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MWIR Cryogenically Cooled Infrared Detector 15μM 640x512 For Multi Sensor Payload

WUHAN GLOBAL SENSOR TECHNOLOGY CO., LTD.

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MWIR Cryogenically Cooled Infrared Detector 15μM 640x512 For Multi Sensor Payload

Country/Region china
City & Province wuhan
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Product Details

15μM 640x512 Cooled MWIR Infrared Detector For Remote Monitoring System 

Product Description

 

Being one of the HgCdTe/MCT cooled infrared detectors developed by Global Sensor Technology (GST). C615M is a 640×512 resolution, 15μm pixel size, MCT technology based mid wave infrared detector that could present clear images. Equipped with industry standard interfaces and RS058/RS046/LS734 cryocoolers, C615M is designed to meet various customer requirements of light weight, low power consumption, long life and high reliability. It is with the most popular 640x512/15μm spec for almost all possible applications like long range surveillance system, handheld thermal imagers, gas leakage detection cameras etc.

 

The C615M RS058 is interchangeable with most mainstream Scorpio like products when configured with RS058 integrated stirling cooler. The dewar design, the cooler dimension, and the mechanical/electrical interface are almost the same so that the camera integrators only need to take out their old defective counterpart and connect our interchangeable C615M RS058 easily for further internal configuration.

 

It can be widely used in many high end applications, such as Handheld Reconnaissance System, Remote Monitoring System, Search & Tracking System, Enhanced Flight Vision System, Electro-Optical Payload etc.

 

 Main Features

 

Sharp & Clear Imaging
• Good uniformity, effective pixel rate>99.5%
• High thermal sensitivity

 

Guaranteed Continuous Supply
• Interchangeable standard interface
• Mass production, good consistency

 

Designed for Specific Applications
• Wavelength can be customized
• F number can be customized
• Mounting surface can be customized
• Multiple cryocooler available

 

Product Specifications

 

ModelC615M MW
MaterialMCT
Resolution640x512
Pixel Pitch15μm
Spectral Range3.7μm~4.8μm MW
Working ModeSnapshot, ITR/IWR Integration Mode; Windows Mode; Anti-blooming
Charge Capacity9.1Me-/6.5Me-(ITR)
7.8Me-/5.2Me-(IWR)
Dynamic Range≥75dB
Number of Output4; Up to 10Mpixel/s per Output
NETDF2: ≤17mK
F4: ≤18mK
Effective Pixel Rate≥99.5%
Response Non-uniformity≤8%
Cryocooler TypeRS058/RS046
Steady Power Consumption≤6W@RS058
≤5W@RS046
Max Power Consumption≤12W @ RS058
≤11W @ RS046
Power SupplyRS058: 24V DC
RS046: 32V DC
Cooling Time≤6min @ RS058
≤5min30s @ RS046
Weight≤600g @ RS058
≤350g @ RS046
Dimension (mm)RS046: 122x46.3x82
RS058: 147x58.5x71
Working Temperature-45°C ~ +71°C

 

Industrial Applications

 
The C615M MWIR cryogenically cooled infrared detector is widely used many areas such as Remote Monitoring System, Flight Vision Enhancement System, Multi-sensor Payload etc.
 

 

Our Product Line

 

 

About Global Sensor Technology

 

Global Sensor Technology is the world leading infrared detector manufacturer and service provider. It is willing to provide customers all over the world with high performance uncooled and cooled thermal imaging detectors and share its professional application experience.
 

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.

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