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Generator Sizing Calculator (Running & Starting Watts)

Add up the running and starting (surge) watts of the appliances you want to power and get a recommended generator size, accounting for motor starting surge and a safety margin.

Check the appliances you want to power during an outage. Adjust the running and starting watts if your appliance nameplate differs from the defaults.

Include Appliance Running (W) Starting (W)
Refrigerator / Freezer
Sump pump
Well pump
Furnace fan (gas furnace blower)
Window AC (10,000 BTU)
Central AC (3 ton) *
Space heater
Chest freezer
Microwave
Lights (per 100W of bulbs)
TV
Laptop / phone chargers
Shop power tools (circular saw)
Washing machine
Garage door opener

* Central AC units this large typically need a dedicated whole-house standby generator — this entry is included for reference.

Recommended Generator Size
Covers of running load plus a starting surge, with 20% headroom included.
MetricValue
Comment fonctionne le calcul

This calculator sums the running watts of every appliance you check, then finds the single checked appliance with the largest starting (surge) watts.

Only that one appliance contributes its starting surge to the total — everything else is assumed to already be running steadily, since motors rarely all start at the exact same instant. A 20% safety margin is added, then the result is rounded up to the nearest standard generator size.

Safety: never run a generator indoors or in a garage — carbon monoxide from the exhaust can be fatal in an enclosed space. Backfeeding a house panel safely requires a transfer switch installed by a licensed electrician. This tool is for sizing only, not an electrical installation guide.

Comment fonctionne le calcul

The calculator adds up the running watts of every appliance you tick, then finds the single ticked appliance with the highest starting figure. Total starting watts = (total running watts minus that appliance's own running watts) plus its surge. That total gets a flat 20% safety margin, and the answer is rounded up to the next entry on a list of common generator ratings: 2,000; 3,000; 3,500; 4,000; 5,000; 6,500; 7,500; 8,500; 10,000; 12,000; 15,000 and 20,000 watts.

The 15-row table arrives with Refrigerator / Freezer (700 W running, 2,200 W starting) and Lights (100 W) already ticked. The input that moves the answer most is whichever appliance carries the biggest surge, because only one surge is counted: a Well pump at 2,500 W or a Window AC at 3,600 W sets the peak on its own. Every running and starting figure is editable, so replace the defaults with your appliance nameplate numbers whenever you have them.

Counting only one surge assumes motors rarely start at the same instant. If your fridge compressor and well pump kick in together, the real peak is higher than shown. Nothing here models power factor, generator derating for altitude or heat, or the gap between a generator's peak and continuous ratings. The Central AC (3 ton) row carries a footnote for exactly this reason: a load that size normally needs a permanently installed whole-house standby unit.

FAQ

What size generator do I need to run a fridge and some lights?

With the two default ticks (fridge at 700/2,200 W and 100 W of lights) the tool returns 3,000 W. That comes from 800 W running, 2,300 W starting once the fridge surge replaces its running draw, then 20% headroom rounded up to the nearest standard size.

Why are starting watts higher than running watts?

Anything with an electric motor or compressor draws several times its normal current for a fraction of a second at switch-on. The table reflects that: a sump pump lists 800 W running against 2,000 W starting, while a purely resistive space heater lists 1,500 W for both.

Does it add up the starting watts of every appliance?

No. It sums all running watts, then adds only the largest single surge in your selection, swapping out that appliance's running figure. Adding every surge together would badly oversize the generator, since motors almost never start at the same moment.

Can a portable generator run central air conditioning?

The Central AC (3 ton) row is 3,500 W running and 6,000 W starting, which pushes the recommendation past 8,500 W on its own. It carries a footnote saying a load that size typically calls for a whole-house standby generator rather than a portable one.

How much headroom is built into the recommended size?

A flat 20% is added to the starting-watt total before rounding up to the next standard rating. The results table lists both figures separately, so you can see the raw requirement and the padded, rounded recommendation side by side.

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