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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
MCT MWIR Cooled Thermal Module with 640x512 Resolution and 15μm Pixel Size for Long Range Detection
| Resolution | 640x512 / 15μm | Cooling Time (23℃) | ≤8min@24V |
|---|---|---|---|
| IR Detector NETD(23℃) | 16mK(F2); 18mK(F4) | Frame Rate | 50Hz/100Hz |
| Size | 142×58.8×80mm | Weight | ≤680g |
| Highlight | MWIR Cooled Thermal Module 640x512,MCT Cooled Thermal Module 15um,Long Range Detection Cooled Thermal Module |
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GAVIN GC615WMA Cooled Mid Wave Infrared 640x512 / 15 μm Thermal Camera Module
The GAVIN GC615WMA integrates a 640×512/15μm broadband MWIR detector and an RS058 low-temperature cryocooler, combined with multiple built-in image processing algorithms. With its high sensitivity and broad spectral response, it plays a vital role in advanced applications such as high-temperature defect detection, forest fire prevention, and other demanding scenarios.
GAVIN GC series cooled thermal module utilizes MCT & T2SL cooled IR detectors and integrates various image processing algorithms to output clear infrared images in total darkness or bad weather conditions. It can detect and recognize risks and threats at long distance while presenting more target details at short distance.
- Mainstream FPA, Wide Spectral Coverage - 640×512 mainstream resolution for clear and detailed imaging with broad 2.5-4.8μm spectral coverage for diverse applications
- Easy Integration, Flexible Configuration - CameraLink image interface with support for RAW/YUV image data output
- High Frame Rate, Instant Capture - Optional 50 Hz/100 Hz frame rates for capturing fast-moving targets
| Model | GAVIN GC615WMA |
|---|---|
| Resolution | 640×512 |
| Pixel Size | 15μm |
| Spectral Response | Cut-on: ≤2.5μm, Cut-off: ≥4.8μm (50% Response) |
| IR Detector NETD (23℃) | 16mK (F2) 18mK (F4) |
| Effective Pixel Rate | ≥99.76% |
| Frame Rate | 50Hz/100Hz |
| Digital Video | Standard: DVP/LVDS/USB2.0@50Hz Option: Cameralink/USB3.0/GigE/SDI/HDMI/MIPI/Single-mode Optical Fiber/Multi-mode Optical Fiber |
| Communication | Standard: USB2.0/LV-TTL Option: RS422/CAN/USB3.0/GigE |
| Cooling Time (23℃) | ≤8min@24V |
| Steady Power (23℃) | ≤10W |
| Size (mm) | 142×58.8×80 |
| Weight (g) | ≤680 |
| Operating Temperature | -40℃~+71℃ |
| Storage Temperature | -55℃~+71℃ |
| Focal Length | 55mm/F2 |
The GAVIN GC615WMA thermal camera module is widely used in many areas such as Environmental Monitoring, Long-range Surveillance, High-Temperature Defect Identification, and Multi-Spectral Switching.
- Deep Technical Expertise - With many years of experience in the research, development, and application of infrared sensor technology, we have built strong capabilities across chip design, wafer fabrication, packaging and testing, as well as system integration.
- Focused on Innovation and Practical Implementation - We are committed to driving technological breakthroughs in thermal imaging, constantly pushing the boundaries in NETD, SWaP, and operating temperature.
- Diversified Product Portfolio - Backed by independent R&D and multiple technical pathways, we offer a comprehensive range of infrared detection components—both cooled and uncooled.
- Rigorous Reliability Validation - Supported by a robust quality management system, our products undergo multiple testing procedures to ensure long-term stability and reliability.
- Professional Technical Support - Our engineering team works closely with customers' R&D and product teams to accelerate system integration and improve efficiency.
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, industrial inspection, firefighting, predictive maintenance, ADAS, epidemic prevention, AIoT etc.
MCT, also called HgCdTe, refers to Mercury-Cadmium-Tellurid which is a chemical compound of cadmium telluride (CdTe) and mercury telluride (HgTe) and a common material in photodetectors. MCT/HgCdTe detector is a photoconductive detector that operates at a cryogenic environment and can detect infrared radiation. It is more sensitive than thermal sensors.

