Q.What is transformer ratio?
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What the Turns Ratio Really Means
Imagine you have two coils of wire wrapped around a shared iron core. One coil (the primary) has a certain number of loops — say 100 turns. The other (the secondary) has a different number — say 200 turns. When you feed AC voltage into the primary, it creates a changing magnetic field that cuts through both coils. That field induces a voltage in the secondary.
The key insight: each turn of wire gets the same "share" of the magnetic push. If one turn in the primary gets 1 volt induced across it, then every turn in the secondary also gets 1 volt. So if the secondary has twice as many turns, it gets twice the total voltage.
That's the whole idea in a nutshell. The turns ratio directly determines how voltage transforms from primary to secondary.
The Precise Relation
The voltage across each coil is proportional to the number of turns:
VpVs=NpNs
Where Vp and Vs are the primary and secondary voltages, and Np and Ns are the number of turns on each coil.
VpVs=NpNs=IsIp
The current relation follows from conservation of energy. An ideal transformer doesn't create or destroy power — it just transforms it. So the power in equals the power out:
VpIp=VsIs
Rearranging gives IsIp=VpVs=NpNs.
The current ratio is the inverse of the turns ratio. If you step up voltage (more secondary turns), the secondary current drops proportionally. Many students flip this by accident.
What This Tells You
If Ns>Np, you have a step-up transformer — secondary voltage is higher, secondary current is lower. If Ns<Np, it's a step-down transformer — secondary voltage is lower, secondary current is higher.
The turns ratio itself is often written as a=NsNp (primary over secondary). Then:
Vs=aVp,Is=aIp
A Concrete Example
A transformer has 500 turns on the primary and 100 turns on the secondary. The primary is connected to 230 V AC.
Turns ratio a=100500=5. This is a step-down transformer.
Secondary voltage: Vs=5230=46 V. …
A transformer's turns ratio compares the number of turns in its secondary and primary windings, and also equals the ratio of the voltages and (inversely) the currents …
The transformer ratio (turns ratio) is the ratio of the number of turns in the secondary winding to the number of turns in the primary winding, and it also equals the ratio of secondary to primary voltage.
For an ideal transformer with Np turns in the primary and Ns turns in the secondary, the induced emf per turn is the same in both windings (same changing flux), so
VpVs=NpNs=K
where K is called the transformer ratio (or turns ratio). For an ideal (lossless) transformer, power input = power output, so VpIp=VsIs, giving …
- CBSE 2026Set V11 markQ.For a step-down transformer, the ratio of primary current to secondary current is __________. Fill in the blank choosing the appropriate answer from the bracket: (photons, diffraction, polarity, monopoles, greater than unity, less than unity)
›Reveal solutionSolution
Ns/Np (equal to Vs/Vp), i.e. less than 1. …
- CBSE 2026Set A1 markMCQQ.Which quantity decreases in step-down transformer? (A) Current (B) Voltage (C) Frequency (D) Power
›Reveal solutionSolution
A step-down transformer reduces the secondary voltage; current rises to conserve power.
A transformer works by mutual induction. The turns ratio fixes the voltage ratio:
VpVs=NpNs
…
- CBSE 2025Set D1 markMCQQ.In a step-up transformer, the value of current in secondary compared to the primary coil is (A) equal (B) less (C) more (D) no relation between the two
›Reveal solutionSolution
A step-up transformer increases voltage, so to conserve power the secondary current must be smaller than the primary current.
For an ideal transformer, power is conserved:
VpIp=VsIs
…
- CBSE 2025Set ANNUAL1 markMCQQ.A transformer has 400 secondary turns and 500 primary turns. If the secondary voltage is 400 V, the primary voltage is:(a) 500V(b) 400V(c) 1000V(d) 800V.
›Reveal solutionSolution
For a transformer, VsVp=NsNp.
Given: Ns=400, Np=500, Vs=400V.
Using the transformer turns-ratio relation: …
- CBSE 2025Set ANNUAL1 markMCQQ.In a transformer, the number of turns in the primary and the secondary are 410 and 1230 respectively. If the current in primary is 6 A, then that in the secondary coil is :(a) 12 A(b) 2 A(c) 1 A(d) 18 A
›Reveal solutionSolution
Using the transformer current relation IsNs=IpNp with Np=410, Ns=1230, Ip=6 A gives Is=2 A.
Working
For an ideal transformer, the turns and currents in primary/secondary satisfy
IpNp=IsNs ⇒ Is=IpNsNp
…
- CBSE 2024Set ANNUAL1 markQ.In an ideal transformer, number of turns in the primary and secondary are 200 and 1000 respectively. If the input voltage is 200 V, what will be its output voltage ?
›Reveal solutionSolution
For an ideal transformer, Vs/Vp=Ns/Np.
VpVs=NpNs⟹Vs=Vp×NpNs=200×2001000=1000 V
…
- CBSE 2023Set F1 markMCQQ.In step-up transformer, the value of current in secondary coil compared to primary coil is (A) equal (B) less (C) more (D) none of these
›Reveal solutionSolution
Step-up transformer: voltage up, current down, so secondary current is less than primary.
For an ideal transformer, power is conserved, so VpIp=VsIs, giving
IpIs=VsVp=NsNp. …
- CBSE 2022Set I1 markMCQQ.Transformation ratio in transformer is (A) V_S/V_P (B) V_P/V_S (C) 1/(V_S·V_P) (D) 1/(I_S·I_P)
›Reveal solutionSolution
Transformation ratio k = V_S/V_P = N_S/N_P.
In an ideal transformer the induced emf is proportional to the number of turns, so the secondary and primary voltages relate to the turns as:
VPVS=NPNS=k
…
- CBSE 2022Set I1 markMCQQ.Which of the following is correct for step-up transformer? (A) V_s < V_p (B) V_s > V_p (C) V_s = V_p (D) V_s << V_p
›Reveal solutionSolution
A step-up transformer increases the output voltage: V_s > V_p.
For an ideal transformer the voltage ratio equals the turns ratio: VpVs=NpNs.
…
- CBSE 2020Set NC1 markQ.A power transmission line feeds input power at 2300 V to a step-down transformer with its primary windings having 4000 turns. What should be the number of turns in the secondary in order to get an output power at 230 V?
›Reveal solutionSolution
For an ideal transformer, turns ratio equals voltage ratio; rearrange to find the secondary turns.
Formula
NpNs=VpVs
Substitute
…
- CBSE 2019Set ANNUAL1 markMCQQ.A step-up transformer operates on a 230 V line and supplies current of 2 A to a load. The ratio of the primary and secondary windings is 1:25. The current in the primary coil is(a) 12.5 A(b) 15 A(c) 25 A(d) 50 A
›Reveal solutionSolution
For an ideal transformer, IpNp=IsNs; use the given turns ratio and secondary current to find the primary current.
Step 1 — Ideal transformer relation
IsIp=NpNs
Step 2 — Substitute
…
- CBSE 2019Set ANNUAL1 markMCQQ.In a step - up transformer, no. of turns in primary and secondary coils are N1 and N2, then -(a) N1 > N2(b) N2 > N1(c) N1 = N2(d) N1 = 0
›Reveal solutionSolution
A step-up transformer has more turns in the secondary, so N2 > N1.
For an ideal transformer the turns ratio equals the voltage ratio:
VpVs=N1N2.
…
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