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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
640x512/12μm VOx Microbolometer Uncooled Thermal Imaging Module for Industrial Thermography
| Resolution | 640x512 | Power Consumption | 0.65W |
|---|---|---|---|
| Spectral Range | 8~14μm | Pixel Pitch | 12μm |
| NETD | ≤25mK/F1.0/25℃ | Frame Rate | 25Hz/30Hz |
| Highlight | VOx Microbolometer Thermal Imaging Module,640x512 Uncooled Thermal Imaging Module,Uncooled Thermal Module 12um |
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The COIN612RG2 infrared temperature measurement camera core is a cost-effective industrial-grade thermal imaging solution that balances premium performance and competitive pricing. It is equipped with industrial-grade ApexCore 640*512/12μm infrared detector, delivering professional imaging quality with NETD≤25mK and stable temperature measurement accuracy of ±2°C or ±2%.
Covering common industrial temperature ranges and supporting customized range expansion, it fully meets the daily detection needs of industrial thermography and process control. With low power consumption, miniaturized size, rich compatible interfaces and universal optical lenses, it greatly reduces the R&D and integration costs of users, providing a high-cost-performance, easy-to-develop and reliable infrared temperature measurement core for intelligent manufacturing and industrial monitoring projects.
- Comprehensive Functionality, Cost-Effective Design
- Developed using a ApexCore wafer-level infrared detector, with NETD≤25mK
- Combines a widely used FPA with advanced image processing algorithms for enhanced image quality
- Temperature measurement accuracy up to ±2°C or ±2%, supporting ranges of -20°C to 150°C and 100℃ to 550°C, with customizable extensions
- Compact and Lightweight, High Efficiency with Low Power
- Dimensions: 25.4*25.4*15.7mm
- Weight: 15±1g, Power consumption: ≤0.65W
- Multiple Configurations, Rapid Integration
- Optional optical lenses to meet diverse application requirements
- Supports USB2.0/DVP/LVDS/BT.656 image output interfaces
- RAW/YUV/TMP image data output with serial port control
| Model | COIN612RG2 |
|---|---|
| IR Detectors Indicators | |
| Sensitive Material | VOx |
| Resolution | 640*512 |
| Pixel Size | 12μm |
| Spectral Response | 8μm ~ 14μm |
| Typical NETD | ≤25mK/F1.0/25℃ |
| Image Processing | |
| Digital Frame Rate | 25/30Hz |
| Start-up Time | 6s |
| Analog Video | PAL/NTSC |
| Digital Video | RAW/YUV422/TMP |
| 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) |
| USB Expansion 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 |
| Temperature Measurement | |
| Operating Temperature | -10℃~+50℃ |
| Temperature Measurement Range | -20℃~150℃, 100℃~550℃; Support Customization and Expansion |
| Temperature Measurement Accuracy | ±2°C or ±2% (whichever is greater) |
| Partial Temperature Measurement | Support output maximum, minimum and average value of temperature measurement areas |
| SDK | Android/Windows/Linux; Achieve Video Stream Analysis and Conversion from Gray to Temperature |
| Mechanical | |
| Bare Core Size(mm) | 25.4*25.4*15.7mm |
| Bare Core Weight(g) | 15±1g |
| Environmental Adaptability | |
| Operating Temperature | -40℃~+70℃ |
| Storage Temperature | -45℃~+85℃ |
| Humidity | 5%~95%, non-condensing |
| Vibration | 5.35grms, Random Vibration, 3-axis |
| Impact | Half Sine Wave, 40g/11ms, Impact Direction 3 Axis, 6 Direction |
| Certification | ROHS2.0/REACH |
| Optical Lens | |
| Optical Lens | Fixed Focus Athermal: 4.8mm/7mm/9.1mm/13mm/19mm/25m/35mm |
| Protection Level | IP67(Front Lens) |
The COIN612RG2 thermal imaging module is applied in the field of Thermography, Industrial Vision, Firefighting and Rescue, Security Surveillance, Outdoor Observation, Machine Vision, Consumer Electronics etc.
SensorMicro was founded with a simple but powerful belief: Innovation should serve real-world needs.
SensorMicro exists to empower people and systems to see beyond the surface—into the patterns, the problems, and the possibilities that lie beneath.
By turning invisible heat into visible truth, we help industries make smarter decisions, protect what matters most, and navigate complexity with clarity.
Heeding to our insistence on being self-made and customer-first has become a sure recipe for SensorMicro's momentum. As our business spans much of the globe, we've charged ahead on all fronts—from security, firefighting, industrial inspection, medical care, and machine vision, to environmental monitoring and key aspects of carbon neutrality—helping partners unlock the full potential of intelligent infrared sensing, and connecting the dots of life.
We are more than an infrared technology company. We are a community of people committed to building a sustainable, ethical, and human-centered future. Every pixel of innovation we create is a promise — a promise to protect, to empower, and to serve.
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.

