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FLIR T530 User Manual

FLIR T530
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Thermographic measurement
techniques
32
32.1 Introduction
An infrared camera measures and images the emitted infrared radiation from an object.
The fact that radiation is a function of object surface temperature makes it possible for the
camera to calculate and display this temperature.
However, the radiation measured by the camera does not only depend on the temperature
of the object but is also a function of the emissivity. Radiation also originates from the sur-
roundings and is reflected in the object. The radiation from the object and the reflected ra-
diation will also be influenced by the absorption of the atmosphere.
To measure temperature accurately, it is therefore necessary to compensate for the effects
of a number of different radiation sources. This is done on-line automatically by the cam-
era. The following object parameters must, however, be supplied for the camera:
The emissivity of the object
The reflected apparent temperature
The distance between the object and the camera
The relative humidity
Temperature of the atmosphere
32.2 Emissivity
The most important object parameter to set correctly is the emissivity which, in short, is a
measure of how much radiation is emitted from the object, compared to that from a perfect
blackbody of the same temperature.
Normally, object materials and surface treatments exhibit emissivity ranging from approxi-
mately 0.1 to 0.95. A highly polished (mirror) surface falls below 0.1, while an oxidized or
painted surface has a higher emissivity. Oil-based paint, regardless of color in the visible
spectrum, has an emissivity over 0.9 in the infrared. Human skin exhibits an emissivity
0.97 to 0.98.
Non-oxidized metals represent an extreme case of perfect opacity and high reflexivity,
which does not vary greatly with wavelength. Consequently, the emissivity of metals is low
only increasing with temperature. For non-metals, emissivity tends to be high, and de-
creases with temperature.
32.2.1 Finding the emissivity of a sample
32.2.1.1 Step 1: Determining reflected apparent temperature
Use one of the following two methods to determine reflected apparent temperature:
#T810253; r. AA/42549/42549; en-US
192

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FLIR T530 Specifications

General IconGeneral
Resolution320 x 240 pixels
Thermal Sensitivity< 30 mK
Digital Zoom1-4x continuous
Image ModesThermal, MSX, Picture-in-Picture
StorageSD card
Image Frequency30 Hz
Accuracy±2°C or ±2% of reading
Digital Camera5 MP
Laser Distance MeterYes
Wi-FiYes
Video RecordingYes
Video OutputHDMI
Minimum Focus Distance0.15 m (0.49 ft)
Operating Temperature Range-15°C to 50°C (5°F to 122°F)
Storage Temperature Range-40°C to 70°C (-40°F to 158°F)
Temperature Range0°C to +650°C
Field of View24° × 18°
Display4-inch LCD touchscreen
Battery LifeApprox. 4 hours
FocusContinuous, one-shot contrast, manual
Spectral Range7.5-14 µm
Weight1.3 kg (2.9 lbs)
ConnectivityWi-Fi, USB
Lens Options14°, 24°, 42°

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