No ads, no sign-upChecked 2026-08-25

Transformer Turns Ratio Calculator

Result

12.000V

Result: 12.000 V

Voltage follows the turns in direct proportion: Vs = Vp × Ns ÷ Np. Only the ratio matters — 100:10 and 1000:100 both step down 10:1. Current goes the other way: Vp × Ip = Vs × Is, so a tenfold voltage drop buys roughly ten times the secondary current.

The numbers at a glance

Held fixed: Primary voltage Vp (V) 120.000 V, Primary turns Np 100.

Secondary turns NsResult (V)
33.000
56.000
89.000
10Your value12.000
1315.000
1518.000
1821.000
2024.000

Worked examples

How it's calculated

Vs = Vp × Ns ÷ Np

  1. StepDivide the secondary turns by the primary turns — that is the ratio.
  2. StepMultiply the primary voltage by that ratio.
  3. ResultMore secondary turns steps up, fewer steps down, equal leaves it alone.

Reference table

Vp, Np, NsWhat it doesVs
120, 100, 1010:1 step-down12
120, 10, 1001:10 step-up1200
240, 100, 1001:1 isolation240
12, 2, 12:1 step-down6
230, 1000, 5020:1 step-down11.5

Questions

How do I calculate a transformer's secondary voltage?

Multiply the primary voltage by the turns ratio Ns ÷ Np. For 120 V with 100 primary and 10 secondary turns that is 120 × 0.1 = 12 V. The voltage scales in direct proportion to the turns.

What is the difference between step-up and step-down?

More secondary turns than primary steps the voltage up; fewer steps it down. With equal turns the voltage is unchanged — an isolation transformer.

Does the exact number of turns matter, or just the ratio?

Only the ratio Ns ÷ Np sets the voltage: 100:10 and 1000:100 both give the same 10:1 step-down. Absolute counts affect core size, magnetising current and frequency response instead.

What happens to the current and the power?

Power is conserved in an ideal transformer, so current changes inversely to voltage: Ip × Vp = Is × Vs. Stepping voltage down by ten raises the available secondary current by about ten.

Is this an ideal transformer calculation?

Yes. The formula assumes perfect magnetic coupling and no winding resistance, leakage or core losses. Real transformers run a few percent lower under load.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.