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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 Thermal Camera Core with 1280x1024 Resolution and 8μm Pixel Size for Ultra-Low 1W Power Consumption
| Resolution | 1280x1024/8μm | NETD | ≤30mK |
|---|---|---|---|
| Spectral Range | 8~14μm | Supply Voltage | 4.5-5.5V |
| Typical Power Consumption | 1W | Digital Video Interface | MIPI-CSI |
| Highlight | Uncooled Thermal Camera Core 12um,1280x1024 Security Thermal Camera Core |
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Optimize your thermal imaging devices with the iTL1208 high-performance infrared camera core, a groundbreaking solution built for industry-leading SWaP (Size, Weight, and Power) efficiency. Breaking traditional size limitations of megapixel thermal cameras, the iTL1208 features an ultra-compact 22.6×22.6×34.5mm form factor, lightweight 35.7±2g weight, and ultra-low 1W power consumption, perfectly catering to portable and mobile application scenarios.
As the world's first 8μm megapixel thermal camera core, it integrates a premium 1280×1024 high-resolution detector and advanced image enhancement algorithms to capture crisp, detailed thermal images.
SensorMicro specializes in the design, manufacture, sales and marketing of infrared detector, thermal module and infrared camera core. We provide customers with a variety of infrared thermal imaging solutions that shorten secondary development time and greatly reduce costs.
- 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.
- SWaP Performance Leader: 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: Chalcogenide optics with multiple lens options for diverse application requirements.
- Fast Integration: 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): • 5mm lens: 22.6mm×22.6mm×50mm (lens outer diameter Φ37mm) • 10mm lens: 22.6mm×22.6mm×45.3mm (lens outer diameter Φ33mm) • 12mm lens: 22.6mm×22.6mm×34.5mm (lens outer diameter Φ26.6mm) • 17mm lens: 22.6mm×22.6mm×35.4mm (lens outer diameter Φ27mm) • 25mm lens: 22.6mm×22.6mm×44.2mm (lens outer diameter Φ33mm) • 35mm lens: 22.6mm×22.6mm×50.9mm (lens outer diameter Φ43.2mm) Weight (including lens): • 5mm Lens: 85.5±4.5g • 10mm Lens: 70.5±3.6g • 12mm Lens: 35.7±2g • 17mm Lens: 40.7±2.1g • 25mm Lens: 71.0±3.6g • 35mm Lens: 110±5.5g |
| 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 |
The iTL1208 thermal imaging module is widely used in Forest Firefighting, Power Maintenance, Photovoltaic Inspection, Security Monitoring, Wearable Devices, Portable Devices, and more.
That is, the number of pixels of thermal imaging. The higher resolution means more observation and temperature measurement points, thus smaller targets at longer distances can be observed and measured. Usually the resolution of infrared thermal imaging ranges from 256x192, 384x288, 640x512, 800x600, 1024x768, 1280x1024, etc. With higher resolution, the cost of detector will be more.
It refers to the two-dimensional field of view of the object space observed by the optical system of infrared thermal imager. Taking the horizontal FOV as an example, assuming that the detector array size is A×B, the pixel size is d, and the lens focal length is f, then the horizontal FOV angle θ=2×acrtan (A×d/2f).
After the detector array and pixel size are selected, the field of view only changes with the focal length of the optical system: with longer focal length, the field of view will be narrower; with shorter focal length, the field of view will be wider.

