320x256/30μm Pixel Size MWIR Cooled Infrared Detector with 10mK NETD for Optical Gas Imaging

Place of Origin Wuhan, Hubei Province, China
Brand Name SensorMicro
Certification RoHS; Reach
Model Number LFD330Z7
Minimum Order Quantity 1 Piece
Price Negotiable
Payment Terms L/C,T/T

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Product Details
Pixel Size 30μm Function Gas Leak Detection
NETD 10mK (F1.5) Cooling Time (23 ℃) ≤7min@12V
Detector Resolution 320x256 Spectral Range 4.5±0.1μm~4.7±0.1μm
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320x256 Cooled Infrared Detector

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30um MWIR Cooled Infrared Detector

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Mwir Gas Imaging Module

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Product Description
320x256/30μm Optical Gas Imaging MWIR Cooled Infrared Detector
Product Overview
The LFD330Z7 infrared detector for gas leak detection provides advanced optical gas imaging capabilities. It rapidly scans large areas, accurately locates leak sources from a distance, and delivers clear imaging to help inspection personnel efficiently identify potential hazards and ensure operational safety.
Main Features
  • High sensitivity and reliability
  • High effective pixel rate
  • Clear visualization of minor leaks
  • Gas enhanced HSM algorithm support (for module)
  • Easy integration with various interfaces
  • RAW/YUV image output support
Product Specifications
Detector modelLFD330Z7
Resolution320*256
Pixel size30μm
Spectral response4.5±0.1μm~4.7±0.1μm
Typical NETD10mK (F1.5)
Cooling time (23℃)≤7min@12V
Power consumption (23℃)≤15W@12V (Peak)
≤7W@12V (Stable)
Size (mm)142*58.5*71
Weight (g)≤600g
Working temperature-45℃~+71℃
Storage temperature-55℃~+71℃
MTTF≥10000h
Industrial Applications
The LFM330Z7 cooled MWIR infrared camera core is widely used across industries where CO leaks present significant risks:
  • Petrochemical industry: Monitoring CO leaks during hydrocarbon combustion, catalytic reforming, and gas storage processes
  • Metallurgical industry: Detection during steelmaking and non-ferrous metal smelting where incomplete fuel combustion generates CO
  • Residential and commercial buildings: Identifying CO leaks from gas water heaters, furnaces, and boilers
  • Scientific research and environmental monitoring: Studying CO emission mechanisms and tracking atmospheric CO distribution
Standardized Service

Complete Documentation: Product manuals, setup guides, and selection references for seamless implementation

Development & Testing Assistance: Sample integrated testing, performance evaluation, and parameter verification

Advanced Developer Toolkit: SDKs, APIs, algorithms, and debugging tools for deep integration

Remote Technical Support: 24/7 support with quick response and timely resolution for critical issues

Warranty: Original parts and strict process adherence to restore optimal performance

Frequently Asked Questions
What is infrared thermal imaging?
Infrared thermal imaging utilizes infrared radiation and thermal energy to gather information about objects. By detecting radiation differences between objects and their background environment, as well as variations within the objects themselves, infrared thermal images display radiation fluctuations that reveal scene characteristics.
What are the advantages of infrared thermal imaging?
  • See through total darkness
  • Identification under camouflage
  • Long range detection
  • Heat distribution detection
  • Non-contact temperature measurement
  • Occupation awareness
What are the applications of infrared thermal imaging?
Temperature measurement and all-weather imaging are the two fundamental functions of infrared thermal imaging technology. Products developed using these technologies are widely used in electric power, security & monitoring, industrial manufacturing, scientific research, medical treatment, and other traditional fields.