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High-resolution EO/IR Imaging System

High-resolution EO/IR Imaging System

The High-Resolution Electro-Optical/Infrared (EO/IR) Imaging System is a cutting-edge ISR payload, inspired by eagle-eye vision mechanics to balance wide-field surveillance and ultra-detailed target imaging. It integrates high-pixel EO (visible/NIR) sensors and LWIR (8–12 μm) modules, capturing sub-centimeter-level surface features and faint thermal signatures simultaneously. Equipped with multi-aperture fusion tech and AI-driven recognition, it resolves the conflict between large FOV and high resolution, delivering actionable intelligence for precision guidance, border security, and aerial reconnaissance in extreme environments like missile-borne scenarios.
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Product Introduction

Custom High-resolution EO/IR imaging system Manufacturer

 

 

 

Eagle-Eye Inspired Dual-Capability:

Combines wide-field search (via edge sub-apertures) and high-res targeting (via central sub-aperture), mimicking eagle's foveal vision for comprehensive situational awareness.

 

Sub-Centric Level Resolution:

EO modules support ultra-high pixel imaging; IR sensors (15μm×15μm pixels) capture subtle thermal differences, enabling target characterization without proximity.
 

Intelligent Multi-Aperture Collaboration:

Edge sub-apertures (16% FOV overlap) realize large-area scanning; central aperture locks onto targets automatically via Agent-based control.
 

Missile-Borne Environment Adaptability:
No complex gimbals required; coaxial design with optical dome ensures stability under high-speed, high-vibration conditions during missile flight.

 

 

 

 

High-resolution EO/IR imaging 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

 

Multi-Aperture Integration

Adopts five-sub-aperture structure-four edge apertures for FOV stitching, one central aperture for high-res imaging, forming a compact unified payload.

 
 

Agent-Based Synergistic Sensing

Edge apertures trigger target alerts; Agent control system directs central aperture to focus, achieving simultaneous wide search and precision capture.

 
 

Variable-Resolution Fusion

Onboard processors stitch edge-aperture FOV data and merge with central high-res images, generating integrated visuals with both context and details.

 
 

Coaxial Stability Control

Central aperture rotates around optical dome's center, minimizing aberration; no multi-axis turntables, ensuring stable imaging in high-dynamics scenarios.

 

 

Technical Advantages

 

●Optimized LWIR Sensitivity: Operates in 8–12 μm band with low NEI, detecting faint thermal signatures from low-heat targets like small UAVs or hidden personnel.

●Superior MTF Performance: Optical system meets high modulation transfer function standards, ensuring clear imaging even with off-axis aberration from irregular dome surfaces.

●F-Number Optimized Design: Central sub-aperture F/3 (3x resolution of edge apertures F/1) balances light intake and resolution for diverse illumination conditions.

●Mechanical Simplification Advantage: No complex turntable structures reduce weight and failure risk, ideal for payload-limited platforms like missiles and small UAVs.


 

FAQ

 

 

 

 

 

Q: What's the resolution difference between central and edge apertures?
A: Central sub-aperture (F/3) has 3x higher resolution than edge ones (F/1). EO max resolution reaches sub-centimeter level; IR uses 1024×768 pixels (15μm pitch) for clear thermal imaging.
 

Q: Is the system compatible with missile-borne guidance platforms?
A: Yes, its coaxial dome design and simplified mechanics suit high-vibration, high-speed missile environments, avoiding issues from traditional gimbals and ensuring stable imaging during flight.
 

Q: How to calibrate the multi-aperture fusion accuracy?
A: Annual professional calibration for sub-aperture alignment; the system has built-in self-calibration functions for daily use to maintain FOV overlap (16%) and fusion precision.
 

Q: What's the IR spectral range and its advantage?
A: It operates in 8–12 μm LWIR band, which minimizes atmospheric interference, enabling reliable detection in haze, smoke, and long-distance missile-borne scenarios.
 

Q: Can it realize real-time target handoff between apertures?
A: Absolutely. The Agent-based control system enables millisecond-level handoff-edge apertures detect targets, and central aperture locks on instantly without data lag.
 

Q: Can we customize the number of sub-apertures for specific needs?

A: Yes. Standard model uses 5 sub-apertures; we offer 3–7 aperture customizations for different platforms (UAVs/missiles) with 6–10 weeks lead time and MTF performance validation.

 

 

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