Watts vs. watt-hours: what's the difference?

Short answer

Watts measure power at a moment; watt-hours measure stored energy. A power station's output in watts decides what you can plug in. Its capacity in watt-hours decides how long it lasts. A 1,000 Wh battery can run a 100 W load for about 8.5 hours after inverter losses, but it cannot run a 2,000 W heater at all if its output is only 1,500 W.

A simple way to picture it

Think of a water tank. Watt-hours are the size of the tank: how much is stored. Watts are how fast water flows out of the tap. A big tank with a narrow tap lasts a long time but cannot fill a bucket quickly. A small tank with a wide tap empties fast.

Power stations work the same way. Capacity (Wh) is the tank. Output (W) is the widest the tap can open.

The one formula you need

Watt-hours equal watts multiplied by hours. Turn it around and you get runtime:

Hours of runtime = usable watt-hours ÷ watts drawn

Usable watt-hours are roughly 85% of the rated capacity, because the inverter loses some energy converting battery power to household AC power.

A 1,000 Wh unit has about 850 Wh usable. Running a 60 W laptop: 850 ÷ 60 = about 14 hours. Running a 1,500 W space heater: 850 ÷ 1,500 = about 34 minutes.

Three numbers on every spec sheet

SpecUnitWhat it tells you
CapacityWh (or kWh)How much energy is stored. Decides how long things run.
Continuous outputWThe most it can supply nonstop. Everything running at once must fit under it.
Surge (peak) outputWA short burst for starting motors in fridges, pumps and AC units.

What about amp-hours?

Batteries are sometimes rated in amp-hours (Ah). To convert, multiply by the battery voltage: a 100 Ah battery at 12.8 V holds about 1,280 Wh. Amp-hours on their own are not comparable between batteries with different voltages, which is why watt-hours are the better number to shop by.

Kilowatt-hours on your electric bill

Your utility bills you in kilowatt-hours (kWh). One kWh is 1,000 Wh. A typical US home uses around 30 kWh a day, which is why a single portable power station can cover essentials but not a whole house.

To turn all of this into a real answer for your appliances, use the runtime calculator, or look up typical values in the appliance wattage chart.

Frequently asked questions

Is a higher watt or watt-hour rating better?

It depends on what you need. Higher watts let you run bigger appliances like microwaves and pumps. Higher watt-hours let you run things for longer. For outages, most people need at least 1,000 Wh and 1,500 W of output.

How many watt-hours do I need to run a fridge for a day?

A typical modern full-size fridge uses roughly 1 to 1.5 kWh a day. Allowing for inverter losses, plan on about 1,500 to 2,000 Wh of capacity for a full day.

How do I convert amps to watts?

Multiply amps by volts. A device drawing 5 A on a 120 V outlet uses about 600 W.

Sources and method

Runtime figures assume 85% of battery capacity reaches AC appliances and typical US appliance ratings. See exactly how we calculate. Found a mistake? Tell us and we will fix it.

About OutageReady

OutageReady answers the practical questions most people have when they look into backup power: what will a power station or generator actually run, and for how long? We are not electricians, so the site sticks to clear math and published appliance ratings, and points you to a licensed professional for anything involving your home's wiring. When we test equipment ourselves, we publish the measurements here.

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