TryBuildCalc

UPS Battery Capacity Calculator (Runtime & Battery Bank Sizing)

Calculate UPS battery capacity instantly.

Inputs

What do you want to know?

Equipment to Power

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

Equipment 1

W

Equipment 2

W

Equipment 3

W

Battery Configuration

ℹ️Sets the default depth-of-discharge limit — override it below if your manufacturer specifies something different.

%

ℹ️Leave blank to use the selected battery type's recommended default.

V

ℹ️The voltage of ONE battery unit — commonly 6V, 12V, or 2V cells.

Ah
V

ℹ️Your inverter/UPS's DC bus voltage — must be an exact multiple of the single battery voltage above (e.g. 12V batteries build a 12/24/48V bank).

ℹ️How many battery strings you have (or plan to have) wired in parallel.

%

ℹ️Typically 80-90% — check your inverter/UPS's datasheet.

%

ℹ️A design safety margin so the system still performs adequately as the battery ages — not a claim about a battery's current condition.

Cost

Enable Cost Estimation?

Estimated Backup Runtime: 2.28 hours

From 100 Ah (1 × 100Ah battery/ies) at 215 W load

Load Breakdown

EquipmentWattsQty
LED Bulb10 W× 5
Ceiling Fan75 W× 2
Router15 W× 1
Total Load215 W

Battery Bank

Battery type: Sealed Lead-Acid / AGM / Gel (VRLA) (depth of discharge: 60%)

System voltage: 12V1 × 12V in series

Parallel strings: 1 × 100Ah = 100 Ah total

Total batteries needed: 1 (1 series × 1 parallel)

Efficiency: 85%, aging/end-of-life margin: 80%

Informational Inverter/UPS Sizing

Suggested inverter/UPS rating: 600 VA (assumes 0.8 power factor, 25% headroom)

Assumptions Used

Assumes a sustained/continuous load — motor-driven appliances (like a refrigerator's compressor) cycle on and off, so actual runtime for such loads can vary from this estimate. This is a reference estimate — confirm with a licensed electrician for a permanent installation.

Need longer, whole-house backup instead of a battery bank? Generator Size Calculator →

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

UPS Battery Backup VisualizationBattery Bank1 × 100AhLoad215 WBackup Runtime2.28 hrsDiagram simplified for clarity (not to scale)

Looking for the verification checklist, reference tables, tips, or common mistakes?See the complete UPS / Inverter Battery Capacity Calculator.

General UPS battery capacity estimate

This page gives the full combined result — total load, usable energy, battery bank configuration, and backup runtime — from one set of equipment and battery inputs.

It's the same calculator behind every other UPS-sizing variant on this site, just without a specific scenario pre-selected — useful for a general check before finalizing your actual setup.

  • Two-way solve: find your runtime from a battery, or find the battery you need for a target runtime.
  • Applies the correct depth-of-discharge default for your battery chemistry automatically.
  • Computes series/parallel battery bank configuration for your target system voltage.

UPS Battery Formula: How Is Capacity Calculated?

The core formula is the same in both directions — only which variable you're solving for changes.

Step 1 — Total Load

Total Load (W) = Sum of every equipment row's Watts × Quantity

This is the total connected load you want backed up, treated as a sustained/continuous draw.

Step 2 — Usable Energy

Usable Energy (Wh) = Battery Ah × System Voltage × Depth of Discharge × Aging Factor × Efficiency

Depth of discharge, an aging/end-of-life margin, and inverter conversion efficiency all reduce how much of the battery's rated capacity actually reaches your equipment.

Step 3a — Runtime Mode

Runtime (hours) = Usable Energy ÷ Total Load

Given a battery bank's Ah and voltage, solve directly for how long it backs up your load.

Step 3b — Sizing Mode

Required Ah = (Total Load × Target Runtime) ÷ (System Voltage × Depth of Discharge × Aging Factor × Efficiency)

Batteries Needed = Series Count (for voltage) × Parallel Count (rounded up, for capacity)

Given a target runtime, solve backward for the required battery capacity, then round up to a whole number of batteries.

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
Equipment3 items, 215 W totalSets total load
BatterySealed Lead-Acid / AGM / Gel (VRLA), 60% DoDSets usable energy per Ah
ModeRuntime (given battery)Sets which variable is solved for

Steps 1-2 — Load and Usable Energy

CalculationResult
Total load215 W
Total battery capacity100 Ah
Usable energy490 Wh

Therefore, 100 Ah at 12V backs up 215 W of load for 2.28 hours.

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

Usable Energy (Wh) = Battery Ah × Voltage × Depth of Discharge × Aging Factor × Efficiency, then Runtime = Usable Energy ÷ Load — the standard UPS/inverter sizing formula.
Yes — switch between Runtime mode (given a battery, find runtime) and Sizing mode (given a target runtime, find the battery).