Dew Point Calculator
At 20 deg C and 50% relative humidity, the dew point is about 9.3 deg C, or 48.7 deg F.
Working calculator
Enter the core dimensions and check the result directly on this page.
20 deg C and 50% RH example 68 deg F and 50% RH example
At 20 deg C and 50% relative humidity, the dew point is about 9.3 deg C, or 48.7 deg F.
Uses a standard Magnus approximation, not a laboratory psychrometric model. Sensor accuracy matters because small temperature or RH errors can shift the result. Relative humidity range must be greater than 0 and not above 100 percent. Indoor/outdoor context matters; surface temperature, ventilation, air leakage, and local moisture sources change condensation risk.
Before you use the result
Dew Point Calculator is intended for quick option checks and technical discussion before detailed execution. The result depends on the selected units, declared material values, and chosen surface resistances, so each change in layer or thickness should be treated as a separate variant.
The calculator does not automatically verify every local rule, thermal bridge, moisture condition, structural connection, or installation tolerance. If the result is close to a requirement, treat it as a reason for deeper verification rather than a final decision.
For better comparisons, test several realistic thicknesses, check current product data sheets, and review the complete assembly. A calculated value is most useful when the assumptions are clear: material, thickness, layer order, units, and data source.
For insulation or U-value tools, layer order and correct units are especially important. For concrete, electrical, plumbing, or heating tools, the result should be read as a quick quantity or plausibility check before standards and execution conditions are reviewed.
Save the result with the date, material name, and assumptions. If the product, diameter, cable section, or thickness changes later, do not compare the numbers alone without checking which inputs changed.
For calculator pages, clear separation between inputs and result is essential. If a value looks surprising, check units and default fields first, then review the project assumptions.
Dew Point Calculator
At 20 deg C and 50% relative humidity, the dew point is about 9.3 deg C, or 48.7 deg F.
Assembly thickness
The draft uses the Magnus approximation with temperature in deg C and relative humidity as a percentage from greater than 0 to 100.
U-value
Uses a standard Magnus approximation, not a laboratory psychrometric model. Sensor accuracy matters because small temperature or RH errors can shift the result. Relative humidity range must be greater than 0 and not above 100 percent. Indoor/outdoor context matters; surface temperature, ventilation, air leakage, and local moisture sources change condensation risk.
How it works
How to read the result
At 20 deg C and 50% relative humidity, the dew point is about 9.3 deg C, or 48.7 deg F.
Important limitation
Uses a standard Magnus approximation, not a laboratory psychrometric model. Sensor accuracy matters because small temperature or RH errors can shift the result. Relative humidity range must be greater than 0 and not above 100 percent. Indoor/outdoor context matters; surface temperature, ventilation, air leakage, and local moisture sources change condensation risk.
Dew Point Calculator
The draft uses the Magnus approximation with temperature in deg C and relative humidity as a percentage from greater than 0 to 100.
At 20 deg C and 50% relative humidity, the dew point is about 9.3 deg C, or 48.7 deg F.
Calculation assumptions
The calculators use visible formulas and explicit unit conversions. Treat the result as a preliminary check, not a complete building design.
- SI and US units are converted separately; R, RSI, U-value, and U-factor are not mixed without the unit factor.
- Enter positive values and compare the result with the selected product datasheet.
- Local codes, thermal bridges, fasteners, and installation quality can change the requirement.
- Last formula review: 2026-04-27.
See how formulas, unit conversions, rounding, and limitations are handled. Methodology details.