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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
Uncooled FPA Thermal Camera Core with 1280×1024 Resolution and 8μm Pixel Size for Ultra-compact Integration
| Resolution | 1280x1024/8μm | NETD | ≤30mK |
|---|---|---|---|
| Spectral Range | 8~14μm | Digital Frame Rate | 25/30Hz |
| Start-up Time | ≤6s | Supply Voltage | 4.5-5.5V |
| Highlight | FPA Thermal Imaging Core,Uncooled Thermal Imaging Core |
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Featuring industry-first 8μm megapixel thermal imaging technology, the iTL1208 infrared camera core leads the innovation of miniaturized thermal detection systems. Equipped with the cutting-edge ApexCore 1280×1024 super infrared detector with exclusive 8μm pixel size, it achieves a perfect balance of ultra-high integration density and full megapixel resolution, outperforming conventional thermal camera cores in both precision and compactness.
Advanced built-in image enhancement algorithms optimize thermal image clarity and detail presentation, restoring rich temperature field information accurately. With revolutionary germanium-free chalcogenide optical design, ultra-low 1W power consumption, and standard MIPI CSI digital output, the iTL1208 combines technological breakthroughs with practical usability for next-generation thermal imaging device upgrading.
- 8μm Megapixel Breakthrough: World's first 8μm megapixel thermal camera core powered by the ApexCore 1280×1024/8μm super infrared detector, balancing high resolution with ultra-compact integration
- Advanced SWaP Performance: Measures only 22.6×22.6×34.5 mm, weighs 35.7±2g (including 12mm lens), and consumes just 1W - breaking the size barrier for megapixel thermal imaging
- Germanium-Free Optics & Fast Integration: Germanium-free chalcogenide optics with multiple lens options for diverse application requirements. MIPI CSI image output interface with RAW and YUV data output for simplified system integration
| Model | iTL1208 |
|---|---|
| IR Detectors Indicators | Sensitive Material: VOx Resolution: 1280×1024 Pixel Size: 8μm Spectral Response: 8μm ~ 14μm Typical NETD: ≤30mK |
| Image Processing | Digital Frame Rate: 25/30Hz Start-up Time: ≤6s Digital Video: RAW/YUV Image Algorithm: NUC/3DNR/DNS/DRC/EE Image Display: 10 Types (White Hot/Lava/Iron Red/Hot Iron/Medical/Arctic/Rainbow 1/Rainbow 2/Tint/Black Hot) |
| Electrical | Standard External Interface: 34Pin_Connector Interface: BP04SD-34-0065-R0 Communication Interface: TTL-232/I2C Digital Video Interface: MIPI-CSI Supply Voltage: 4.5-5.5V Typical Power Consumption: 1W |
| Mechanical | Size (including lens): Various configurations from 22.6×22.6×34.5mm to 22.6×22.6×50.9mm depending on lens Weight (including lens): 35.7±2g to 110±5.5g depending on lens |
| 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 | Fixed Focus Athermal: 5/10/12/17/25/35mm |
- Product Customization: Adjust configurations and adapt algorithms to meet industry-specific requirements
- On-Site Technical Support & Training: Provide core customers with hands-on system setup and operational training
- Joint Innovation for New Products & Markets: Collaborate with customers to co-develop innovative infrared application solutions
Infrared thermal imaging is a method that utilizes infrared radiation and thermal energy to gather information about objects. According to the radiation difference between the object and the background environment and the radiation difference of each part of the object itself, the infrared thermal image can show the radiation fluctuation of each part of the scene, thus showing the characteristics of the scene.
- See through total darkness
- Identification under camouflage
- Long range detection
- Heat distribution detection
- Non-contact temperature measurement
- Occupation awareness
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 electric power, security & monitoring, industrial manufacturing, scientific research, medical treatment and other traditional fields.

