Sauna electrical requirements calculator
A sauna heater runs for hours at a time, which makes it a continuous load. The National Electrical Code sizes both the wire and the breaker for a continuous load at 125 percent of its current draw, so a heater pulling 25.0 amps needs a 35 amp circuit rather than the 25 amp one the arithmetic alone suggests. That gap is where most planning goes wrong.
Your circuit
- Current draw
- 25.0 A
- Minimum breaker
- 35 A
- Minimum copper wire
- 8 AWG
Wire sizes are the 60 degree C copper column of NEC 310.16, the column that governs terminations on ordinary residential breakers. This is a planning figure. Circuit length, ambient temperature, conduit fill, aluminum conductors and your local amendments all change the answer, and the install has to be signed off by a licensed electrician who has seen the actual run.
Common 240 V circuits at a glance
| Heater | Draw at 240 V | Breaker | Copper wire | Breaker at 208 V |
|---|---|---|---|---|
| 3 kW | 12.5 A | 20 A | 12 AWG | 20 A |
| 4.5 kW | 18.8 A | 25 A | 10 AWG | 30 A |
| 6 kW | 25.0 A | 35 A | 8 AWG | 40 A |
| 8 kW | 33.3 A | 45 A | 6 AWG | 50 A |
| 9 kW | 37.5 A | 50 A | 6 AWG | 60 A |
| 10.5 kW | 43.8 A | 60 A | 4 AWG | 70 A |
| 12 kW | 50.0 A | 70 A | 4 AWG | 80 A |
Common 120 V heaters at a glance
Plug in models run on a standard household supply. Note that even at this size the continuous-load rule pushes most of them onto a dedicated 20 amp circuit rather than sharing a general-purpose 15 amp one.
| Heater | Draw at 120 V | Breaker | Copper wire |
|---|---|---|---|
| 1.5 kW | 12.5 A | 20 A | 12 AWG |
| 1.8 kW | 15.0 A | 20 A | 12 AWG |
| 2 kW | 16.7 A | 25 A | 10 AWG |
Sauna electrical questions
- What breaker does a 6 kW sauna need?
- A 6 kW heater on 240 volts draws 25.0 amps. A sauna is a continuous load, so NEC 210.20(A) sizes the breaker at 125 percent of that, which is 31.3 amps, and the next standard breaker up is 35 amps. The conductor has to carry that too, which puts it at 8 AWG copper.
- How do I convert sauna kW to amps?
- Amps equal watts divided by volts, so kW times 1,000 divided by the supply voltage. A 9 kW heater at 240 volts is 9,000 divided by 240, or 37.5 amps. That is the draw, not the circuit size: multiply by 1.25 for the continuous-load rule before choosing a breaker, which puts a 9 kW heater on a 50 amp circuit.
- Why is the breaker bigger than the heater's amp draw?
- Because a sauna runs for hours rather than minutes. The National Electrical Code treats any load running three hours or more as continuous and requires both the conductor and the overcurrent device to be rated at 125 percent of it, so the circuit is not sitting at its own limit for the whole session.
- Can a sauna run on a normal household outlet?
- Some can. Heaters around 1.5 to 2 kW run on 120 volts, though the continuous-load rule still puts most of them on a dedicated 20 amp circuit rather than a shared 15 amp one. The 120 volt plug in saunas list shows every model in the catalog whose maker specifies 120 volts and no 240 volt circuit.
- What wire size does a sauna heater need?
- It follows the breaker, not the heater. The table above uses the 60 degree C copper column of NEC 310.16, which is what 110.14(C)(1)(a) requires on circuits of 100 amps or less unless the terminations are listed for a higher temperature, and on ordinary residential breakers they are not. Longer runs, hot attics, crowded conduit and aluminum conductors all push the size up, so treat these as the floor and have the run assessed before buying wire.
Prices and specifications verified July 25, 2026, and re-checked weekly after that. How these numbers are checked.
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