Battery Charge Time Calculator

Enter a battery’s mAh, the charger’s output and the starting charge to estimate the charge time — ideal and realistic, with losses included.

How charge time is estimated

The first-order answer is simple division: capacity in mAh over charger output in mA. Reality adds two corrections this calculator is honest about — charging is imperfect (heat and conversion typically cost around 20%), and lithium batteries deliberately slow down for the final stretch to protect the cells. You get the ideal figure and the realistic one, and the note about the taper.

How to use it

  1. Enter the battery capacity in mAh (phone spec, power bank label).
  2. Enter the charger’s output in mA (a 10 W/5 V charger ≈ 2000 mA).
  3. Set the starting percentage and read both estimates.

The formula

ideal hours = mAh to add ÷ charger mA · realistic ≈ ideal × 1.2

A worked example

A 5,000 mAh battery from empty on a 2,000 mA charger: ideally 2 h 30 m, realistically about 3 h 00 m with losses. From 50% it roughly halves. And the everyday observation — phones sprint to 80% then crawl — is the charge controller’s taper, not a fault: the final 20% is deliberately gentle.

Common questions

Why does the last 20% take so long?
Lithium charging switches from constant current to constant voltage near full — current tapers off to protect cell longevity. Fast-charge ratings describe the sprint phase, not the crawl.
My charger says watts, not mA — what do I enter?
Divide watts by the charging voltage (5 V for basic USB): 10 W ≈ 2000 mA. Fast-charge standards vary voltage, which is why wattage alone never tells the whole story.
Does fast charging damage the battery?
Modern controllers manage heat and taper to protect cells — the dominant ager is heat and time spent at extreme charge levels, not fast charging per se.