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C625M MWIR 640×512 25μm MCT Cooled Infrared Detector
C625M MWIR 640×512 25μm MCT Cooled Infrared Detector

C625M
MWIR 640×512/25μm MCT Cooled Infrared Detector

C625M MCT MWIR Cooled Infrared Detector features a 640×512 resolution and a 25μm pixel size, operating in the 3.7–4.8μm spectral band. Compared with other MWIR cooled detectors of the same resolution, its larger pixel size provides a greater infrared radiation sensing area, resulting in improved thermal information fidelity and a significantly enhanced signal-to-noise ratio. This makes it ideal for users requiring high SNR, high contrast, and wide dynamic range in mid-to-high-end thermal imaging applications.

Main Features

Clear Imaging, High Sensitivity
Clear Imaging, High Sensitivity
  • Good image uniformity, effective pixel rate ≥ 99.5%

  • Excellent signal-to-noise ratio and high sensitivity

Good Versatility, Reliable Mass Production
Good Versatility, Reliable Mass Production
  • Customizable F-number

  • Mass production with good consistency

Specifications

ModelC625M MWIR Cooled Infrared Detector
Sensitive MaterialMCT
Resolution640×512
Pixel Size25μm
Spectral Response3.7μm±0.2μm~4.8μm±0.2μm
Working ModeSnapshot
ITR/IWR Integration Modes
Windows Mode
Anti-blooming
Charge Capacity15.7Me-/21.8Me-(ITR)
12.3Me-/18.7Me-(IWR)
Dynamic RangeITR Mode≥80dB
IWR Mode≥79dB
Output Channel4; Up to 20MHz per Output
Typical NETD10mK(F2)
Max. Frame Rate180Hz
Effective Pixel Rate≥99.5%
Response Non-uniformity≤8%
Configurable CryocoolerRS079
Steady Power Consumption(23℃)≤15W
Max. Power Consumption(71℃)≤20W
Power Supply24V DC
Cooling Time(23℃)≤7min
Weight(g)≤650
Maximum Size (mm)148×59×78
Operating Temperature-45℃~+71℃


Applications

Learn More >>
Chip Material Research
Chip Material Research
Long Range Monitoring
Long Range Monitoring
Non Destructive Testing
Non Destructive Testing
PCBA Inspection
PCBA Inspection
  • Sharp Image Quality

  • Multiple Crycooler Options

  • High Sensitivity

  • Wide Spectral Range

  • High Sensitivity

  • Customizable Configurations

  • Long-Wave Detection

  • T2SL Technology

  • Immune to Interference

  • Long-Wave Detection

  • T2SL Technology

  • High Sensitivity

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