The MICO412 ultra-compact infrared camera core features a 384×288 resolution infrared detector, multiple optical lens options, image processing board, and a robust structural frame. It transmits analog or digital video to backend platforms for integration. With larger array, the MICO412 meets various needs of different customers.
We are a supplier of infrared detectors sensors and OEM thermal camera cores with more than 10 years of experience in the infrared thermal imaging industries. Our professional after-sales service team provides customers with timely support and solutions.
| Model | MICO412 |
|---|---|
| IR Detector | Sensitive Material: VOx |
| Resolution: 384×288 | |
| Pixel Size: 12µm | |
| NETD: ≤30mK/F1.0/25℃ | |
| Spectral Response: 8~14μm | |
| Optical Lens | Focus/F#: 4.8/F1.0 | 9.1mm/F1.0 | 13mm/F1.0 |
| FOV: 51°(H)×39°(V) | 28.4°(H)×21.5°(V) | 20°(H)×15°(V) | |
| Detection Range (8 pixels) | 99m (5'11" tall person) |
| 360m (4m×3m vehicle) | |
| Type | Fixed Focus Athermal: First lens sealing/coating IP67 |
| Image Processing | Analog Video: PAL(default) / NTSC |
| Digital Video: USB/MIPI | |
| Frame Rate: 25Hz/30Hz/50Hz | |
| Start-up Time: ≤6s | |
| Image Algorithm: NUC/DRC/DNS/DDE/SFFC | |
| Pseudo Color | 11 types - customizable |
| Electrical Interface | Standard External Interface: 3PIN interface (A1251-WV-S-3P) | 9PIN interface(A1251-WV-S-9P) | 26PIN interface(DF56C-26S-0.3V-51) |
| Video Interface: CVBS | USB | MIPI | |
| Power Supply | Supply Voltage: DC: 5V~24V |
| Steady Power Consumption: ≤680mW@5V, 23±3℃ | |
| Mechanical | Dimension: 22.2mm×22.2mm×27.2mm (L×W×H) |
| Weight: 30.3±3g | |
| 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, 3 Axis, 6 Direction | |
| Certification | RoHS2.0/Reach |
The MICO412 thermal camera module is widely used in Security and Monitoring, Outdoors, Law Enforcement Rescue, Firefighting and Rescue, ADAS etc.
By using the principle of infrared radiant thermal effect, the uncooled infrared detector converts infrared radiation energy into heat energy with infrared absorption material, so that the temperature of the sensitive material increases. Then, a certain physical parameter of the sensitive material changes accordingly and converts into electrical signal or visible light signal through a certain conversion mechanism designed to realize the detection of the object.
Uncooled infrared focal plane detector does not need an Integrated Dewar Cooler Assembly (IDCA) device and can work at room temperature. It has the advantages of fast start, low power consumption, small size, light weight, long life, low cost and so on. Although the sensitivity of uncooled infrared focal plane detector is not as good as that of cooled infrared detectors, after years of development, its cost performance has been obviously better than the cooled detector, which has a broader application prospect.