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Optical Gas Imaging
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Uncooled Infrared Detectors
High Sensitivity MWIR Infrared Detector with 320x256/30μm and 20mK NETD for Optical Gas Imaging
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x| NETD | 20mK (F3) | Function | Gas Leak Detection |
|---|---|---|---|
| Spectral Range | 3.2±0.1~3.5±0.1μm | Cooling Time (23 ℃) | ≤7min@12V |
| Detector Resolution | 320x256 | Pixel Size | 30μm |
| Highlight | MWIR Gas Thermal Imaging Sensor,320x256 Gas Thermal Imaging Sensor,Cooled MWIR Optical Gas Imaging |
||
The LFD330Z5 infrared detector is specifically engineered for high-temperature observation applications in flame environments. It converts infrared radiation from targets with 3.8~4.1μm wavelength into electrical signals, featuring commonly used mechanical, optical, and electronic interfaces for easy expansion.
This detector excels in flame penetration capabilities, enabling accurate imaging and monitoring of high-temperature surfaces such as furnaces and furnace walls in petrochemical plants and refineries, significantly improving inspection efficiency while reducing operational risks.
- Optical Gas Imaging: Long-range non-contact detection with high efficiency, security, and wide detection range
- High Sensitivity: Cooled infrared detector with exceptional temperature measurement efficiency
- High Reliability & Easy Integration: Supports various interfaces and RAW/YUV image output
- Wide Application Scenarios: Suitable for handheld, mobile, or fixed platform integration
| Detector model | LFD330Z5 |
|---|---|
| Resolution | 320*256 |
| Pixel size | 30μm |
| Spectral response | 3.8±0.1μm~4.1±0.1μm |
| Typical NETD | 20mK (F3) |
| Cooling time (23 ℃) | ≤7min@12V |
| Power consumption (23 ℃) | ≤15W@12V (Peak) ≤7W@12V (Stable) |
| Size (mm) | 142*58.5*71 |
| Weight (g) | ≤600 |
| Working temperature | -45℃~+71℃ |
| Storage temperature | -55℃~+71℃ |
| MTTF | ≥10000h |
The LFD330Z5 cooled MWIR thermal imaging detector is designed for customers with strong development capabilities operating in industrial environments such as metallurgy and petrochemicals. It enables rapid detection of high-temperature target surfaces including furnace chambers and walls in high-temperature combustion environments with strong flame interference.

