vacuum panel · 120mm
R 17.14
U 0.058 W/m²·K
vacuum panel, 120 mm — R 17.14
120 mm divided by a conductivity of 0.007 gives an R-value of 17.14. The U-value is 0.058, so a square metre leaks 1.16 W across a 20-degree difference.
Standards it meets
- passive house 0.15
- Korean central-region wall 0.17
- loose standard 0.30
- Material
- vacuum panel
- Thickness
- 120 mm
- Thermal conductivity
- 0.007 W/m·K
- Thermal resistance
- 17.14 m²·K/W
- U-value
- 0.058 W/m²·K
- Heat lost per square metre
- 1.16 W
- As concrete
- 27.43 m
Thickness for the same performance
This is the number that shows what insulation is worth. Matching 100 mm of XPS with concrete alone would take 5.7 metres of it. No one builds a wall like that — which is why a concrete building only gets warm once a thin layer of insulation is added.
- phenolic foam343 mm
- rigid polyurethane394 mm
- extruded polystyrene480 mm
- graphite EPS531 mm
- white EPS617 mm
- glass wool634 mm
- mineral wool686 mm
- cellulose720 mm
- timber2229 mm
- plasterboard3086 mm
- concrete27429 mm
Nearby cells
Same material, other thicknesses
Same thickness, other materials
How to read this
- Thermal resistance is the thickness in metres divided by the conductivity. Bigger is better.
- The U-value adds 0.17 of surface resistance and then flips the total. Smaller is better.
- Resistances add across layers, so a whole wall is the sum of its parts.
- Conductivity varies by product; the values here are typical for the material.
Frequently asked questions
Q. What is the R-value of 120 mm of vacuum panel?
17.14 — 120 mm in metres divided by a conductivity of 0.007.
Q. And the U-value?
0.058. That is 17.31 — the resistance plus 0.17 of surface — turned upside down, and a square metre leaks 1.16 W across 20 degrees.
Q. How much concrete would match it?
27.43 metres.
Q. Which standards does it meet?
At 0.058 it clears 3 of them.