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Uncooled Infrared Detectors
F1.5 MWIR MCT Infrared Detector 320x256 / 30μM For Gas Lead Detection
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xResolution | 320x256/30μm | NETD | ≤9mK (F2); ≤15mK (F4) |
---|---|---|---|
Spectral Range | 3.7~4.8μm MW | Size | 142x58.5x71mm |
Cryo Cooler | RS058/RS046H | Weight | ≤600g |
High Light | F1.5 MWIR MCT Infrared Detector,MCT Infrared Detector 30uM,RS058 MWIR Infrared Detector 320x256 |
F1.5 MWIR MCT Infrared Detector 320x256 / 30μM For Gas Lead Detection
C330M-B3T MWIR MCT cooled infrared detector is specially designed for Optical Gas Imaging detection applications. The customized spectral range is from 3.2~3.5μm which is just for the working range of Volatile organic compounds, or VOCs. The capture of F1.5 enables even clearer imaging details so as to “see” the invisible leaked gas for any further harm on the environment.
- Resolution: 320x256
- Pixel Pitch: 30μm
- High Sensitivity
- Compact Design
- Lightweight
- Low Power Consumption
Model | C330M MW |
Material | MCT |
Resolution | 320x256 |
Pixel Pitch | 30μm |
Spectral Range | 3.7μm~4.8μm MW |
Working Mode | Snapshot, ITR Integration Mode; Windows Mode; Anti-blooming |
Charge Capacity | 36Me-/12Me- |
Dynamic Range | ≥80dB |
Number of Output | 1 or 4; Up to 6.6Mpixel/s per Output |
NETD | F2: ≤9mK F4: ≤15mK |
Effective Pixel Rate | ≥99.5% |
Response Non-uniformity | ≤8% |
Cryocooler Type | RS058/RS046H |
Steady Power Consumption | ≤6W @ RS058 ≤6W @ RS046H |
Max Power Consumption | ≤12W @ RS058 ≤11W @ RS046H |
Power Supply | RS058: 24V DC RS046H: 32V DC |
Cooling Time | ≤6min @ RS058 ≤5min30s @ RS046H |
Weight | ≤600g |
Dimension (mm) | 142x58.5x71 |
Working Temperature | -45°C ~ +71°C |
The C330M MWIR cryogenically cooled infrared detector is widely used many areas such as Remote Monitoring System, Flight Vision Enhancement System, Multi-sensor Payload etc.
1. What is infrared radiation?
When talking about infrared thermal imaging, the first thing to think about is infrared radiation (IR). The wavelength of infrared radiation energy starts at about 700nm and extends to about 1mm. All objects emit a certain amount of heat in the form of infrared radiation, which is invisible to us, because in the entire electromagnetic spectrum, the naked eye can only see "visible light".
2. How does infrared thermal imager work?
The core component of the infrared equipment is the infrared thermal detector, which can sensitively detect the tiny temperature difference of the surrounding objects. Then, it collects this radiation information from the object and outputs the temperature information for imaging, which is based on the temperature difference information. The hotter the object, the more infrared radiation it produces. If the intensity is too high, you can feel it like heat.