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CPAP Power Lab

DC vs AC: which way should you power a CPAP from a battery?

Run it on DC if your machine supports it. Going through the AC outlet forces a double conversion — battery DC to AC, then your CPAP's power brick back to DC — which wastes roughly 10–15% of the charge. A DC cable skips that and buys about 12% more runtime from the same battery.

Power-draw figures for the machines below are provisional estimates, not yet our own meter readings. See how we test.

Your CPAP runs on DC. Your battery stores DC. Plugging into the AC outlet converts DC to AC inside the battery, then your machine's brick converts it straight back to DC — and both conversions cost energy you paid for.

A DC cable removes the round trip. The saving is not enormous, but it is free, and on a tight battery it can be the difference between reaching morning and not.

What the round trip costs

Inverters in portable power stations run at roughly 85% efficiency under light loads, and a CPAP is a light load — which is the worst case, because the inverter's own idle draw is a larger share of a small load. Running on DC avoids the inverter entirely and lands closer to 95%.

That is about 12% more runtime from the same battery and the same machine.

Same machine, same battery, AC outlet vs DC cable
BatteryVia AC outletVia DCExtra
245Wh23.4 hours26.2 hours+2.8 h
293Wh28.0 hours31.3 hours+3.3 h
1,024Wh97.9 hours109.4 hours+11.5 h
Humidifier off, typical draw, 90% usable capacity in both columns.

There is a second, often larger saving

Some power stations draw a constant few watts simply keeping the AC side alive. Over an eight-hour night a station idling at 5W on the inverter alone burns 40Wh — comparable to more than half a night of dry CPAP therapy.

Running on DC avoids that standby cost entirely. On small batteries this often matters more than the conversion efficiency does.

What you need to run on DC

Two things: a battery with a DC output at the right voltage, and the correct DC cable for your machine. Machines differ — some accept 24V, others 12V — so the cable must match your specific model, and the manufacturer's own cable is the safe choice.

Do not improvise a cable or reuse one intended for a different machine. Wrong voltage or polarity can damage the device, and this is equipment you depend on nightly.

Dedicated CPAP batteries such as the Medistrom Pilot series are built around exactly this — DC in, DC out, no inverter anywhere in the chain. It is why a 95Wh CPAP battery outperforms what its capacity suggests against a larger power station used over AC.

When AC is still the right answer

If no DC cable exists for your machine, AC is your only option and the 12% is not worth chasing — buy slightly more capacity instead.

If you want one battery that also runs a phone, a lamp and a router during an outage, the inverter is doing real work and earns its keep.

And if you are running the humidifier, it dominates the arithmetic so completely that AC versus DC becomes a rounding error. See does the humidifier drain the battery.

Does running a CPAP on DC really save battery?
Yes, roughly 12% more runtime, because it avoids converting the battery's DC to AC and back again. On a 1,000Wh station that is about 11 extra hours.
Can I use any 12V cable for my CPAP?
No. The cable must match your machine's required voltage and polarity — some take 24V, others 12V. Use the manufacturer's cable for your specific model.
Is a dedicated CPAP battery better than a power station?
For CPAP alone, often yes — DC-native, so no inverter losses or standby drain. A power station is better if you also need to run other devices.

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