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FLIR C3 User Manual

FLIR C3
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Theory of thermography
18
18.4 Infrared semi-transparent materials
Consider now a non-metallic, semi-transparent body let us say, in the form of a thick flat
plate of plastic material. When the plate is heated, radiation generated within its volume
must work its way toward the surfaces through the material in which it is partially absorbed.
Moreover, when it arrives at the surface, some of it is reflected back into the interior. The
back-reflected radiation is again partially absorbed, but some of it arrives at the other sur-
face, through which most of it escapes; part of it is reflected back again. Although the pro-
gressive reflections become weaker and weaker they must all be added up when the total
emittance of the plate is sought. When the resulting geometrical series is summed, the ef-
fective emissivity of a semi-transparent plate is obtained as:
When the plate becomes opaque this formula is reduced to the single formula:
This last relation is a particularly convenient one, because it is often easier to measure re-
flectance than to measure emissivity directly.
#T559918; r. AN/42281/42281; en-US
77

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FLIR C3 Specifications

General IconGeneral
Temperature Range-10°C to 150°C (14°F to 302°F)
Field of View41° x 31°
Thermal Sensitivity<0.10°C
Accuracy±2 °C or ±2% of reading
Resolution80 x 60 pixels
Image StorageInternal memory
ConnectivityWi-Fi
Display3-inch touchscreen
Image ModesThermal, MSX, Picture-in-Picture
Digital Camera640 x 480 pixels
File FormatJPEG
Battery Life4 hours
Dimensions125 x 80 x 24 mm (4.9 x 3.1 x 0.94 in)
Operating Temperature-10°C to +50°C

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