OhmColorCodeIEC 60062
MOST COMMON RESISTOR SYSTEM

4 Band Resistor Color Code Calculator & Guide

The 4-band resistor color code is the most widespread standard found in consumer electronics, automotive circuits, and DIY hobbyist projects. It uses two significant digit bands, one multiplier band, and one tolerance band.

Common Real-World Circuit Applications
Standard through-hole carbon film and metal film resistorsGeneral electronic hobby kits and Arduino breadboardingPower supply filtering and signal biasing
Herramienta Interactiva

Calculadora de Código de Colores

Selecciona el número de bandas y haz clic en los colores para calcular la resistencia.

Sistema de Bandas
4-Band Carbon Film ResistorDirección de lectura: Izquierda a Derecha
1Brown0Black×100Red±5%Gold
Valor de ResistenciaStandard E12 / E24
1±5%
Rango Garantizado:±5%
950 Ω1.05 kΩ
Serie EstándarE12, E24
Coeficiente TérmicoN/A (6-band only)
Color Band Sequence:
Valores Comerciales ComunesHaz clic para cargar

Seleccionar Colores de Banda

Haz clic en cualquier muestra para cambiar el valor

Sincronizado en Vivo
1st Band1ª Cifra
2nd Band2ª Cifra
3rd BandMultiplicador
4th BandTolerancia
Cálculo Inverso

Búsqueda Inversa de Código de Colores

Ingresa el valor de resistencia en Ohmios (Ω) para obtener las bandas de colores exactas.

Enter Target Resistance

Live Validation
Examples: 4.7k, 220, 1M, 0.47
Ω
Ohms
Recognized: 4.7 kΩ (4,700 Ω)
Quick Presets:Click to test
Calculated Color BandsStandard E24
Exact Resistance:4.7 kΩ±5%
Color Bands Sequence (Left to Right):
Band Breakdown:
Want to tweak these bands?
FREQUENTLY ASKED QUESTIONS

Common Questions About 4 Band Resistor Color Code Calculator & Guide

How do you read a 4-band resistor?

Read from left to right, starting at the lead opposite the gold or silver tolerance band. Band 1 is the first digit, Band 2 is the second digit, Band 3 is the multiplier (power of 10), and Band 4 is the tolerance percentage.

Which band is the tolerance on a 4-band resistor?

The fourth band, usually separated by a slightly wider physical gap and colored Gold (±5%) or Silver (±10%), is the tolerance band.

What if there are only 3 color bands on my resistor?

A 3-band resistor has no tolerance band. By standard convention, its tolerance is default ±20%.

Norma IEC 60062

Tabla de Código de Colores de Resistencias

Tabla de referencia completa para dígitos, multiplicador, tolerancia y TCR.

Showing 13 of 13 standard IEC colors
Swipe horizontally for full tableScroll ↔
Quick Action
BlackBK
0
× 1 Ω(10⁰)
🌡250 ppm/K
BrownBN
1
× 10 Ω(10¹)
± 1%🌡100 ppm/K
RedRD
2
× 100 Ω(10²)
± 2%🌡50 ppm/K
OrangeOG
3
× 1 kΩ(10³)
± 0.05%🌡15 ppm/K
YellowYE
4
× 10 kΩ(10⁴)
± 0.02%🌡25 ppm/K
GreenGN
5
× 100 kΩ(10⁵)
± 0.5%🌡20 ppm/K
BlueBU
6
× 1 MΩ(10⁶)
± 0.25%🌡10 ppm/K
VioletVT
7
× 10 MΩ(10⁷)
± 0.1%🌡5 ppm/K
GreyGY
8
× 100 MΩ(10⁸)
± 0.01%🌡1 ppm/K
WhiteWH
9
× 1 GΩ(10⁹)
GoldGD
× 0.1 Ω(10⁻¹)
± 5%
SilverSR
× 0.01 Ω(10⁻²)
± 10%
PinkPK
× 0.001 Ω(10⁻³)
Commercial Presets

Common Resistors & Standard Color Codes

Quick reference guide of ubiquitous axial resistors with visual 4-band color sequences. Click "Load in Calc" to instantly populate the interactive simulator.

