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The X32
0 was designed to sense differing amounts of long
wavelength infrared com
ing from the various areas of a scene and
to convert them to corresponding intensities of visible light on a
display. This allows true see–in–the–
dark capability, as well as the
ability to discern additional information—
temperature—by observ
ing the thermal properties of objects in any
light condition.
Infrared energy is emitted proportionally to the temperature
of an
object . The warmer the object, the more energy it
emits. The infrared energy from the objects is focused by
the optics , onto an infrared detector . The information
from the Infrared detector is passed to electronics for
image processi
ng. The signal processing circuitry
translates the infrared detector data into an image that
can be viewed on the built-in video monitor.
WARM
0 was designed to sense differing amounts of long
ing from the various areas of a scene and
to convert them to corresponding intensities of visible light on a
dark capability, as well as the
ing the thermal properties of objects in any
Infrared energy is emitted proportionally to the temperature
object . The warmer the object, the more energy it
emits. The infrared energy from the objects is focused by
the optics , onto an infrared detector . The information
from the Infrared detector is passed to electronics for
ng. The signal processing circuitry
translates the infrared detector data into an image that
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