kVA to Amps Calculator

Enter kVA, voltage, and phase type to calculate line current in amps using the matching voltage basis.

Did we solve your problem today?


How to use our kVA to Amps Calculator

  1. Find the apparent-power rating in kVA on the equipment nameplate, load schedule, transformer label, or electrical drawing.
  2. Enter the voltage on the circuit or winding side where you need the current.
  3. Choose single phase, 3-phase line-to-line, or 3-phase line-to-neutral for a balanced Wye system.
  4. Click Calculate, then compare the displayed voltage basis with the nameplate or drawing. For example, a 480Y/277 V system can use either 480 V line-to-line or 277 V line-to-neutral, but the choice must match the number entered.
  5. Use the amps value as a conversion check, not as a final breaker or wire size. Apply the rules for the actual equipment and installation before selecting protection or conductors.
Example inputs for kVA to Amps Calculator
Example inputs for kVA to Amps Calculator

Definitions

kVA: Kilovolt-amperes, a unit of apparent power. One kVA equals 1,000 volt-amperes (VA).

Apparent power: AC power capacity based on voltage and current, measured in VA or kVA. It differs from real power, measured in kW.

Line current: Current flowing in a supply line conductor, measured in amperes (A).

Line-to-line voltage (L-L): Voltage measured between two phase lines in a three-phase system.

Line-to-neutral voltage (L-N): Voltage measured from one phase line to neutral. This calculator uses it only for a balanced Wye system.

Balanced Wye: A three-phase arrangement with equal phase loads and a neutral connection. Its line-to-line voltage is the square root of 3 times its line-to-neutral voltage. [2]

Power factor: The relationship between real power and apparent power. It is not needed when converting a known kVA rating directly to amps.


75 kVA current by voltage basisEquivalent balanced three-phase Wye voltage readings give nearly the same line current. Match the selected voltage basis to the voltage number on the nameplate or drawing.75 kVA current by voltage basisEquivalent balanced three-phase Wye voltage readings give nearly the same line current.480 V L-L90.2 A277 V L-N Wye90.3 AVoltage basis
75 kVA current by voltage basis
Match the selected voltage basis to the voltage number on the nameplate or drawing.

Common mistakes and quick fixes

Mistake: Entering kW instead of apparent power in kVA.
Fix: Use the kVA value from the nameplate. Do not add power factor when the known rating is already in kVA.

Mistake: Using voltage from the wrong transformer winding or circuit side.
Fix: Enter the voltage for the exact side where you need to know current.

Mistake: Choosing 3-phase line-to-line while entering a line-to-neutral voltage, such as 277 V on a 480Y/277 V system.
Fix: Choose 3-phase line-to-neutral (balanced Wye) when the voltage is measured from one phase line to neutral.

Mistake: Using the line-to-neutral calculation for an unbalanced load or a system that is not Wye.
Fix: Use that calculation only for a balanced Wye system. An unbalanced system needs circuit-specific analysis.

Mistake: Treating calculated current as a finished wire or breaker size.
Fix: Check the load type, continuous-load requirements, conductor conditions, overcurrent protection, and applicable electrical code.


Limitations & Key Assumptions / Boundary Conditions

  • The entered kVA must be the applicable apparent-power rating, and the entered voltage must be from the point where current is being checked.
  • The 3-phase line-to-line calculation assumes balanced three-phase apparent power and voltage measured between phase lines.
  • The 3-phase line-to-neutral calculation applies only to a balanced Wye system with voltage measured from a phase line to neutral.
  • The result is line current, not a breaker size, conductor ampacity, fault-current value, or code-compliant installation design.
  • Actual operating current can differ because load, voltage, duty cycle, harmonics, and phase balance can change.
  • Voltage must be greater than 0 V. A rating of 0 kVA is allowed and produces 0 A.

Methodology

Calculation method

The calculator converts kVA to VA by multiplying by 1,000, then divides by the voltage relationship for the selected circuit type. The balanced three-phase line-to-line relationship includes the square root of 3. [1]

I = kVA x 1,000 / V

For single phase, I is line current in amps and V is circuit voltage in volts.

I = kVA x 1,000 / (√3 x V L-L)

For balanced three phase using line-to-line voltage, V L-L is the voltage between phase lines.

I = kVA x 1,000 / (3 x V L-N)

For a balanced Wye system using line-to-neutral voltage, V L-N is the voltage from a phase line to neutral.

Worked example

For a 75 kVA balanced three-phase load at 480 V line-to-line, current is 75 x 1,000 / (1.7320508 x 480) = 90.2 A, rounded to one decimal place. For the same 75 kVA load at 277 V line-to-neutral in a balanced Wye system, current is 75 x 1,000 / (3 x 277) = 90.3 A. The small difference comes from 480 V being approximately the square root of 3 times 277 V.

Assumptions and limits

Power factor is not included because the input is apparent power in kVA. If you start with real power in kW, a different calculation needs power factor. Negative kVA and zero or negative voltage are outside the supported equipment-rating domain; division by zero voltage is undefined.


Sources