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RoHS MWIR Cooled Thermal Camera Sensor For Visualizing Gas Leaks

Categories Optical Gas Imaging
Brand Name: SensorMicro
Model Number: LFD330Z3
Certification: RoHS; Reach
Place of Origin: Wuhan, Hubei Province, China
MOQ: 1 Piece
Price: Negotiable
Payment Terms: L/C,T/T
Cryo Cooler: RS058I/LS713/LS734
Function: Gas Leak Detection
Detector Resolution: 320x256
Pixel Size: 30μm
NETD: 10mK
Spectral Range: 3.2±0.1~3.5±0.1μm
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RoHS MWIR Cooled Thermal Camera Sensor For Visualizing Gas Leaks

Mid Wave Cooled 320x256/30μm OGI Thermal Camera Detector for Visualizing VOCs Gas Leaks


Product Description


In the petrochemical industry, gas leak detection scenarios occur frequently. Traditional detection device has limited detection distance and low detection efficiency, making it difficult to achieve intuitive and accurate identification of common VOCs gas leaks such as methane and benzene.


LFD330Z3 cooled infrared detector for gas leak detection is specially developed for VOCs gas leak detection with the function of converting infrared radiation of target with 3.2~3.5μm wavelength into electrical signal. Its external mechanical interface, optical interface and electronic interface are commonly used and can be expanded. It can remotely and visually detect minor leaks of VOCs gases such as methane, benzene, and ethanol, achieving efficient gas operation monitoring and safety production warning. LFD330Z3 is widely used in atmospheric environment monitoring and gas leakage detection, pollutant discharge, chemical gas detection in petrochemical plants and refineries.


Main Features


Optical Gas Imaging
• Long range non-contact detection
• High efficient, secure and wide range of gas leak detection
High Sensitivity
• High sensitive cooled infrared detector, quite efficient in application of low gas concentration and slow gas flow
• Effective leak detection includes Alkanes, Alkenes, Alcohols, Benzenes, Ketones and other gases
Designed for Requirements of Users
• Various cryocoolers available for light weight, low power, long life and high reliability


Product Specifications


Detector modelLFD330Z3
Resolution320×256
Pixel size30μm
Spectral response3.2±0.1μm~3.5±0.1μm
Typical NETD10mK (F1.5)
CryocoolerRS058ILS713LS734
Cooling time (23 ℃)≤7min@12V≤5min@12V
Power consumption (23 ℃)≤13W (Peak)
≤7W (Stable)
≤18W (Peak)
≤7W (Stable)
≤35W (Peak)
≤15W (Stable)
Size (mm)142×58.5×71Compressor φ33.5×68
Dewar φ41×86
Compressor φ46×122
Dewar φ46.5×112
Weight (g)≤600≤350≤1200
Working temperature-45℃~+71℃
Storage temperature-55℃~+71℃
*MTTF≥10000h≥30000h


Industrial Applications


The LFD330Z3 gas leak detection cooled MWIR thermal imaging detector is used for customers who have strong development ability. By integrating this cooled thermal sensor, the invisible VOCs (volatile organic compounds) can be detected and visualized so that further damage can be avoided. These gases includes such as: Methane, Ethane, Propane, Butane, Pentane, Hexane, Heptane, Octane, Ethylene, Propylene, Isoprene, Methanol, Ethanol, Butanone, Benzene, Toluene, Xylene, Ethylbenzene etc.


Technological Advantages of Optical Gas Imaging


Non-contact & remote detection

Stay away from dangerous and complex areas, conduct non-contact non-destructive testing to ensure personnel safety

Quickly locate the leakage source

Support wide area real-time detection and quickly locate the leakage source, so that production will not be interrupted

Visualize gas leakage

Intuitively display the location of leakage with high efficiency to avoid point-by-point inspection

Improve inspection safety

Safer detection helps reduce the risk of accidents and minimize operational losses


FAQs


1.What is infrared thermal imaging?


Infrared thermal imaging is a method of using infrared radiation and thermal energy to gather information about objects, in order to formulate images of them, or get temperature information of the objects, even in low visibility environments.


2.How does Infrared Thermal Imaging Work?
Infrared thermal imaging system is a passive non-contact detection and identification of infrared technology. It focuses the infrared radiation of the scene on the focal plane array infrared detector through the infrared optical system that can pass through infrared radiation. The thermal detector converts the radiation signal of different intensity into the corresponding electrical signal, and then through amplification and video processing, forms the infrared image that can be observed by the naked eyes.

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