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Battery Life Calculator

Estimate how long any battery will last from its capacity, voltage, and load. Supports mAh or Wh, duty cycle, efficiency, and charging time.

Battery life calculator

Common batteries

Stamped on the cell or in the device spec sheet.

Optional. Used for energy and charging time.

Average draw of the device while it's active.

Usable share of rated capacity. 80% is typical for Li-ion under continuous load.

Share of time the device is on. 100% means always running.

Leave blank to skip charging time. Includes a 1.2x Li-ion inefficiency factor.

Estimated runtime

16h

16 hours (0.6667 days)

Energy

11.1 Wh

Load

0.555 W

Capacity

3,000 mAh

Efficiency

80%

Ideal Battery Life Examples

Battery and loadAvailable energyIdeal runtime
3,000 mAh at 500 mA3,000 mAh6 hours
3,000 mAh at 1,000 mA3,000 mAh3 hours
12 Wh at 6 W12 Wh2 hours
5,000 mAh at 500 mA5,000 mAh10 hours
10 Wh at 2 W10 Wh5 hours

Frequently Asked Questions about the Battery Life Calculator

How do I calculate battery life?
Divide energy by load: runtime in hours equals capacity in Wh divided by load in watts. If you have capacity in mAh and a current load in mA, the math reduces to runtime = mAh / mA, no voltage needed. To mix units like mAh capacity with a watt load, multiply mAh by voltage and divide by 1000 first to get Wh.
Why does runtime go down when I add efficiency?
The efficiency setting reduces rated capacity to an estimate of usable capacity. Internal resistance, voltage sag, temperature, age, discharge rate, and the device's cutoff voltage can all change the result. The 80% default is a planning assumption, not a universal lithium-ion value. Use test data from the battery and load when accuracy matters.
When do I need to enter a voltage?
Whenever capacity and load are in mismatched unit families. A mAh capacity with a watt load needs voltage to convert mAh into Wh. A Wh capacity with a mA or A load needs voltage to convert that current draw into watts. If both are in the same family (mAh + mA, or Wh + W), voltage is optional and only affects derived values like energy or charging time.
What is duty cycle and when should I change it from 100%?
Duty cycle is the share of time your device is actually drawing the load you entered. A sensor that wakes for 1 second every 10 seconds has a 10% duty cycle, so its average draw is one tenth of the peak. Setting duty cycle to 50% doubles the runtime versus always-on. Use 100% for anything that runs continuously, like a flashlight on full power or a phone streaming video.
How accurate is the charging time estimate?
It is a first-order estimate. The calculator divides capacity in mAh by charging current in mA, then applies a fixed 1.2 multiplier. Actual time depends on battery chemistry, charger limits, temperature, state of charge, and the charging profile. Use the battery and charger specifications for safety-critical planning.

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