Size a battery bank for a solar/off-grid system: daily kWh use, autonomy days, system voltage, chemistry, DoD limit, and inverter losses.
Daily Load
OFF
Usable Capacity
OFF
Rated Bank (kWh)
OFF
Bank Config
OFF
System Inputs
Enter your daily energy demand and system parameters. Adjust the DoD depending on battery chemistry.
Bank Sizing Results
Required Usable Energy
—
kWh usable
Required Rated Capacity
—
kWh rated
Rated Amp-Hours
—
Ah @ bank voltage
Formula
—
calculation path
Number of Batteries & Series/Parallel Layout
Choose a battery model, then the tool computes how many are needed and how to wire them
(series to build the system voltage, parallel to reach the required Ah).
Serial count is pre-filled to build the system voltage (48 V ÷ 12 V = 4). Parallel strings
are computed automatically from capacity; you can raise your battery Ah to reduce how many strings are needed.
Batteries per String (series)
—
each string voltage
Number of Strings (parallel)
—
strings in parallel
Total Batteries
—
series × parallel
Wiring Diagram
—
—
Bank capacity vs required rated capacity
Method & Quick Reference
Standard battery-bank sizing math for off-grid / solar systems.
Rated capacity (kWh) = (Daily kWh × Autonomy days) ÷ (DoD × Inverter efficiency)
Amp-hours (Ah) = Rated kWh × 1000 ÷ System voltage
Batteries per string = System voltage ÷ Battery voltage · Strings = ceil(Ah ÷ Battery Ah)