Cooled Optical Gas Imaging Camera 320x256 / 30μM RoHS Certificate

Place of Origin Wuhan, Hubei Province, China
Brand Name GST
Certification ISO9001:2015; RoHS; Reach
Model Number GAS330
Minimum Order Quantity 1 Piece
Price Negotiable
Payment Terms L/C, T/T

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Product Details
Sensor IR Sensor Technology Infrared
Resolution 320x256 / 30μm Size 155x67x80mm
NETD ≤15mK Spectral Range 3.2±0.1~3.5±0.1μm
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Gas Imaging Camera 320x256

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RoHS Gas Imaging Camera

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30uM Optical Gas Imaging Camera

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Product Description
Gas Leak Detection Camera

 

Cooled Optical Gas Imaging Camera 320x256 / 30μM RoHS Certificate

 

Product Description

 

Driven by improvements in production methods, the production and use of industrial gas has grown rapidly. While bringing benefits to the factory, the hidden danger of gas leakage is also increasingly serious. Optical gas imaging (OGI) is a commonly utilized and very effective way to detector the gas leak in the industrial factories.

 

GAS330 infrared gas leak detection camera developed by Global Sensor Technology is specific for detecting minute fugitive emissions of industrial gases. With a customized 320x256 / 30µm cooled infrared detector, it works in the spectral range of 3.2~3.5µm for VOCs leak detection.

 

Global Sensor Technology has more than 10 years of experience in infrared thermal imaging solutions and also many successful integration cases for the gas leak detection. We are confident to provide you with satisfactory service.

 

Main Features

 

- Resolution: 320x256

- Pixel Pitch: 30µm

- NETD≤15mK, High Sensitivity

- Spectral Response: 3.2µm±0.1µm~3.5µm±0.1µm

- Wavelength Customizable Based on Different Requirements

- Integrate with DVP/CameraLink Interface Easily

 

Product Specifications

 

Model GAS330
IR Detector Performance
Resolution 320x256
Pixel Pitch 30μm
Cryocooler RS058
Spectral Range 3.2μm±0.1μm~3.5μm±0.1μm MW
Cooling Time (20°C) ≤8min
NETD (20°C) ≤15mK
Image Processing
Frame Rate 30Hz
Dimming Mode Linear/Histogram/Mixed
Digital Zoom ×1/×2/×4
Image Direction Horizontally/Vertically/Diagonally Flip
Image Algorithm NUC/AGC/IDE
Electrical Specification
Standard External Interface J30JZ 25pin
Analog Video PAL
Digital Video 16bit RAW/YUV: 16bit DVP/Cameralink Output
External Sync Frame External Sync: RS422 Level
Communication RS422, 115200bps
Power Supply 20~28VDC
Stable Power Consumption 12W
Dimension (mm) 155×67×80
Weight ≤900g
Operation Temperature -40°C ~ +60°C
Vibration Magnitude Vibration: GJB Vehicle-mounted High Speed Transport
Shock: Half-sine Wave, 40g 11 ms, 3 Axis 6 Direction 3 Times Each
Optical Lens
Optional Lens Fixed Zoom: 23mm/F1.5; 55mm/F1.5

 

Industrial Applications

 

The GAS330 gas leak detection thermal imaging camera is used for visiualizing the invisible VOCs (volatile organic compounds) and detecting gas leakage such as: Methane, Ethane, Propane, Butane, Pentane, Hexane, Heptane, Octane, Ethylene, Propylene, Isoprene, Methanol, Ethanol, Butanone, Benzene, Toluene, Xylene, Ethylbenzene etc.

 

Our Advantages

 

Cooled Optical Gas Imaging Camera 320x256 / 30μM RoHS Certificate 0

 

FAQs

 

1. Advantages of Optical Gas Imaging
 
Time-saving & Efficient: support large-scale real-time detection, rapid leak location, no need for interrupting production.
Long Range Detection: away from dangerous and complex areas, non-contact non-destructive testing, without additional radiation source
Easy to Analyze: intuitive imaging, instant storage, convenient analysis
Multi-function Inspection: a variety of gases can be detected, with excellent remote temperature measurement function
 
2.Working Principle of Optical Gas Imaging
 
Optical gas imaging is a kind of infrared technology that could see invisible industrial gases.
 
After absorbing infrared radiation at specific wavelengths, infrared radiation difference will cause between the gas and the background.
 
The gas leak detection infrared detector with built-in narrowband filter only receives the infrared band near the gas infrared absorption peak, and can convert the gas into visible infrared images through the radiation difference between the gas and the background.