amps to volts
Ohm's law works in any direction: V = I·R, or with power, V = P/I. The reverse direction is how a charger works — a phone charging at 2 A through an effective load needs the voltage its circuitry demands. Automotive 12 V systems, USB 5 V, and the 48 V of telecom racks are all answers to the same question: what voltage do these amps need?
volts = amps × ohms (or volts = watts ÷ amps)
V = I·R · V = P/I
Exact Ohm's law calculation from the current and load you provide.
Common amps to volts Values
| amps | ohms | volts | Context |
|---|---|---|---|
| 15 A | 8 Ω | 120 V | US branch circuit pair. |
| 20 A | 6 Ω | 120 V | Kitchen circuit pair. |
| 30 A | 8 Ω | 240 V | Dryer circuit pair. |
| 2 A | 2.5 Ω | 5 V | USB charger pair. |
| 10 A | 1.2 Ω | 12 V | Automotive circuit pair. |
Engineering Context
The amps-to-volts page is the inverse of volts to amps — V = I·R versus I = V/R. Together with volts to watts and watts to volts they cover the four-way Ohm/watt relationship. The electric hub collects all twelve converters, and the power side feeds the energy family.
More: V to A · W to V · V to Ω · Electric Hub
Related Unit Converters
Frequently Asked Questions
How do I convert amps to volts?
Multiply amps by resistance: V = I·R. Or divide power by current: V = P/I. A 15 A current through an 8 Ω load requires 120 V.
Why do phone chargers output 5 volts?
Because the USB standard chose 5 V as its baseline. The charger's circuitry converts mains voltage down to the level the device needs — and the device draws whatever current its load requires at that voltage.
Can I calculate volts without resistance?
Yes — if you know power: V = P/I. A 60 W device drawing 5 A needs 12 V. Either resistance or power completes the pair; volts alone are never computable from amps alone.