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    1. Home/
    2. Tools/
    3. Resistor Color Code Calculator

    Resistor Color Code Calculator

    Glofell’s Resistor Color Code Calculator decodes 4-band, 5-band, and 6-band resistors. Select each band to identify resistance, tolerance, and power rating for circuit work, repairs, or lab sorting.

    Resistor Diagram Background

    Number of Bands

    Resistor Parameters

    Resistor Example

    Introduction

    How to Use the Resistor Color Code Calculator

    How to Use the Online Calculator

    The Resistor Color Code Calculator is designed to instantly compute the resistance value for 4, 5, and 6-band resistors.

    1. Select the Band Count: Choose whether you have a 4, 5, or 6-band resistor.
    2. Input Colors: Select the specific color found on your resistor for each column (Band 1, Band 2, Multiplier, Tolerance, etc.).
    3. Get Result: The calculator will display the resistance value (Ohms, kΩk\OmegakΩ, MΩM\OmegaMΩ) and the tolerance percentage immediately.

    Understanding Resistor Color Codes

    Resistors use a standardized color-coding system to indicate their resistance value, tolerance, and sometimes reliability or temperature coefficient. This is necessary because the components are often too small for printed text.

    How to Read the Bands

    To read a resistor manually, hold it so the band closest to one end is on the left. The gap between bands is usually wider before the tolerance band (the last band on the right).

    • Band 1 & 2 (and 3 for 5/6-band): Represents the significant digits (0-9).
    • Multiplier Band: Represents the decimal multiplier (how many zeros to add).
    • Tolerance Band: Represents the accuracy of the resistor (e.g., ±5%\pm 5\%±5%).
    • Temperature Coefficient (6-band only): Indicates how the resistance changes with temperature.

    Resistor Color Code Chart

    Use this table to decode the colors on your resistor:

    ColorSignificant DigitsMultiplierToleranceTemp. Coefficient
    Black01 (10010^0100)-250 ppm/K
    Brown110 (10110^1101)±1%\pm 1\%± (F)

    Band Configurations Explained

    4-Band Resistors

    This is the most common type.

    • Band 1 & 2: First two digits of the value.
    • Band 3: Multiplier.
    • Band 4: Tolerance.

    5-Band Resistors

    Used for higher precision (1% or 2% tolerance).

    • Band 1, 2, & 3: First three digits of the value.
    • Band 4: Multiplier.
    • Band 5: Tolerance.

    6-Band Resistors

    High-precision resistors used in temperature-sensitive environments.

    • Band 1, 2, & 3: First three digits.
    • Band 4: Multiplier.
    • Band 5: Tolerance.
    • Band 6: Temperature Coefficient (PPM/°C).

    Calculation Examples

    1. 10k Ohm Resistor (4-Band)

    • Colors: Brown - Black - Orange - Red
    • Calculation:
      • Brown (1)
      • Black (0)
      • Orange (x1,000x1,000x1,000 Multiplier)
      • Red (±2%\pm 2\%±2% Tolerance)
    • Result: 10×1,000=10,000Ω10 \times 1,000 = 10,000 \Omega10×1,000=10, or

    2. 100 Ohm Resistor (4-Band)

    • Colors: Brown - Black - Brown - Gold
    • Calculation:
      • Brown (1)
      • Black (0)
      • Brown (x10x10x10 Multiplier)
      • Gold (±5%\pm 5\%±5% Tolerance)
    • Result: 10×10=100Ω10 \times 10 = 100 \Omega10×10=100Ω ±5%\pm 5\%±

    Quick Reference: Common Resistor Color Codes

    Resistance4-Band Code (5% Tolerance)5-Band Code (1% Tolerance)
    1 Ω\OmegaΩBrown - Black - Gold - GoldBrown - Black - Black - Silver - Brown
    10 Ω\OmegaΩBrown - Black - Black - GoldBrown - Black - Black - Gold - Brown
    100 Ω\OmegaΩBrown - Black - Brown - GoldBrown - Black - Black - Black - Brown
    1 kΩ\OmegaΩBrown - Black - Red - GoldBrown - Black - Black - Brown - Brown
    10 k

    Standard Resistor Series (E-Series)

    Resistors are manufactured in standard logarithmic values known as E-Series to verify component tolerance and reduce inventory complexity.

