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Nancy Jiang
320x256/30μm Cooled IR Camera Module with 10mK NETD for Optical Gas Imaging
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xProduct Details
| Style | Cooled Infrared Module | Resolution | 320x256 / 30μm |
|---|---|---|---|
| NETD | 10mK | Spectral Range | 3.2±0.1~3.5±0.1μm |
| Frame Rate | 30Hz | Lens | Fixed Zoom |
| Highlight | IR Camera Module 320x256,IR Camera Module 30um |
||
Product Description
Cooled IR Camera Module 320x256/30μm for Optical Gas Imaging
320x256 / 30 μm Cooled Infrared Camera Module with 55mm Lens for VOCs Gas Leak Detection
Volatile Organic Compounds (VOCs) are gases emitted into the air from products or processes. Some VOCs are harmful by themselves, including carcinogenic compounds, and they can react with other gases to form additional air pollutants.
The LFM330Z3 is a cooled infrared thermal imaging module specifically engineered for gas leakage detection. It integrates a 320x256/30µm MCT cooled MWIR infrared detector and utilizes spectral wavelength filtering technology to visualize invisible VOCs that cannot be detected by the naked eye. Camera manufacturers can efficiently design their own gas leak detection systems using this modular platform.
Main Features
- Resolution: 320x256
- Pixel Pitch: 30µm
- NETD 10mK, High Sensitivity
- Spectral Response: 3.2µm±0.1µm~3.5µm±0.1µm
- Wavelength Customizable Based on Different Requirements
- Easy Integration with DVP/CameraLink Interface
Product Specifications
| Module model | LFM330Z3 | ||
| Resolution | 320×256 | ||
| Pixel size | 30μm | ||
| Spectral response | 3.2±0.1μm~3.5±0.1μm | ||
| Typical NETD | 10mK (F1.5) | ||
| Frame rate | 30Hz | ||
| Digital video | Standard: DVP/LVDS/USB2.0 Optional: Cameralink/USB3.0/GigE/SDI/MIPI/Single-mode fiber/Multi-mode fiber |
||
| Communication | Standard: USB2.0/LV-TTL Optional: RS422/CAN/USB3.0/GigE |
||
| Cryocooler | RS058I | LS713 | LS734 |
| Cooling time (23 ℃) | ≤8min@12V | ≤6.5min@12V | ≤6.5min@24V |
| Stable power consumption (23 ℃) | ≤10W | ≤11W | ≤16W |
| Size (mm) | 142×58.5×80 | 108×116×73 | 130×131×80 |
| Weight (g) | ≤680 | ≤800 | ≤1610 |
| Working temperature | -40℃~+71℃ | ||
| Focal length | 23mm/55mm/25-75mm | ||
Industrial Applications
The LFM330Z3 gas leak detection thermal imaging camera visualizes invisible VOCs (volatile organic compounds) and detects gas leakage including: Methane, Ethane, Propane, Butane, Pentane, Hexane, Heptane, Octane, Ethylene, Propylene, Isoprene, Methanol, Ethanol, Butanone, Benzene, Toluene, Xylene, Ethylbenzene, and more.
Technological Advantages of Optical Gas Imaging
Non-contact & Remote Detection
Conduct non-contact testing from safe distances in hazardous or complex environments, ensuring personnel safety
Quick Leakage Source Location
Support wide-area real-time detection to quickly identify leakage sources without interrupting production
Visualize Gas Leakage
Intuitively display leakage locations with high efficiency, eliminating the need for point-by-point inspection
Enhanced Inspection Safety
Safer detection methods reduce accident risks and minimize operational losses
About SensorMicro
SensorMicro is a world-leading infrared detector manufacturer and service provider, delivering high-performance uncooled and cooled thermal imaging detectors along with professional application expertise to customers worldwide.
Focusing on infrared thermal imaging technology and driven by user needs, SensorMicro is committed to the ongoing development and improvement of infrared products and application solutions.
In the gas leak detection field, we offer a comprehensive portfolio of infrared detectors and thermal modules covering medium to long wave detection based on spectral characteristics of different gases. Integrators can rapidly develop various gas leak detection system solutions including handheld devices, online monitoring systems, and UAV payloads using our product portfolio and application expertise, ensuring environmental protection, energy efficiency, and safety across petroleum, natural gas, chemical, power, and environmental monitoring industries.
Frequently Asked Questions
What is a cryocooler used for?
Cryocoolers maintain sensors at extremely low temperatures to enable thermal imaging during long-term missions. Many high-end applications require these ultra-low temperatures for optimal sensor performance.
What are the main factors to measure the quality of cryocooler?
Long battery life and reliable operation are primary quality indicators for cryocoolers. SensorMicro cryocoolers feature a wide operating temperature range and excellent reliability, with MTTF (Mean Time to Failures) reaching 10,000 hours to meet 24/7 operational requirements.
What is MTTF?
MTTF (Mean Time to Failure) measures part reliability by indicating average lifespan before replacement. This metric provides insight into component quality and long-term value.
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