, enabling operation day and night, low-light conditions, and adverse weather.
Passive reconnaissance and strong anti-jamming capabilities:
The system does not require active electromagnetic wave emission, reducing exposure risk and providing superior effectiveness against electronic jamming and concealed targets.
Long-range detection and precise tracking and identification:
Equipped with a high-resolution optical lens, infrared detector, and stable platform, enabling long-range target detection, locking, and identification.
Diverse platform and flexible deployment :
Can be mounted on UAVs, helicopters, ships, ground armored vehicles, or fixed outposts, adapting to various military operational environments.
Product Specifications
| Parameter Category | Index Item | Specific Parameter Requirements |
|
|
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) |
Four Core Technologies
High-Sensitivity Infrared Detector - Covering short-wave (SWIR), mid-wave (MWIR), and long-wave (LWIR) infrared bands, capturing target thermal radiation characteristics.
Optical/Infrared Lens Fusion and Data Fusion Processing - Fusion of visible light and thermal imaging data to enhance target recognition and scene understanding.
Stabilized Gimbal or Multi-Axis Placement Platform - Precision gyroscope stabilization and mechanical structure ensure clear images and stable target tracking.
Intelligent Image Processing and Automatic Target Recognition (Auto-TRACK/ATR) - Utilizing algorithms to assist in target locking, tracking, and recognition, reducing operator workload
Four Working Principles
Passive Infrared Radiation Capture - Target objects emit infrared radiation due to their higher temperature than the environment; the system's infrared detector receives this radiation and converts it into an electrical signal.
Visible Light Image Acquisition - The electro-optical camera acquires visible light images of the environment and the target for identification, confirmation, and fusion.
Image Fusion and Target Enhancement - Overlaying infrared and visible light images to highlight target features and improve recognition accuracy.
Target Locking and Tracking - The stabilization platform, in conjunction with image processing algorithms, performs real-time tracking and locking of moving targets and outputs identification information.
FAQ
Q1: How does the EO/IR system perform at night or in low-visibility environments?
A: The system integrates infrared thermal imaging and electro-optical imaging, providing continuous clear images in complex environments such as night, fog, dust storms, and smoke screens, ensuring all-weather surveillance capabilities.
Q2: How does it integrate with existing platforms (UAVs, ships, armored vehicles)?
A: The system features a stabilized gimbal and standard interfaces for multi-platform deployment, supporting rapid integration of power, signal, and data links, adapting to UAVs, helicopters, ships, and ground vehicles.
Q3: How is the system's anti-jamming capability?
A: The EO/IR system is a passive detection system, not reliant on active transmission, making it less susceptible to enemy electronic jamming. Furthermore, its thermal imaging is unaffected by radar stealth materials, providing strong resistance against concealed targets.
Q4: How effective is the system at tracking moving targets (such as UAVs, small boats, and armored vehicles)?
A: Through a stabilized platform and intelligent image processing algorithms, the system can automatically identify, lock onto, and track moving targets, outputting identification information and improving target detection and tracking efficiency.
Q5: Is operation and maintenance difficult?
A: The system adopts a robust design and modular structure. Routine maintenance mainly involves lens cleaning, platform lubrication, and software upgrades. The user interface is user-friendly, and efficient operation can be achieved after training.
Q6: What tactical or operational value will purchasing this system bring?
A: It can significantly improve all-weather situational awareness capabilities, enhance target detection and identification efficiency, reduce reliance on radar or active reconnaissance equipment, and improve platform survivability and strike effectiveness. It is a key perception system for modern combat platforms.
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