Power distribution

Transformer Full-Load Current Calculator

Calculate the rated line current on both the primary and secondary of a transformer from its kVA rating, the two voltages, and the phase arrangement — the starting point for sizing the incoming and outgoing protection, cables, and CTs.

Use the line-to-line voltage for a three-phase transformer. Current is the rated full-load value; inrush on energisation is far higher for a brief moment.
Secondary full-load current
A
Primary full-load current
Voltage ratio

Formulas used

Three-phase: I = S / (√3 × V) Single-phase: I = S / V Ratio: V_primary / V_secondary

where S is the apparent power (VA), V the line voltage on the side being calculated, and I the line current on that side. The apparent power is the same on both windings (losses aside), so the low-voltage side always carries the higher current. A 1000 kVA, 11 kV / 400 V transformer draws about 52 A on the primary but delivers about 1443 A on the secondary.

What the currents are used for

  • Secondary current sizes the main LV breaker or ACB, the busbar, and the outgoing distribution.
  • Primary current sizes the HV protection and the incoming cable or ring-main unit.
  • Both feed the CT ratios for metering and protection on each side.
Full-load current is not the whole story. Energising inrush can reach 8–12 × the rated current for a few cycles, and the secondary fault level is set by the impedance voltage uk. Size protection to carry the full-load current, ride through inrush, and break the prospective fault current.

Frequently asked questions

Why is the secondary current so much higher?

Power is conserved across the windings, so as the voltage steps down the current steps up by the same ratio. The low-voltage side therefore carries the larger current and needs the heavier busbar and protection.

Which voltage do I enter for three-phase?

The line-to-line voltage on each side (for example 11000 V and 400 V), because the √3 relationship uses the line voltage.

Does this give the fault current too?

No. This is the rated full-load current. The prospective short-circuit current at the secondary depends on the impedance voltage uk — use a short-circuit calculation for that.

Size the protection next

With both currents known, select the primary and secondary breakers, ATS, and CTs — or ask JUTRION for a suitable set for your market.

Standards referencedIEC 60076 (power transformers) · IEC 60038 (standard voltages) · basic three-phase power relationships.

Engineering estimate for guidance only. Final protection, cable, and CT selection must account for inrush, the impedance voltage, the fault level, and the applicable standards, verified by a qualified person.