Swipe horizontally for presets & colorsScroll ↔
ResistanceCircuit ApplicationVisual 4-Band Colors (±5%)Quick Action
10 Ω
ProtectionCurrent shunt / Snubber
BrownBlackBlackGold
100 Ω
ProtectionProtection / Terminating
BrownBlackBrownGold
220 Ω
LED & Bias5V LED Current Limiter
RedRedBrownGold
330 Ω
LED & Bias3.3V LED Current Limiter
OrangeOrangeBrownGold
470 Ω
LED & BiasTransistor Base Resistor
YellowVioletBrownGold
1 kΩ
I²C BusAudio / General Purpose
BrownBlackRedGold
2 kΩ
I²C BusVoltage Divider / Op-Amp
RedBlackRedGold
2.2 kΩ
I²C BusI2C Bus Pull-Up (Fast)
RedRedRedGold
4.7 kΩ
I²C BusI2C Bus Standard Pull-Up
YellowVioletRedGold
10 kΩ
Logic Pull-UpLogic Pull-Up / Pull-Down
BrownBlackOrangeGold
47 kΩ
Feedback / DividerOp-Amp Feedback / Timing
YellowVioletOrangeGold
100 kΩ
Feedback / DividerHigh-Impedance Divider
BrownBlackYellowGold
1 MΩ
High ImpedanceOscillator / Megaohm Bleeder
BrownBlackGreenGold
📖 Guía Técnica

Cómo Leer el Código de Colores de Resistencias

Tutorial paso a paso según la norma internacional IEC 60062.

What is a Resistor Color Code?

Understanding the resistor color code is fundamental for electronics engineering, repair, and prototyping. Before automated optical inspection and surface-mount components became universal, axial through-hole resistors required a durable, omnidirectional marking method. Because printed numerals on small cylinders easily smudge or rotate out of sight when soldered to circuit boards, the industry adopted standard colored bands.

Governed internationally by the IEC 60062 standard and in North America by EIA-RS-279, the resistor color code system assigns distinct numerical values to twelve colors. Using our free online resistor color code calculator, engineers, students, and technicians can instantly determine resistance values in ohms (Ω), kilohms (kΩ), or megaohms (MΩ), evaluate allowable tolerances, and check thermal temperature coefficients without tedious manual calculations.

How the Resistor Color Code Chart Works

To decode any axial through-hole component, engineers consult the standardized resistor color code chart. Each hue corresponds to a specific digit from 0 through 9:

0
Negro
1
Marrón
2
Rojo
3
Naranja
4
Amarillo
5
Verde
6
Azul
7
Violeta
8
Gris
9
Blanco

Beyond significant digits, colors define decimal multipliers and tolerance ratings. For instance, Gold signifies a 0.1 multiplier or a ±5% tolerance band, whereas Silver denotes a 0.01 multiplier or ±10% tolerance. High-precision resistors use Brown (±1%), Red (±2%), Green (±0.5%), Blue (±0.25%), and Violet (±0.1%).

Standard Memory Mnemonic:"Better Be Ready Or Your Great Big Venture Goes Wrong" — Black, Brown, Red, Orange, Yellow, Green, Blue, Violet, Grey, White.

Understanding 3-Band, 4-Band, and 5-Band Resistors

Through-hole resistors feature three, four, five, or six stripes depending on manufacturing era and required precision.

3The 3 Band Resistor Color Code

The 3 band resistor color code identifies vintage carbon-composition components common in antique radios and early tube equipment. A 3 band resistor color code uses two digit stripes and a multiplier stripe without a tolerance band. Under EIA standards, these carry an inherent tolerance of ±20%. For example, Brown, Black, and Red designate 1,000 Ω (1 kΩ) with an operating range of 800 Ω to 1,200 Ω.

Formula: R = (B1 × 10 + B2) × 10^B3 Ω (±20%)

4The 4 Band Resistor Color Code

The 4 band resistor color code is the most common standard in electronics. Band 1 and Band 2 represent digits, Band 3 is the multiplier, and Band 4 indicates tolerance (typically Gold for ±5% or Silver for ±10%). Formula: Resistance = (Band 1 × 10 + Band 2) × 10^(Band 3) Ω. For example, Yellow (4), Violet (7), Red (100), and Gold (±5%) produces 4,700 Ω (4.7 kΩ) ±5%.

Formula: R = (B1 × 10 + B2) × Multiplier Ω (±Tol)

55 Band Resistor Color Code & Calculator

Precision equipment requires tighter tolerances than 5% carbon resistors supply. Metal film components utilize a 5 band resistor color code featuring three significant digits before the multiplier (Bands 1–3 digits, Band 4 multiplier, Band 5 tolerance). Our interactive 5 band resistor color code calculator simplifies working with precision E48, E96, and E192 series. For example, Brown (1), Black (0), Black (0), Red (100), and Brown (±1%) indicate 10,000 Ω or 10 kΩ with 1% accuracy.

