- Energy
- 50Wh
- Nominal voltage
- 3.7V
13,514mAh
Open with these values13,514mAh
Result: 13,514 mAhMultiply the watt-hours by 1000 and divide by the nominal voltage. A 50 Wh pack at 3.7 V holds about 13,514 mAh. The label on a power bank gives mAh, while airline rules and spec sheets give watt-hours — this is the way back.
13,514mAh
Open with these values8,333mAh
Open with these values10,000mAh
Open with these valuesmAh = (Wh × 1000) ÷ V
| Energy, voltage | Battery | Capacity |
|---|---|---|
| 0, 3.7 | Nothing stored | 0 |
| 10, 5 | Small USB pack | 2000 |
| 18.5, 3.7 | Compact phone power bank | 5000 |
| 100, 12 | Twelve-volt leisure battery | 8333.33 |
| 37, 3.7 | Standard phone power bank | 10000 |
| 50, 3.7 | Large power bank | 13513.51 |
Multiply the energy in watt-hours by 1000 and divide by the nominal voltage: mAh = (Wh × 1000) ÷ V. A 50 Wh power bank at 3.7 V holds (50 × 1000) ÷ 3.7 ≈ 13,514 mAh.
Watt-hours measure energy, which is charge times voltage. Without the voltage you cannot separate the two, so the same Wh figure maps to very different mAh values depending on the cell count.
The nominal cell voltage, about 3.7 V for lithium-ion. Power banks are usually rated at the cell voltage even though their USB output is 5 V, so 3.7 V normally reproduces the mAh figure printed on the casing.
Airline rules and spec sheets state limits in watt-hours, while the number on the power bank is in mAh. Converting lets you check that the two match — or work out the capacity of a battery whose data sheet only lists Wh.
Only when their nominal voltages match. A 10,000 mAh pack at 7.4 V stores twice the energy of a 10,000 mAh pack at 3.7 V. For anything across voltages, compare watt-hours instead.
Information, not professional advice.
Diese Seite gibt es auch auf Deutsch.
Zu Deutsch wechseln