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Thermal Camera Core
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Thermal Security Camera
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Drone Thermal Camera
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EO IR Systems
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Thermal Imaging Binoculars
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Infrared Thermal Camera Module
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High Resolution Thermal Camera Module
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Cooled Infrared Detectors
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Optical Gas Imaging
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Thermal Camera For Fever Detection
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Cooled Camera Modules
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Vehicle Mounted Thermal Camera
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Integrated Dewar Cooler Assembly
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Uncooled Infrared Detectors
Long Range Monitoring IR Cooled Camera Module Core 1280x1024 12μM

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xHigh Definition | 1280x1024 | Pixel Pitch | 12μm |
---|---|---|---|
Frame Rate | 50Hz/100Hz | NETD | ≤20mK |
Size | 165x86x107mm | Spectral Range | 3.7~4.8μm MW |
Highlight | IR Cooled Camera Module Core,1280x1024 Camera Module Core,IR Cooled Camera Modules 12uM |
Cooled IR Detector Module Core 1280x1024 12μM For Long Range Monitoring
GAVIN1212 high resolution thermal camera module integrates large array 1280x1024/12μm cooled MWIR detector. Various image processing algorithms are embedded in the GAVIN1212 electronics to output clear infrared images in the total darkness or bad weather conditions. It can detect and recognize risks and threats at long distance while present more target details at short distance.
With large array 1280x1024 resolution it can realize wider field of view and provide more image details. The reduced 12µm pixel size offer better spatial resolution and match shorter optical lens focus to achieve the same range mission. It is ideal choice for the EO-IR systems integrator to design their payload for air-borne or ship-borne applications.
Mega Pixel Images
• 1280×1024 high definition for wider FOV and longer distance
• 12μm pixel size for better spatial resolution
Sharp Clear Quality
• Good uniformity, effective pixel rate>99.5%
• High sensitivity, NETD≤20mK
Fast Integration
• Support Cameralink interface, RAW/YUV image data output
• Various continuous zoom optical configurations are optional
Model | GAVIN1212 |
IR Detector Performance | |
Resolution | 1280x1024 |
Pixel Pitch | 12μm |
Cryocooler | RS058F |
Spectral Range | 3.7μm~4.8μm MW |
Cooling Time(20°C) | ≤8min |
NETD (20°C) | ≤20mK |
Image Processing | |
Frame Rate | 50Hz/100Hz |
Dimming Mode | Linear/Histogram/Mixed |
Digital Zoom | ×1/×2/×4 |
Image Direction | Horizontally/Vertically/Diagonally Flip |
Image Algorithm | NUC/AGC/IDE |
Electrical Specification | |
Standard External Interface | J30JZ 25pin; HDMI Special Output Interface |
Analog Video | / |
Digital Video | HDMI Output: YUV Cameralink Output: 16bit RAW/YUV |
External Sync |
Frame External Sync: RS422
|
Communication | RS422, 115200bps |
Power Supply | 24V±1V |
Stable Power Consumption | 16W |
Dimension (mm) | 165x86x107 |
Weight | ≤1600g |
Operation Temperature | -40°C ~ +60°C |
Vibration Magnitude | Vibration: GJB Vehicle-mounted High Speed Transport Shock: Half-sine Wave, 40g 11 ms, 3 Axis 6 Direction 3 Times Each |
Optical Lens | |
Optional Lens | Continuous Zoom: 37.5~750mm/F4 Fixed Zoom: 19mm/F2; 40mm/F2; 240mm/F2 |
The GAVIN1212 thermal infrared camera module is widely used many areas such as Remote Monitoring System, Flight Vision Enhancement System, Multi-sensor Payload etc.
1. Advantages of Optical Gas Imaging
Time-saving & Efficient: support large-scale real-time detection, rapid leak location, no need for interrupting production.
Long Range Detection: away from dangerous and complex areas, non-contact non-destructive testing, without additional radiation source
Easy to Analyze: intuitive imaging, instant storage, convenient analysis
Multi-function Inspection: a variety of gases can be detected, with excellent remote temperature measurement function
2. Working Principle of Optical Gas Imaging
Optical gas imaging is a kind of infrared technology that could see invisible industrial gases.
After absorbing infrared radiation at specific wavelengths, infrared radiation difference will cause between the gas and the background.
The gas leak detection infrared detector with built-in narrowband filter only receives the infrared band near the gas infrared absorption peak, and can convert the gas into visible infrared images through the radiation difference between the gas and the background.