TryBuildCalc

Whole House Generator Size Calculator (Standby Generator Sizing)

Size a whole-house standby generator.

Inputs

Appliances to Power

Pick a preset for a typical starting point, or choose Custom and enter your appliance's actual nameplate values.

Appliance 1

W
W

ℹ️Leave equal to running watts for non-motor loads (heaters, electronics, lighting).

Appliance 2

W
W

ℹ️Leave equal to running watts for non-motor loads (heaters, electronics, lighting).

Appliance 3

W
W

ℹ️Leave equal to running watts for non-motor loads (heaters, electronics, lighting).

Appliance 4

W
W

ℹ️Leave equal to running watts for non-motor loads (heaters, electronics, lighting).

Appliance 5

W
W

ℹ️Leave equal to running watts for non-motor loads (heaters, electronics, lighting).

Appliance 6

W
W

ℹ️Leave equal to running watts for non-motor loads (heaters, electronics, lighting).

Appliance 7

W
W

ℹ️Leave equal to running watts for non-motor loads (heaters, electronics, lighting).

%

ℹ️Applied on top of your peak load (total running watts + largest single startup surge). 20% is a common default; consider more for continuous heavy-duty use, high altitude, or hot climates.

Cost

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Recommended Generator Size: 28,000 W (28 kW)

From 23,300 W peak load, +20% safety margin

Load Breakdown

ApplianceRunningStarting
Central A/C (3-ton) (largest surge)3,500 W10,500 W
Electric Water Heater4,500 W4,500 W
Electric Range5,000 W5,000 W
Refrigerator700 W2,200 W
Well Pump1,000 W3,000 W
Furnace Blower800 W2,500 W
Lighting & Electronics800 W800 W
Total Running Watts16,300 W

Sizing Calculation

Total running watts: 16,300 W

Largest single starting surge: Central A/C (3-ton)10,500 W (adds 7,000 W above its own running watts)

Peak load: 23,300 W

With 20% safety margin: 27,960 W

Recommended standard generator size: 28,000 W (headroom: 40 W, 0.1%)

Informational Amperage

At 120V: 135.8 A (based on total running watts)

At 240V: 67.9 A (based on total running watts)

Assumptions Used

Only the single largest motor's starting-watts surge is added to total running watts, assuming loads start one at a time (not simultaneously). This is a reference estimate — confirm against actual appliance nameplates and consult a licensed electrician for permanent/whole-house installations.

Sizing your dwelling's full electrical service instead? Panel Size Calculator →

Sizing a breaker for a specific circuit? Circuit Breaker Size Calculator →

Generator Load Visualization28,000 WGeneratorRunning16,300 W+ Surge+7,000 WDiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete Generator Size / Wattage Calculator.

Whole-house standby generator sizing

A whole-house standby generator is sized to cover most or all of a home's load, permanently installed with an automatic transfer switch — this page is pre-set to a full-featured home including central A/C.

Edit the appliance list to match your actual home's major equipment; whole-house standby units commonly land in the 14,000-24,000W (14-24kW) range.

  • Central A/C is typically the single largest starting-watts driver in a whole-house calculation.
  • Whole-house standby generators are permanently installed with an automatic transfer switch, unlike portable units.
  • This is a planning estimate — a licensed electrician performs the formal load calculation for a permanent installation.

Generator Size Formula: How Is Wattage Calculated?

The standard method sums everyone's running watts, then adds only the single largest appliance's incremental startup surge — since equipment doesn't all start at the same instant.

Step 1 — Total Running Watts

Total Running Watts = Sum of every appliance's running watts

This covers the continuous, steady-state power draw of everything you want running at once.

Step 2 — Largest Starting Surge

Incremental Surge = Largest appliance's Starting Watts − its own Running Watts

Only the single largest starting-watts appliance's incremental surge is added — its running watts is already counted in Step 1, so only the extra amount above that counts toward the peak.

Step 3 — Peak Load and Safety Margin

Peak Load = Total Running Watts + Incremental Surge

Target Capacity = Peak Load × (1 + Safety Margin %)

A safety margin (20% by default) covers real-world variance in appliance draw, generator derating, and headroom for anything unaccounted for.

Step 4 — Round to a Standard Generator Size

Recommended Generator Size = smallest standard tier ≥ Target Capacity

Generators are sold in standard wattage tiers — the calculated target is always rounded up, never down.

Worked Example

This example walks through your current inputs above, using the same steps as the Formula section.

Input Values Used

InputValueWhy it is used
Appliances7 appliances, 16,300 W runningSets total running watts
Largest SurgeCentral A/C (3-ton)10,500 WSets the incremental surge added to peak load
Safety Margin20%Applied on top of peak load

Steps 1-3 — Running, Surge, and Peak Load

CalculationResult
Total running watts16,300 W
Incremental surge (Central A/C (3-ton))+7,000 W
Peak load23,300 W
With 20% safety margin27,960 W

Therefore, for 23,300 W of peak load with a 20% safety margin, you need a 28,000 W (28 kW) generator.

Disclaimer: This calculator provides approximate results for planning and estimation purposes only. Actual requirements may vary based on site conditions, materials, workmanship, and local building regulations. Always consult a qualified engineer, architect, or construction professional before making final decisions.

FAQ

It depends heavily on whether central A/C and electric heating/water heating are included — commonly 14,000-24,000W (14-24kW) for a full-featured single-family home, but calculate your actual appliance list rather than assuming a fixed number.
Yes — it's permanently installed with an automatic transfer switch that detects a utility outage and starts the generator within seconds, unlike a portable generator which requires manual setup.