No ads, no sign-upChecked 2026-08-23

Wheatstone Bridge Calculator

Result

300.0000Ω

Result: 300.0000 Ω

When the galvanometer reads zero the bridge is balanced, and the unknown arm follows from the other three: Rx = R2 × R3 ÷ R1. With 100 Ω, 200 Ω and 150 Ω that is 300 Ω. Only the ratio matters — the supply voltage never enters the result.

The numbers at a glance

Held fixed: Ratio resistor R1 100.000 Ω, Ratio resistor R2 200.000 Ω.

Reference resistor R3 (Ω)Result (Ω)
50.000100.0000
100.000200.0000
150.000Your value300.0000
200.000400.0000
250.000500.0000
300.000600.0000

Worked examples

Case 2
Ratio resistor R1
220Ω
Ratio resistor R2
470Ω
Reference resistor R3
1000Ω

2,136.3636Ω

Open with these values

How it's calculated

Rx = R2 × R3 ÷ R1

  1. StepEnter R1 and R2, the two known resistors of the ratio arm.
  2. StepEnter R3, the reference resistor facing the unknown one.
  3. ResultAdjust until the meter reads zero, then read Rx in ohms.

Reference table

R1, R2, R3What it isRx
0.5, 2, 3A ratio arm below one ohm12
47, 68, 33Three E24 values off the reel47.7447
100, 200, 150The textbook bridge300
100, 330, 470A 1 : 3.3 ratio arm1551
220, 470, 1000A 1 kΩ reference against 220 Ω2136.3636
1000, 1000, 1000All three equal, so Rx equals them too1000

Questions

How do I calculate the unknown resistance in a Wheatstone bridge?

At balance, multiply R2 by R3 and divide by R1: Rx = R2 × R3 ÷ R1. For R1 = 100 Ω, R2 = 200 Ω and R3 = 150 Ω that is 300 Ω.

What does a balanced bridge mean?

It means no current flows through the galvanometer in the middle — it reads exactly zero. At that point both arms divide the voltage in the same ratio, which is what makes the simple formula apply.

Why is a bridge more precise than an ohmmeter?

Because it works by null detection rather than by measuring a value, and detecting zero can be done very sensitively. The answer then depends only on the ratios of precise reference resistors.

Does the supply voltage affect the result?

No. At balance only the ratios of the three known resistors matter. A higher voltage makes the meter more sensitive away from balance, but the balance point and therefore Rx stay the same.

Where are Wheatstone bridges used?

They are the core of strain gauges, load cells, thermistor and Pt100 temperature sensors and pressure transducers. A tiny change in one resistor unbalances the bridge by a measurable amount.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.