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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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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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Infrared Thermal Camera 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
LWIR Uncooled Thermal Imaging Module with 384x288 Resolution and 17μm Pixel Pitch for Low 0.65W Power Consumption
| Resolution | 384x288 | Power Consumption | 0.65W |
|---|---|---|---|
| Spectral Range | 8~14μm | Pixel Pitch | 17μm |
| NETD | ≤30mK/F1.0/25℃ | Frame Rate | 25/30/50Hz |
| Highlight | Thermal Camera Core 25.4mm×25.4mm×35mm,Outdoor LWIR Camera Core,640x512 Detector Thermal Camera Core |
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Engineered for embedded infrared system development, the COIN417G3 infrared camera core utilizes cutting-edge wafer-level detector packaging technology to reduce overall module cost while maintaining top-tier thermal performance. Its enhanced next-gen imaging algorithms eliminate thermal image blurring and ghosting, ensuring stable frame output in low-temperature and dark environments. Compatible with four mainstream digital video interfaces and dual RAW/YUV data output modes, it simplifies hardware docking for embedded AIoT devices and autonomous ADAS vision systems.
- Comprehensive Functionality, Cost-Effective Design
- Developed using a high cost-performance wafer-level packaging detector
- Integrated with advanced image processing algorithms to enhance image quality
- Outstanding Performance, Superior Imaging
- High sensitivity with a typical NETD≤30mK
- Next-generation image algorithms deliver clearer, sharper thermal images
- Flexible Extension, Rapid Integration
- Multiple optical lens options available to suit diverse application scenarios
- Supports USB2.0/DVP/LVDS/BT.656 image output interfaces
- Outputs RAW/YUV image data with serial port control
| Model | COIN417G3 |
| IR Detectors Indicators | |
| Sensitive Material | VOx |
| Resolution | 384×288 |
| Pixel Size | 17μm |
| Spectral Response | 8μm ~ 14μm |
| Typical NETD | ≤30mK/F1.0/25℃ |
| Image Processing | |
| Digital Frame Rate | 25/30/50Hz |
| Start-up Time | 6s |
| Analog Video | PAL/NTSC |
| Digital Video | RAW/YUV422 |
| Image Algorithm | Non-uniformity Correction (NUC) 3D Noise Reduction (3DNR) 2D Noise Suppression (DNS) Dynamic Range Compression (DRC) Edge Enhancement (EE) |
| Image Display | 10 Types (White Hot/Lava/Iron Red/Hot Iron/Medical/Arctic/Rainbow 1/Rainbow 2/Tint/Black Hot) |
| PC Software | |
| ICC Software | Module Control & Video Display |
| Electrical | |
| Standard External Interface | 50Pin: DF40C-50DP-0.4V(51), (HRS,Male) |
| Extension Board | USB3.0/USB2.0/VPC/USB2.0&VPC |
| Communication Interface | TTL-232/USB2.0 |
| Digital Video Interface | DVP8/DVP16/USB2.0/BT.656/LVDS |
| Supply Voltage | 4.5~5.5V |
| Typical Power Consumption | 0.65W |
| Mechanical | |
| Bare Core Size(mm) | 25.4mm×25.4mm×16.5mm |
| Bare Core Weight(g) | 16.6±1 |
| Environmental Adaptability | |
| Operating Temperature | -40℃~+70℃ |
| Storage Temperature | -45℃~+85℃ |
| Humidity | 5%~95%, non-condensing |
| Vibration | Random Vibration, 5.35grms, 3-axis |
| Impact | Half Sine Wave, 40g/11ms, Impact Direction X Axis, 3 times |
| Certification | ROHS2.0/REACH |
| Optical Lens | |
| Optical Lens | Fixed Focus Athermal: 4.8mm/7mm/9.1mm/13mm/19mm/25mm/35mm |
| Protection Level | IP67(Front Lens) |
The COIN417G3 thermal imaging module is applied in the field of Industrial Vision, Security Monitoring, Firefighting & rescue, Outdoors, Machine Vision, ADAS etc.
- Complete Documentation: Product manuals, setup guides, and selection references. Get started without guesswork.
- Development & Testing Assistance: Sample Integrated Testing, performance evaluation, and parameter verification made easy.
- Advanced Developer Toolkit: SDKs, APIs, algorithms, and debugging tools for deep integration.
- Remote Technical Support: 24/7 support--quick response and timely resolution for critical issues.
- Warranty: Original parts and strict process adherence to restore optimal performance.
As climate change and habitat destruction become increasingly public concerns, it is important to educate audiences about the importance of wildlife conservation and the role of human interaction in these habitats.
However, there are certain difficulties in animal observation due to some factors. For example, specific animals are more active at night, with insufficient light or hidden in the depths of the jungle, it is difficult to find them; some animals are extremely aggressive or full of danger and are not suitable for close observation.
Thermal imaging technology has the ability to effectively translate heat - that is, thermal energy - into visible light to analyze surroundings. With the help of infrared images, animals can be tracked even in poor visibility conditions and total darkness.

