Battery Backup Time Calculator – Free Runtime Estimator

HOW LONG WILL IT LAST

Battery Backup Time Calculator

Enter your battery bank and load to see how many hours of backup you’ll actually get.

Your battery bank & load

Sets a recommended depth of discharge below — you can still override it.

Enter one battery’s specs below, plus how many are wired in series.

Ah
W
%
%

Auto-filled from battery type. Edit it if your manufacturer specifies a different figure.

%

Extra buffer left unused, on top of your depth of discharge limit.

Estimated backup time

0h 0m
Usable Reserve Unusable (DoD limit)

How to use this calculator

  1. Pick your battery type. This sets a sensible depth-of-discharge default — lithium tolerates much deeper cycling than lead-acid, so the number will jump when you switch types.
  2. Describe one battery. Enter the voltage and Ah capacity printed on a single unit, unless you’re using “Preconfigured bank,” in which case enter the whole bank’s rated voltage and capacity directly.
  3. Choose how they’re wired. Series wiring adds voltages together (two 12V batteries in series make 24V); parallel wiring adds capacities together (two 100Ah batteries in parallel make 200Ah at the same voltage).
  4. Enter your load. Add up the running wattage of everything you want powered during an outage — this is the same “connected load” figure a solar sizing calculator would use.
  5. Read the result. Backup time updates live as you type. The battery graphic shows how much of your total capacity is actually usable versus reserved as a safety margin or off-limits under your DoD setting.

How the numbers are calculated

  • Total bank energy (Wh) = bank voltage × bank capacity (Ah).
  • Usable energy (Wh) = total energy × depth of discharge × (1 − safety reserve).
  • Effective load (W) = appliance load ÷ inverter efficiency, since the inverter itself consumes some power converting DC to AC.
  • Backup time (hours) = usable energy ÷ effective load.
  • Battery current (A) = effective load ÷ bank voltage — useful for checking your battery’s max discharge rating.

Worked example

Two 12V, 100Ah tubular batteries wired in series make a 24V, 100Ah bank — 2,400 Wh total. At a 50% depth of discharge and a 5% safety reserve, that’s about 1,140 Wh usable. Running a 300W load through a 90% efficient inverter draws roughly 333 W from the battery, giving a backup time of about 3.4 hours — right at the edge of “Good” on the scale below.

Battery type comparison

Approximate figures — always check your specific battery’s datasheet, since quality and brand vary widely. For deeper technical background on depth of discharge and cycle life, Battery University is a solid independent reference.

TypeTypical DoDCycle lifeNotes
Lithium (LiFePO₄)~90%3,000–5,000Lightest, longest life, highest upfront cost.
Tubular Lead Acid~50%1,000–1,500Common for solar/UPS use in Pakistan, tolerates frequent cycling.
AGM~50%400–600Maintenance-free and spill-proof, moderate cost.
Gel~50%500–700Handles slow, deep discharge well; sensitive to fast charging.
Flooded Lead Acid~40%300–500Lowest upfront cost, needs regular water top-ups and ventilation.

Frequently asked questions

Related tools

Use these alongside your backup time result to plan the rest of your system.

Related articles

A few guides worth reading once you know your backup time:

Actual backup time varies with battery age, temperature, discharge rate, and real-world inverter performance — treat these numbers as a planning estimate, not a guarantee.