Standard & Custom Scientific Imaging Solutions


                                  

Key Features:

  • Deploy your application directly on camera using on-board CPU
  • Choose from a wide range of sensors covering a broad spectral range
  • Easily customized using Critical Link's MityDSP TM technology
  •         More>>

    Overview:

    MityCCD is a family of high-performance scientific cameras meant for OEM applications.  The MityCCD imaging platform utilizes a number of key technologies.  Low noise analog front-end electronics are well matched to the target sensors and deliver a very low noise signal.  A digital subsystem consists of a 16 bit ADC, USB and Ethernet communication interfaces, and high-performance CPU engine.  The CPU (MityDSP TM) provides the capability of running complex and sophisticated applications directly on the camera.  Other key technologies are a vacuum chamber and TE cooling for low dark current, and a line up of mechanical enclosures that fit many environments. 

    If our standard offerings don't meet your requirements, then contact us to find out how we can combine our key technologies to quickly deliver a custom solution.  More>>


         MityCCD Scientific Cameras
    Type Model Pixel Size Cooling QE
     Back Illuminated
     MityCCD-H7031  24 x 24 µm  -15 °C
     90% @ 680 nm
       MityCCD-H10141  12 x 12 µm  -15 °C  90% @ 680 nm
     
     MityCCD-E3011-BI
     26 x 26 µm  -40 °C
     91% @ 600 nm
         
     Front Illuminated
     MityCCD-H9971  24 x 24 µm  -15 °C  34% @ 680 nm
       MityCCD-H9973  24 x 24 µm  -15 °C
     48% @ 680 nm
     
     MityCCD-E3011-FI  26 x 26 µm  -40 °C  44% @ 700 nm
     
    Deep Depletion  MityCCD-E3011-BI-DD  26 x 26 µm  -40 °C  75% @ 650 nm
     
     MityCCD-E3011-DD  26 x 26 µm  -40 °C  44% @ 850 nm
             
    Open Electrode  MityCCD-E3011-OE  26 x 26 µm  -40 °C  50% @ 750 nm
             
    InGaAs (Linear)
     MityCCD-S256LSB-1.7  50 x 500 µm  -10 °C
     88% @ 1700 nm
     
     MityCCD-S512LSE-1.7  50 x 500 µm  -10 °C
     88% @ 1700 nm