volts to amps
Ohm's law is the single most used formula in electrical work: I = V/R. For power calculations, the watt's law companion P = V·I gives I = P/V. The US grid delivers 120 V to branch circuits; the 240 V used for ranges and dryers doubles the power for the same current. Every breaker, fuse, and wire-gauge decision in the US runs through this conversion — a breaker protects a circuit by current, and you choose it by converting the connected load's watts to amps at the circuit's voltage.
amps = volts ÷ ohms (or amps = watts ÷ volts)
I = V/R · I = P/V
The calculation is Ohm's law and watt's law — exact, with the voltage from your circuit.
Common volts to amps Values
| volts | ohms | amps | Context |
|---|---|---|---|
| 120 V | 8 Ω | 15 A | US branch circuit at 8 Ω load — full breaker rating. |
| 120 V | 6 Ω | 20 A | Kitchen appliance circuit. |
| 240 V | 16 Ω | 15 A | Electric dryer circuit. |
| 240 V | 10 Ω | 24 A | Range circuit, 30 A breaker. |
| 12 V | 4 Ω | 3 A | Automotive accessory circuit. |
Engineering Context
The volts-to-amps conversion is the root of the electric hub — from it come watts to amps (P/V), volts to ohms (V/I), and the whole Ohm's law family. The power side links to the energy hub's watts to kW and kW to watts, since breaker sizing feeds appliance energy estimates. The AWG side of the same circuit design lives in the AWG to mm² converter.
More: W to A · V to Ω · A to V · Electric Hub
Related Unit Converters
Frequently Asked Questions
How do I convert volts to amps?
You need a second quantity: current (A) = voltage (V) ÷ resistance (Ω), or current = power (W) ÷ voltage (V). A 120 V circuit with an 8 Ω load draws 15 A; the same circuit loaded to 1,800 W also draws 15 A.
How many amps is 120 volts?
It depends on the load. 120 V with no load draws 0 A. With a 1,800 W heater it draws 15 A; with a 60 W bulb, 0.5 A. Volts are the pressure; amps are the flow — the load determines the flow.
Is household voltage 120 or 240 volts in the US?
Both. US homes receive 240 V split into two 120 V legs: standard outlets use one leg at 120 V, while ranges, dryers, and HVAC use both legs for 240 V. That is why this converter matters at both voltages.