Formula: R = (B1 × 100 + B2 × 10 + B3) × Multiplier Ω

66-Band High-Stability Resistors

A 6-band resistor adds a final stripe indicating the Temperature Coefficient of Resistance (TCR) in ppm/K (parts per million per Kelvin). Common values include Brown (100 ppm/K) and Red (50 ppm/K), detailing thermal stability for sensitive analog and RF circuits where temperature drift must be controlled.

ppm/K = parts per million drift per degree Kelvin

Common Resistor Values & Quick Reference Lookups

Instant color code chart and descriptions for the most popular circuit values.

E24 / E12 Series

When breadboarding circuits, several resistance values recur constantly. Here is a definitive lookup guide:

  • 10 ohm resistor color code: Brown, Black, Black, Gold. Commonly used for current shunt sensing and circuit protection.
  • 100 ohm resistor color code: Brown, Black, Brown, Gold. Popular for terminating signals and protecting transistor bases.
  • 220 ohm resistor color code: Red, Red, Brown, Gold. The standard current-limiting choice for driving LEDs safely from 5V microcontroller pins.
  • 330 ohm resistor color code: Orange, Orange, Brown, Gold. Ideal current limiter for 3.3V logic (ESP32, Raspberry Pi) and blue/white LEDs.
  • 1k ohm resistor color code & 1k resistor color code: Brown, Black, Red, Gold. The 1k ohm resistor color code (or 1k resistor color code) is universal for transistor switching, active filters, and audio line stages.
  • 2k resistor color code: Red, Black, Red, Gold. Frequently used in precision operational amplifier feedback and sensor scaling networks.
  • 10k ohm resistor color code & 10k resistor color code: Brown, Black, Orange, Gold. The 10k ohm resistor color code (or 10k resistor color code) serves as the primary standard for microcontroller pull-up and pull-down bus lines.
  • 100k ohm resistor color code & 100k resistor color code: Brown, Black, Yellow, Gold. The 100k ohm resistor color code (or 100k resistor color code) is ideal for high-impedance voltage dividers and low-power timing oscillators.
Value4-Band ColorsTypical ApplicationQuick Load
10 Ω
BrownBlackBlackGold
Current shunt sensing & low-value circuit protection
100 Ω
BrownBlackBrownGold
Signal termination & transistor base protection
220 Ω
RedRedBrownGold
5V microcontroller LED current limiter
330 Ω
OrangeOrangeBrownGold
3.3V logic (ESP32 / Pi Pico) & blue/white LEDs
1 kΩ
BrownBlackRedGold
Transistor switching, audio bias & active filters
2 kΩ
RedBlackRedGold
Precision op-amp feedback & sensor scaling
10 kΩ
BrownBlackOrangeGold
Universal digital I²C pull-up & GPIO pull-down
100 kΩ
BrownBlackYellowGold
High-impedance dividers & RC timing oscillators

Solving Complex Networks with the Parallel Resistor Calculator

Launch Parallel Resistor Calculator →

When a design requires a non-standard resistance, combining components in parallel or series provides the exact target value.

Our integrated parallel resistor calculator computes the equivalent resistance for multiple parallel branches instantly. The governing equation is:1 / R_total = 1 / R1 + 1 / R2 + ... + 1 / Rn.

For two resistors, the product-over-sum formula applies:R_total = (R1 × R2) / (R1 + R2).

For example, wiring two 10k ohm resistors in parallel produces exactly 5k ohms, while paralleling a 220 ohm resistor with a 330 ohm resistor yields 132 ohms. Parallel connections also divide branch currents, doubling power handling and minimizing thermal stress.

Practical Reading Tips for Engineers

To avoid reading errors in the lab:

  1. Locate the tolerance band: Gold or Silver stripes never represent the first digit and sit at the far right.
  2. Check the physical spacing: The gap preceding the tolerance band is visibly wider than the digit band intervals.
  3. Use proper lighting: Colors like red, orange, and brown can look identical under poor or yellow lighting; inspect under daylight-balanced white light.

Whether you are decoding a 4 band resistor color code, verifying a 5 band resistor color code, looking up a 10k resistor color code, or calculating branch impedances with our parallel resistor calculator, our web app provides fast, accurate engineering calculations.