    • E3, E6, E12: Most common for general electronics (tolerances ≥5%\ge 5\%≥5%).
    • E24, E48, E96: High precision values (tolerances ≤2%\le 2\%≤2%).
    1%
    100 ppm/K
    Red2100 (10210^2102)±2%\pm 2\%±2% (G)50 ppm/K
    Orange31k (10310^3103)±0.05%\pm 0.05\%±0.05% (W)15 ppm/K
    Yellow410k (10410^4104)±0.02%\pm 0.02\%±0.02% (P)25 ppm/K
    Green5100k (10510^5105)±0.5%\pm 0.5\%±0.5% (D)20 ppm/K
    Blue61M (10610^6106)±0.25%\pm 0.25\%±0.25% (C)10 ppm/K
    Violet710M (10710^7107)±0.1%\pm 0.1\%±0.1% (B)5 ppm/K
    Grey8100M (10810^8108)±0.05%\pm 0.05\%±0.05% (L)1 ppm/K
    White91G (10910^9109)--
    Gold-0.1 (10−110^{-1}10−1)±5%\pm 5\%±5% (J)-
    Silver-0.01 (10−210^{-2}10−2)±10%\pm 10\%±10% (K)-
    000Ω
    10kΩ\OmegaΩ ±2%\pm 2\%±2%
    5%
    Ω\Omega
    Ω
    Brown - Black - Orange - Gold
    Brown - Black - Black - Red - Brown
    100 kΩ\OmegaΩBrown - Black - Yellow - GoldBrown - Black - Black - Orange - Brown
    1 MΩ\OmegaΩBrown - Black - Green - GoldBrown - Black - Black - Yellow - Brown
    10 MΩ\OmegaΩBrown - Black - Blue - GoldBrown - Black - Black - Green - Brown
    FAQ

    How do you calculate resistor color code?

    Hold the resistor so the tolerance band (gold or silver) is on the right. Read the color bands from left to right and enter them into the calculator. The tool displays the resistance value and tolerance immediately.

    What is a resistor color code?

    A resistor color code is a standardized system of colored bands printed on a resistor to indicate its resistance value, tolerance, and sometimes temperature coefficient. It is used because the components are too small to have printed numbers. The concept of using colors for coded communication dates back to flag signaling systems.

    How do I know if I have a 100K resistor?

    A 100kΩ 4-band resistor uses the color code brown-black-yellow-gold. With a gold tolerance band, the value is 100,000Ω ±5%, so it can measure anywhere from 95kΩ to 105kΩ. To confirm, remove the resistor from the circuit and measure it with a digital multimeter in resistance mode, as measuring in-circuit can give misleading results due to parallel paths.

    What does a 1k resistor look like?

    A 1kΩ resistor is commonly marked with four bands: brown, black, red, and gold (for 5% tolerance). The first two colors represent the digits 1 and 0, and the red band is the multiplier (×100), giving 1,000Ω. For a 1% tolerance 5-band resistor, the code is brown-black-black-brown.

    What is resistor value?

    A resistor is a passive component that opposes the flow of electric current. Its resistance, measured in ohms (Ω), indicates how strongly it restricts current. A higher resistor value means greater opposition to current flow.

    What is the color code for a 3.9K resistor?

    A 3.9kΩ metal film resistor with ±1% tolerance is marked orange-white-black-brown-brown. The first three bands give 390, and the brown multiplier ×10 gives 3,900Ω.

    What is a 100K resistor?

    A 100kΩ resistor (4-band) uses the color code brown-black-yellow-gold. Brown and black give 10, yellow means multiply by 10,000, and gold indicates ±5% tolerance. The result is 10 × 10,000 = 100,000Ω = 100kΩ.

    What is a resistor?

    A resistor is a passive electrical component with two terminals that limits or regulates the flow of electric current in a circuit. It is used to reduce current flow, adjust signal levels, and divide voltages.

    What is the color code for a 2.2k ohm 4-band resistor?

    A 2.2kΩ 4-band resistor is color-coded red-red-red-gold. Red (2), Red (2), Red (×100), and Gold (±5%) gives 22 × 100 = 2,200Ω = 2.2kΩ. With a 5% tolerance, the actual value lies between 2,090Ω and 2,310Ω.

    How do I know if I have a 10k ohm resistor?

    A 10kΩ 4-band resistor typically shows brown-black-orange-silver (10% tolerance) or brown-black-orange-gold (5% tolerance). The first two bands represent 10, the orange band multiplies by 1,000, giving 10,000Ω. If the resistor has five bands, the code is brown-black-black-red, with the fifth band indicating tolerance.

    How can I calculate a 6-band resistor value?

    Treat the first five bands like a 5-band resistor: three significant digits, a multiplier, and a tolerance. The sixth band indicates the temperature coefficient (ppm/°C) or reliability. Enter all six colors into the calculator and it will compute the resistance, tolerance, and temperature coefficient.

    How do I find the value of a 3-band resistor?

    A 3-band resistor has a 20% tolerance. The first two bands are significant digits and the third is the multiplier. For example, brown-black-orange means 10 × 1,000 = 10kΩ ±20%, and red-red-brown means 22 × 10 = 220Ω ±20%. The value can range from 80% to 120% of the nominal value. Since there is no tolerance band, use the 4-band calculator and leave the fourth band blank.

    How do I know which is the first band on a resistor?

    To identify the first band: 1) Look for the group of bands clustered near one end; hold that end to the left and read left to right. 2) For 5% and 10% resistors, the gold or silver tolerance band should be on the right. 3) The first band is never gold or silver, so if you see a metallic band, start from the opposite end. In 4-band resistors, the multiplier band is usually blue (10^6) or lower; in 5-band resistors, the fourth band is green (10^5) or lower.

    How do you read a 3-band resistor?

    For a 3-band resistor, the first two bands denote the first two significant digits, and the third band is the multiplier. For example, brown-black-brown means 10 × 10 = 100Ω. The first band is the one closest to an end, and the absence of a tolerance band means the tolerance is ±20%.

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