Home Backup Battery Sizing for Wildfire & Grid Outages

A home backup battery can keep essential loads operating during a wildfire-related outage or wider grid failure—but only when storage capacity, inverter output and recharge capability are matched to the loads that actually matter.

This guide provides a transparent engineering method for estimating the battery capacity required for critical household loads. Start with the equipment you need to keep operating, calculate the energy demand, then compare storage systems that fit that requirement.

Start with your critical loads

During a wildfire or grid outage, the goal is usually not to power the entire home exactly as normal. Separate essential loads from optional loads and decide how long each one must remain available.

Critical load What to measure Why it matters
Refrigerator / freezer Daily energy use and compressor starting surge Food preservation may require continuous availability even though the compressor cycles on and off.
Air purifier Watts at the fan speed used during smoke conditions A purifier may operate for many hours continuously during wildfire smoke events.
Router, modem and communications Combined continuous watts Low-power communications can become important during an emergency.
Lighting Total LED watts and expected hours Small loads can be maintained for long periods with relatively little stored energy.
Water pump or other motor load Running watts and starting surge The inverter must be capable of starting the motor, not only supplying its normal running power.

First battery-sizing estimate

A useful first estimate is:

Required battery capacity (kWh) ≈ daily critical-load energy (kWh) × required autonomy (days) ÷ usable battery fraction ÷ system efficiency

Example: if your critical loads require 6 kWh per day and you want approximately two days of autonomy, the loads require 12 kWh of delivered energy. Assuming 90% usable battery capacity and 90% overall conversion efficiency, the required nominal storage would be approximately 14.8 kWh.

This is a planning estimate, not an electrical design. Real systems also require checks for inverter output, surge demand, battery operating limits, charging power, wiring, protection devices and local electrical requirements.

Optional load builder

Don’t know your kWh per day? Build the load profile first

Enter the running power and expected daily operating time for the loads you want to keep available. Use measured or manufacturer values where possible. Rows with empty power or hours are ignored.

Current load profile 0.0 kWh/day 0.0 kW simultaneous
Load Running power Hours / day Quantity May run simultaneously
W h
W h
W h
W h

The load builder estimates energy from running watts × hours. It does not calculate compressor or motor starting surge. Keep the inverter-output input conservative and verify surge separately.

Interactive engineering tool

Home backup battery sizing calculator

Move the sliders or enter exact values. The result updates automatically and adjusts for usable battery capacity and conversion losses.

6.0 kWh/day
Estimated energy used by critical loads in one day.
2 days
How long the selected loads should run without recharge.
90%
Fraction of nameplate storage planned for use.
90%
Planning allowance for conversion and system losses.
3.5 kW
Use the maximum simultaneous running load. Motor starting surge must still be checked separately.
10%
Optional engineering headroom above the calculated minimum. It is applied to both storage and continuous-output screening, but does not replace a separate motor-starting surge check.

Calculated minimum nominal capacity

14.8 kWh

Approximate system class: 10–20 kWh home backup

Preferred design target 16.3 kWh 3.9 kW continuous output · includes 10% reserve
Delivered energy target12.0 kWh
Combined derating81%
Minimum continuous output3.5 kW
Design reserve10%

The catalog is screened against the preferred design target. A system that meets the calculated minimum but not the selected reserve remains visible and is labelled accordingly.

Systems currently listed

Compare systems against your calculated requirement

All listed systems remain visible. The calculator screens both nominal storage and continuous inverter output, distinguishes systems that meet the calculated minimum from systems that also satisfy your selected design reserve, and marks one as the closest technical fit. You remain free to inspect any product or current price.

Technical fit score: 0–100 is calculated only from storage and continuous-output fit against the preferred design target created from your current inputs and reserve margin. Brand, price, commission and affiliate status are not included in the score.

Calculating matches…
Design target 16.3 kWh
Continuous output 3.9 kW
Systems meeting target
Closest technical fit Calculating…

Matching is affiliate-independent: capacity and continuous-output fit determine the result, not price, brand or commission.

