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Place of Origin : China
Resolution : 256x192
Brand Name : SensorMicro
Certification : ISO9001:2015; RoHS; Reach
Pixel Pitch : 12μm
Model Number : Mini212G2
Payment Terms : T/T
Digital Video Interface : USB2.0 / MIPI / DVP / BT.656 / LVDS
Operating Voltage : 3.3V±0.1V
Output Data : 14bit Raw
MOQ : 1 Piece
Price : Negotiable
Power Consumption : 330mW
The Mini212G2 infrared module features a temperature measurement range from -20℃ to +550℃ with accuracy of ±2℃ or ±2%. Equipped with a wafer-level packaged 256×192/12μm uncooled infrared detector, this micro infrared camera module offers ultra-compact dimensions ideal for space-constrained applications.
Engineered to meet the evolving requirements of fast-growing markets including AIoT, Machine Vision, Industrial Vision, Security Monitoring, and Night Observation, the Mini212G2 combines miniaturized design with high-end infrared detection performance. It serves as a core sensor to overcome traditional imaging limitations while delivering accurate, reliable performance across diverse scenarios.
| Model | Mini212G2 |
|---|---|
| Resolution | 256×192 |
| Pixel Size | 12μm |
| Spectral Response | 8~14μm |
| NETD | ≤50mK |
| Output Data | 14bit Raw |
| Frame Rate | Thermography: 25Hz, Imaging: 50Hz |
| Focus Mode | Focus Free |
| Lens (HFOV/FL) | 17.5°/10mm | 25°/7mm | 56°/3.2mm | 90°/2.1mm |
| Weight (g) | 7.1 | 6.4 | 4 | 6.8 |
| PCBA Size (mm) | 17×17 |
| Digital Video Interface | USB2.0 / MIPI / DVP / BT.656 / LVDS |
| Analog Video Interface | CVBS (PAL/NTSC) |
| Operating Voltage | 3.3V±0.1V |
| Typical Power Consumption | 330mW |
| Temperature Measurement Range | -20℃~+550℃ (-20℃~+150℃ | +100℃~550℃) |
| Temperature Measurement Accuracy | Greater of ±2℃ / ±2% |
| Operating Temperature | -40℃~+70℃ |
| Humidity | 5%~85% |
| Storage Temperature | -45℃~+85℃ |
| Certification | RoHS 2.0 / Reach |
Infrared thermal imaging is a method that uses infrared radiation and thermal energy to gather information about objects, enabling image formation and temperature measurement even in low visibility environments.
Infrared thermal imaging systems use passive non-contact detection technology. The system focuses infrared radiation from the scene onto a focal plane array infrared detector through infrared optics. The thermal detector converts radiation signals of varying intensity into corresponding electrical signals, which are then amplified and processed to form visible infrared images.
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Uncooled 256×192/12μm Thermal Camera Core with 330mW Power Consumption for Temperature Measurement Images |