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Thermal Camera Core
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Thermal Security Camera
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Plug-in Thermal Camera
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Cooled Infrared Detectors
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Cooled Camera Modules
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Optical Gas Imaging
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Radiometric Thermal Module
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High Resolution Thermal Camera Module
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Thermal Camera For Fever Detection
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Vehicle Mounted Thermal Camera
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Integrated Dewar Cooler Assembly
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Uncooled Infrared Detectors
Cooled Thermal Module Infrared Camera Core 1280x1024 10μm High Thermal Sensitivity MWIR Cooled Detector
| High Definition | 1280x1024 | Pixel Pitch | 10μm |
|---|---|---|---|
| Frame Rate | 50Hz | NETD | 20mK(F2); 25mK(F4) |
| Size | 101×101×54mm | Spectral Range | 3.7~4.8μm MW |
| Highlight | Cooled Thermal Module Camera Core 12um,Thermal Camera Core 1280x1024,MWIR Camera Module Core |
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The GAVIN GC1210HMF infrared camera core features a 1280×1024/10μm High Operating Temperature (HOT) mid-wave infrared (MWIR) cooled detector. Compared to traditional 640×512/15μm MWIR solutions, it offers one-third smaller pixel pitch and four times higher resolution array, which dramatically enhances spatial resolution and image clarity. Combined with advanced image processing algorithms, it delivers high-definition, finely detailed infrared imagery at megapixel resolution.
Powered by HOT technology, the GAVIN GC1210HMF infrared camera core significantly enhances SWaP performance by offering a compact size, lightweight design, and low power consumption, making it an ideal solution for long-range infrared systems with strict space and integration requirements.
- Megapixel Imaging, Superior Quality
- Developed based on a 1280×1024/10μm HOT MWIR cooled infrared detector, delivering high-definition and delicate image quality
- Integrated with advanced image processing algorithms such as DRC, 2D/3D noise reduction, and EE edge enhancement for clearer imaging
- HOT Technology for Ultimate SWaP Optimization
- Supports high-temperature operation at 150K, with a cooling time ≤4min
- Compact dimensions down to 101×101×54mm, lightweight at just 570g
- Rich Interfaces, Easy Integration
- Supports Cameralink/USB3.0/GigE/HDMI/SDI/MIPI/fiber optic video outputs
- Flexible RAW/YUV image data output
| Model | GAVIN GC1210HMF HOT MWIR Cooled Infrared Camera Core |
|---|---|
| Resolution | 1280×1024 |
| Pixel Size | 10μm |
| Spectral Response | 3.7μm±0.2μm~4.8μm±0.2μm |
| IR Detector NETD(23℃) | 20mK(F2) 25mK(F4) |
| Frame Rate | 50Hz |
| Digital Zoom | 1× to 8× continuous digital zoom |
| Digital Video | Standard: DVP Option: Cameralink/USB3.0/GigE/SDI/HDMI/MIPI/Single-mode Optical Fiber/Multi-mode Optical Fiber |
| Power Supply | 12V±1V |
| Steady Power Consumption(23℃) | ≤8W |
| Cooling Time(23℃) | ≤4min |
| Size(mm) | 101×101×54 |
| Weight(g) | ≤570 |
| Operating Temperature | -40℃~+71℃ |
| Lens Options | Fixed focus: 15mm/F2 Continuous zoom: 15~300mm/F4 30~500mm/F4 |
- NDT (Non-Destructive Testing)
- Environmental Monitoring
- Long-Range Surveillance
- Scientific Research
- Deep Technical Expertise - Years of experience in infrared sensor technology research, development, and application with capabilities across chip design, wafer fabrication, packaging, testing, and system integration.
- Focused on Innovation - Committed to driving technological breakthroughs in thermal imaging, pushing boundaries in NETD, SWaP, and operating temperature.
- Diversified Product Portfolio - Comprehensive range of infrared detection components including both cooled and uncooled solutions for various industries.
- Rigorous Reliability Validation - Robust quality management system with multiple testing procedures to ensure long-term stability and reliability.
- Professional Technical Support - Engineering team works closely with customers to accelerate system integration and shorten time-to-market.
Thermal Sensitivity, also named NETD (Noise Equivalent Temperature Difference), is a key parameter for evaluating medium wave (MWIR) and long wave (LWIR) thermal imaging cameras. It is directly related to the clarity measured by the thermal imager. It is a numerical value representing the signal-to-noise ratio of the temperature difference and measured in milliKelvins (mK). The smaller the thermal sensitivity value, the higher the sensitivity and the clearer the image.
Temperature measurement and all-weather imaging are two basic functions of infrared thermal imaging technology. Products developed based on these two technologies are widely used in security & monitoring, payloads, industrial inspection, firefighting, predictive maintenance, ADAS, epidemic prevention, AIoT etc.