How the technical fit score works

100 means the listed storage or inverter value is very close to the preferred design target while still meeting it. Undersized systems are penalized because they do not satisfy the entered target; increasingly oversized systems gradually lose fit points.

Overall fit combines storage fit (70%) and power fit (30%). If either storage or continuous output is below the preferred design target, the overall score is capped below the recommended-fit range. The score is a sizing aid, not a product review.

Sizing landscape

See your minimum, design target and listed systems on the same scale

Markers update with the calculator. Product markers reflect the systems currently visible under the market and match filters; select a marker to jump to its full comparison card.

Calculated minimum Preferred design target Listed product
Nominal storage capacitykWh
Calculating…
0
Continuous inverter outputkW
Calculating…
0
Listed system

DATOUBOSS

8 kWh + 3.3 kW hybrid inverter

8 kWh

Compare this system with the calculated minimum and preferred design target above.

Overall fit /100
Storage fit /100
Power fit /100
Storage vs design target Waiting for target
Output vs design target Waiting for input
8 kWh nominal storage 3.3 kW continuous-output class 24 V system DE / EU market
Listed system

DATOUBOSS

16 kWh + 6.2 kW hybrid inverter

16 kWh

Compare this system with the calculated minimum and preferred design target above.

Overall fit /100
Storage fit /100
Power fit /100
Storage vs design target Waiting for target
Output vs design target Waiting for input
16 kWh nominal storage 6.2 kW continuous-output class 48 V system DE / EU market
Listed system

DATOUBOSS

16 kWh + 11 kW hybrid inverter

16.07 kWh

Compare this system with the calculated minimum and preferred design target above.

Overall fit /100
Storage fit /100
Power fit /100
Storage vs design target Waiting for target
Output vs design target Waiting for input
16.07 kWh nominal storage 11 kW continuous-output class 48 V system DE / EU market
Listed system

DATOUBOSS

32 kWh + 11 kW hybrid inverter

32 kWh

Compare this system with the calculated minimum and preferred design target above.

Overall fit /100
Storage fit /100
Power fit /100
Storage vs design target Waiting for target
Output vs design target Waiting for input
32 kWh nominal storage 11 kW continuous-output class 48 V system DE / EU market

Affiliate disclosure: Retail price buttons use affiliate tracking. Tecnobosque may earn a commission from a qualifying purchase at no additional cost to you. Highlighting is driven only by the storage, continuous-output and selected reserve inputs above; it is not a safety certification, endorsement or final system design. Starting surge, battery limits, voltage, transfer equipment, installation rules, warranty and regional availability must also be checked.

How the match highlighting works

Best fit is the listed system with the strongest technical-fit score against the preferred design target. Meets design target means it satisfies both storage and continuous-output targets after the selected reserve margin. Meets minimum · reserve short means it reaches the calculated minimum but not all of the selected engineering headroom. This is a screening aid, not a product recommendation or electrical design.

This calculator is a planning tool, not an electrical design. It does not independently size inverter surge capability, conductors, overcurrent protection, transfer equipment, solar array capacity or installation requirements.

Decision notes

What the calculator can — and cannot — tell you

How many kWh does a home backup battery need?

There is no universal number. The storage target depends on the energy used by your selected critical loads, the autonomy you want, the fraction of the battery you plan to use and system losses.

Does enough battery capacity guarantee that a pump or refrigerator will start?

No. Battery energy and inverter power are different constraints. Motor and compressor loads can have short starting surges that must be checked against the exact inverter and appliance specifications.

Why can two systems with similar kWh receive different match results?

The screening also checks the continuous inverter-output input. A system may have enough stored energy but still fall below the continuous power you entered.

Is the highlighted product a recommendation?

No. Highlighting is a transparent screening result based on the values you entered. It does not replace checks for voltage, surge, installation, warranty, regional availability, transfer equipment, safety certification or electrical code requirements.