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AN607 Datasheet(PDF) 21 Page - Silicon Laboratories

Part # AN607
Description  HUMIDITY AND TEMPERATURE SENSOR DESIGNERS GUIDE
PDF  41 Pages
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Manufacturer  SILABS [Silicon Laboratories]
Direct Link  http://www.silabs.com
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AN607 Datasheet(HTML) 21 Page - Silicon Laboratories

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AN607
Rev. 1.7
21
8. Humidity Control for Thermal Comfort
8.1. General Considerations
Humans are sensitive to humid air, because the human body uses evaporative cooling as the primary mechanism
to regulate temperature. When the relative humidity and dew point are high, the rate of perspiration evaporation
from the skin decreases because the amount of water vapor in the air is already close to saturation. Because
humans perceive the rate of heat transfer from the body, rather than temperature itself, we feel warmer when the
relative humidity is high. Relative humidity is a useful indication of how hot the weather “feels” and is more intuitive
and easier to measure than other quantifications of water vapor in the air. Air conditioners are designed to maintain
between 40–60% relative humidity in the occupied space.
Humans tend to react with discomfort to dew points >61 °F (16 °C). The body perspires and produces sweat to
cool down. High relative humidity and consequently a high dew point prevent the evaporation of sweat and reduce
evaporative cooling. The body may overheat, resulting in discomfort.
Lower dew points, <50 °F (10 °C), generally correlate with lower ambient temperatures requiring the body to be
less dependent on evaporative cooling. A lower dew point can be achieved with a high temperature at extremely
low relative humidity allowing for effective cooling.
Table 1. Human Reaction to Humidity*
Dew Point Temp (°F)
RH at 90°FHuman Perception
> 75
> 62%
Extremely uncomfortable
70 to 74
52% to 60%
Quite uncomfortable
65 to 69
44% to 52%
Somewhat uncomfortable
60 to 64
37% to 46%
Comfortable but humid
55 to 59
31% to 41%
Comfortable
50 to 54
31% to 37%
Very comfortable
< 49
< 30%
A bit dry
*Note: See Lawrence, Mark G., “The Relationship between Relative Humidity and the Dewpoint Temperature in Moist Air—A
Simple Conversion and Applications”, American Meteorological Society February 2005.



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