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Ohm Bands

0.13 Ω resistor colour code

Four bands: Brown · Orange · Silver · Gold. The first two give the digits, the third multiplies, the fourth states how far off the real part may be.

Below 1 Ω a resistor stops being a resistor in the usual sense. Values like this sit in series with a load so a circuit can measure the current through them, or they limit inrush. The silver multiplier band is what takes the value under one ohm — and nothing takes it below 0.1 Ω, because no colour means ×0.001. Smaller shunts exist; their value is printed on the body instead.

13×0.01±5%
Brown1Orange3Silver×0.01Gold±5%

Nominal

0.13 Ω

0.13 ohms

Real range at ±5%

0.1235 Ω – 0.1365 Ω

A gold band allows this much drift.

Series

E24

A current-sense value. Rarely in a hobby parts drawer.


Band by band

BandColourMeaning
1Brown1st digit — 1
2Orange2nd digit — 3
3SilverMultiplier — ×0.01
4GoldTolerance — ±5%

How much it can take

Current and dissipation across the resistor, and the package you need. The suggested rating keeps a factor of two in hand, which is what anyone building a board actually does.

Across itCurrentDissipatedPackage to pick
3.3 V25.4 A83.8 Wno standard part — needs a power resistor or a heatsink
5 V38.5 A192 Wno standard part — needs a power resistor or a heatsink
12 V92.3 A1110 Wno standard part — needs a power resistor or a heatsink
24 V185 A4430 Wno standard part — needs a power resistor or a heatsink

What you can actually get

Standard on paper, absent from the shelf.

0.13 Ω is a proper E24 value, but no part carrying it is currently held for assembly.

Assembly stock from the JLCPCB library, read 2026-09-24. That is what a board house will place for you — not everything a distributor sells.

The same value, marked differently

Surface mount

R13· three-digit

R130· four-digit, precision parts

12S· EIA-96, for the smallest parts

Values that can overlap this one

At ±5% the tolerance bands of neighbouring values run into each other. A part sold as one of these could measure the same as a 0.13 Ω — which is why measuring beats reading when it matters.

If you do not have one

Standard values that land within 1% of 0.13 Ω when combined.