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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 MWIR Camera Module with 1024×768 Resolution 10μm Pixel Size and HOT Technology for High-Quality Thermal Imaging
| Type | MWIR Camera Module | IR Detector | Cooled Detector |
|---|---|---|---|
| Resolution | 1024×768 / 10μm | NETD | 20mK(F2); 25mK(F4) |
| Spectral Range | 3.7~4.8μm MW | Size | 87×94×54.5mm |
| Highlight | MCT Infrared Thermal Imaging Module,1280x1024 Infrared Thermal Imaging Module,MWIR Infrared Thermal Module |
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The GAVIN GC1010HMG infrared camera core integrates a 1024×768/10μm HOT MWIR cooled infrared detector, offering a larger array and smaller pixels compared to the GAVIN GC615HMG, resulting in clearer imaging with finer details. Combined with next-generation image processing algorithms, it delivers stable, high-quality images, while HOT technology enables next-level SWaP optimizations with smaller and lighter design, and low power consumption.
The easy-to-integrate infrared camera core supports various digital video interfaces, making it ideal for handheld devices, mobile payloads, and long-duration monitoring in compact integration scenarios where size, energy efficiency, and long-range detection are critical.
- Superior Quality with Larger FPA and Smaller Pixel Size
- Developed based on a 1024×768/10μm large-format HOT MWIR cooled infrared detector, delivering clear images and wide field of view
- Equipped with next-generation image processing algorithms including DRC, 2D/3D noise reduction, and EE edge enhancement for superior image quality
- Smaller 10μm pixel size provides higher spatial resolution and better signal-to-noise ratio
- SWaP Optimization Leading by HOT Technology
- Supports 150K high-temperature operation, with cooling time ≤ 4min
- Compact size: 87×94×54.5mm, lightweight: 460g
- Rich Interfaces, Easy Integration
- Supports CameraLink/USB3.0/GigE/HDMI/SDI/MIPI/Fiber optic interfaces
- Flexible RAW/YUV image output
| Model | GAVIN GC1010HMG HOT MWIR Cooled Infrared Camera Core |
|---|---|
| Indicators | |
| Resolution | 1024×768 |
| Pixel Size | 10μm |
| Spectral Response | 3.7μm±0.2μm~4.8μm±0.2μm |
| IR Detector NETD(23℃) | 20mK(F2) 25mK(F4) |
| Image Processing | |
| Frame Rate | 50Hz |
| Digital Zoom | 1× to 8× continuous digital zoom |
| Image Direction | Horizontally/Vertically/Diagonally Flip |
| Image Algorithm | DRC, 2D/3D Image Noise Reduction, EE |
| Electrical | |
| Analog Video | PAL/NTSC |
| Digital Video | Standard: DVP/LVDS/USB2.0 Option: Cameralink/USB3.0/GigE/SDI/HDMI/MIPI/Single-mode Optical Fiber/Multi-mode Optical Fiber |
| External Sync | Standard: LV-TTL Option: RS422/LVDS |
| Communication | Standard: USB2.0/LV-TTL Option: RS422/CAN/USB3.0/GigE |
| Power Supply | 12V±1V |
| Steady Power Consumption(23℃) | ≤8W |
| Cooling Time(23℃) | ≤4min |
| Size(mm) | 87×94×54.5 |
| Weight(g) | ≤460 |
| Operating Temperature | -40℃~+71℃ |
| Optical Lens | |
| Lens Options | Fixed focus: 25mm/F2 |
The GAVIN GC1010HMG thermal infrared camera module is widely used in many areas such as NDT, Environmental Monitoring, Long-Range Surveillance, Scientific Research etc.
- Requirement Analysis
- Scenario Assessment
- Product Selection
- Customized Solutions
- Rapid Delivery
- System Integration & Testing
- Technical Training
- Application Guidance
- Remote Diagnostics
- Warranty Service
- Firmware Upgrades
- Technical Maintenance
NETD refers to "Noise Equivalent Temperature Difference". It is a measure for how well a thermal imaging detector is able to distinguish between very small differences in thermal radiation in the image. NETD is typically being expressed in milli-Kelvin (mK). Usually the lower the NETD figure is, the higher the thermal sensitivity indicates.
SWaP3 refers to size, weight, power, performance and price. It indicates the technology trend of infrared industry.
DRI usually refers detection, recognition and identification distance of a thermal imaging system. It is a crucial parameter to judge the performance of the thermal imaging system.

