Electrophysics offers a complete line of high-performance infrared cameras, thermal imaging and night vision cameras. Our products include: image intensifier, IR thermal imaging, low light products and more.
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    Thermal Imaging 
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     Features
  • Accurate Measurement Up to 500°C
  • Integrated Mega-Pixel Flash Visible Camera
  • Daylight Readable Color Display
  • High Resolution Imagery - 320x240 Uncooled Image Sensor
  • Lightweight and Ergonomic Design
     
    Overview
     
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    Specifications Return to top of the page
     
    Digitization12 bit 
    Field of View25° x 18° 
    Measurement Accuracy+/- 2% 
    Sensor TypeUncooled BST 
    Size9" (L) x 5.5 " (W) x 5.5 (H) 
    Visible Camera Resolution1.3 Mega Pixels 
    Ambient Operating Temperature-10° TO 45° c 
    Array Resolution320 (H) x 240 (V) 
    Focal Length35 mm 
    Gain ControlAutomatic and manual 
    Visibile Camera InterfaceCF Slot 
    Weight4.3 lbs 
    FocusManual 
    Measurement Range-20°C to 500° C (Apparent Black body Temperature) 
    Pixel Size50 micron 
    Power Consumption8 watts nominal 
    Video OutputNTSC or PAL 
    Visible Camera DisplayPicture in Picture 
    Display3.8 inch Transreflective LCD 
    Frame Rate60Hz 
    Lens MountFixed Bayonet 
    NETD80 mK 
    Storage Temperature-40°C to 70°C 
    ViewfinderAnalog CRT 
    Tripod Mount1/4 20 NPT 
     
    Application Return to top of the page
     
    Electrical Apparatus Inspection
    Visually inspect electrical systems for a wide range of problems including loose connections, corroded elements, load imbalance, short circuits and other potentially dangerous faults that typically create heat. Abnormal heating associated with high resistance or excessive current flow is a primary indicator of many problems in electrical systems. Thermal imaging enables you to see the invisible thermal radiation that may portend impending damage before their condition becomes critical. When current flows in an electrical circuit, part of the electrical energy is converted into heat due to the inherent resistance in all conductive elements. The existence of abnormally high resistance in the circuit or high current flow will result in abnormally high levels of heat to be generated that can be quickly identified with a thermal imager avoiding potential damage to equipment or danger.


     
    Laser Beam Diagnostics
    For many applications, it is extremely important to know the cross-sectional profile of a laser beam. In this way, the power, energy density, modal structure and divergence of the laser can be determined. These properties impact the propagation of the beam in a wide variety of applications and ultimately determine the usefulness of the laser in each application. Infrared imagers offer an ideal method for analyzing laser beam profiles from 800 nm to 20 microns.


     
    Refractory Condition Monitoring
    Many high-energy processes such as petrochemical and chemical processing, cement processing and incineration utilize refractory insulation. The condition of the refractory can have both serious safety consequences as well as an impact to product quality. Frequent inspection with thermal imaging is critical in order to reducing problems and maintaining optimal system performance.

     
     
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