Capacitance Code Calculator

Decode common capacitor markings and convert capacitance codes into pF, nF, µF, and other standard capacitance units.

Select Code Type

Examples: 104, 472, 4R7, 104K, 2R2, A3

Invalid or unsupported capacitor code. Please check the code format and try again.

Capacitance Result

Picofarads
Nanofarads
Microfarads
Farads
Tolerance:

Common Capacitor Codes

How Capacitor Codes Work

Common capacitor markings use numeric or alphanumeric codes to represent capacitance. The most common systems include 3-digit EIA, 4-digit EIA, R-code markings and EIA-198 codes.

3-Digit EIA Code

The first two digits represent significant figures. The third digit represents the number of zeros to add. The resulting capacitance is expressed in picofarads.

104 → 100,000 pF

4-Digit EIA Code

The first three digits represent significant figures. The fourth digit represents the multiplier.

1042 → 10,400 pF

R-Code

The letter R is used to represent the decimal point, which is especially useful for capacitance values below 10 pF.

4R7 → 4.7 pF

EIA-198 Code

EIA-198 uses a letter and a number to identify standard capacitance values and their multiplier.

A3 → 1,000 pF

Common Capacitor Code Examples

The following examples illustrate commonly encountered capacitance marking formats.

Code Code Type Capacitance Equivalent
101 3-Digit EIA 100 pF 0.1 nF
102 3-Digit EIA 1,000 pF 1 nF
103 3-Digit EIA 10,000 pF 10 nF
104 3-Digit EIA 100,000 pF 100 nF / 0.1 µF
221 3-Digit EIA 220 pF 0.22 nF
472 3-Digit EIA 4,700 pF 4.7 nF
4R7 R-Code 4.7 pF 0.0047 nF
2R2 R-Code 2.2 pF 0.0022 nF
104K 3-Digit + Tolerance 100,000 pF 100 nF ±10%
A3 EIA-198 1,000 pF 1 nF

Understanding Capacitor Markings

What Does 104 Mean on a Capacitor?

A common 3-digit capacitor code such as 104 represents a capacitance value in picofarads. The first two digits are the significant figures and the third digit indicates the number of zeros.

Therefore: 104 = 10 × 10⁴ pF = 100,000 pF which is equal to: 100 nF = 0.1 µF

What Does R Mean in a Capacitor Code?

In many capacitor marking systems, the letter R is used as a decimal point. For example:

  • 4R7 = 4.7 pF
  • 2R2 = 2.2 pF
  • 0R5 = 0.5 pF

What Does the Last Letter Mean?

A letter following the capacitance code may indicate capacitance tolerance. Common tolerance codes include:

  • F = ±1%
  • G = ±2%
  • J = ±5%
  • K = ±10%
  • M = ±20%
  • Z = -20%+80%

Does a Capacitor Code Show Voltage?

Not necessarily. A capacitance marking such as 104 primarily identifies the capacitance value. Rated voltage, dielectric type, temperature characteristics, tolerance and other specifications may use separate markings or may only be defined by the manufacturer's part number or datasheet.

Important: Capacitor marking systems are not completely universal. Manufacturers may use proprietary or product-specific marking and ordering codes. Always verify the decoded value against the manufacturer's datasheet before selecting or replacing a component.

Capacitance Code Calculator FAQ

The common 3-digit code 104 represents 100,000 pF, which is equal to 100 nF or 0.1 µF.
The code 103 represents 10,000 pF, which is equal to 10 nF.
The code 472 represents 4,700 pF, which is equal to 4.7 nF.
The R is used as a decimal point. Therefore, 4R7 represents 4.7 pF.
K commonly represents a capacitance tolerance of ±10%. For example, 104K commonly means 100 nF ±10%, although the complete marking system should always be verified against the manufacturer's documentation.
Not always. A capacitance code generally identifies the nominal capacitance, while voltage rating, dielectric type, temperature characteristics, tolerance and other specifications may require additional markings or the manufacturer's datasheet.

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