Generator Buying

Choosing the Right Generator Size for Your Home

By Wildwood Repair Team Reviewed by a certified technician Updated July 16, 2026 10 min read
Quick Answer
For essentials during an outage, most homes need a 5,000 to 7,500 watt generator. For whole-house backup including central air, plan for 15,000 to 20,000 watts or more. Size it by adding the running watts of what you want to power, adding the single highest starting surge, then adding around 20 to 25 percent headroom. Undersizing trips breakers, oversizing wastes money.

What size generator do I need is the question that decides whether your backup power actually works when it matters, and getting it wrong is expensive in both directions. Too small and it trips out or damages appliances, too large and you have overspent on the unit and burn extra fuel. The good news is that sizing a generator is simple arithmetic once you understand two numbers, and this guide walks through both.

First: Essentials or Whole House?

The single biggest question is what you actually want to run. There are two very different goals, and they need very different generators.

GoalTypical size
Essentials only (fridge, lights, outlets, small AC)5,000 to 7,500 watts
Essentials plus central air10,000 watts or more
Whole house, most appliances15,000 to 20,000 watts
Large home, dual HVAC, well pump22,000 watts and up

Most people who just want to ride out an outage comfortably land in the 5,000 to 7,500 watt range. Whole house living-as-normal is a different and larger machine.

The Two Numbers: Running Watts and Starting Watts

Every appliance has two power figures, and both matter.

  • Running watts are the continuous power an appliance draws while operating.
  • Starting watts are the brief surge it needs at the moment it switches on. Anything with a motor, a fridge, a well pump, an air conditioner, can surge to two or three times its running watts for a second or two.
This is why sizing catches people out. A generator that comfortably handles the running watts can still trip when the fridge and the well pump both kick in at once. You must size for the surge, not just the steady draw.

Typical Appliance Wattages

ApplianceRunning wattsStarting watts
Refrigerator150 to 400800 to 1,200
Sump pump800 to 1,0501,300 to 2,900
Well pump1,000 to 2,0002,000 to 4,000
Window AC1,000 to 1,5001,500 to 3,000
Microwave1,000 to 1,500Same
Lights (LED, whole house)100 to 300Same
Furnace fan600 to 9001,500 to 2,000

These are typical figures. Your appliances' own labels and manuals give the exact numbers, which is what you should size from.

How to Do the Calculation

1. List what you want to run at once

Be realistic. You will not run everything simultaneously, so group the essentials you genuinely need together.

2. Add up the running watts

Total the continuous draw of everything on your list.

3. Add the single largest starting surge

Find the appliance with the highest starting watts and add that one surge on top. Only one motor typically starts at any instant.

4. Add 20 to 25 percent headroom

Multiply the total by about 1.25. This buffer keeps the generator off its limit, which is easier on the engine and safer.

Worked example: 3,000 running watts of essentials, plus a 2,000 watt well pump surge, gives 5,000. Add 25 percent and you want a generator of at least about 6,250 watts.

Do Not Oversize Either

Bigger is not automatically better. An oversized generator costs more to buy, burns more fuel, and running one under very light load for long periods can actually cause problems like wet stacking, where unburned fuel builds up in the exhaust. Size it to your real needs plus a sensible buffer, not to the largest unit you can afford.

Portable or Standby?

Sizing interacts with type. Portable generators typically top out lower and suit essentials backup. Whole house sizes usually mean a standby unit wired in through a transfer switch. If your calculation lands above roughly 10,000 watts, you are generally into standby territory. Our repair guide covers the differences.

Rather Have a Real Technician Handle It?

A Wildwood technician comes to your home, diagnoses the generator on site, and gets it running, usually in about an hour. More than 10,000 repairs completed since 2019, with flat rates quoted before we arrive so there are no surprises. When you need power back, you need it back now.

Frequently Asked Questions

What size generator do I need for my house?
For essentials during an outage, most homes need a 5,000 to 7,500 watt generator. For whole-house backup including central air, plan for 15,000 to 20,000 watts or more. Size it by totaling running watts, adding the largest starting surge, then adding 20 to 25 percent.
What is the difference between running and starting watts?
Running watts are the continuous power an appliance uses while operating. Starting watts are the brief surge it needs the instant it switches on, which for motors can be two to three times the running figure. You must size for the surge, not just the steady draw.
What size generator runs a refrigerator?
A fridge draws about 150 to 400 running watts but surges to 800 to 1,200 watts on startup, so even a 3,500 watt generator runs one comfortably with room for lights and small devices. The startup surge is the number that matters.
How do I calculate what size generator I need?
List what you want to run at once, add up their running watts, add the single largest starting surge on top, then multiply by about 1.25 for headroom. That final figure is the minimum generator size you should buy.
Can a generator be too big?
Yes. An oversized generator costs more and burns more fuel, and running one under very light load can cause wet stacking, where unburned fuel builds up in the exhaust. Size to your real needs plus a sensible buffer, not to the biggest unit available.
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About the Author

Wildwood Repair Team

The Wildwood Small Engine Repair team has completed more than 10,000 mobile repairs on lawn mowers, snow blowers, generators and outdoor power equipment since 2019. Every guide is written from real bench experience and reviewed by a certified small engine technician before publishing.