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  1. Capacitor code table/chart. Here is a Table of Mostly Used Codes of Ceramic Capacitor and their unit conversion in Micro, Nano, and Picofarad. The last number is the power of 10 and multiply with the first two no. If a capacitor has 682 code – first check the last no, here the last no is 2. Now the multiplier is 102.

  2. A ceramic capacitor is a fixed-value capacitor where the ceramic material acts as the dielectric. It is constructed of two or more alternating layers of ceramic and a metal layer acting as the electrodes. The composition of the ceramic material defines the electrical behavior and therefore applications.

  3. The most common capacitor code uses a first digit, second digit, and multiplier scheme: Example: 223J = 22 x 103 pF = 22 nF = .022 μF 5% Tolerance 151K = 15 x 101 pF = .15 nF = .00015 μF 10% Tolerance Occasionally capacitors will have the value listed very plainly: Example: 47 pF = 47 pF 4p7 = 4.7 pF Conversions: Common Tolerance Codes:

  4. High Voltage Ceramic Capacitors Type HP/HW/HK Type HD/HE HIGH VOLTAGE / AC USES • The main applications include live line indicators, AC dividers, grading systems for power distribution network, protection for HV switches and power circuit breakers. Coupling, by-passing high frequency circuits also use HV ceramic disc capacitors.

  5. Ceramic capacitors typically come in a fairly flat package, with identification information printed on one side. The table below allows you to cross-reference those codes against actual (nominal) capacitance values.

  6. Capacitor Code Information. This table is designed to provide the value of alphanumeric coded ceramic, mylar and mica capacitors. in general. They come in many sizes, shapes, values and ratings; many different manufacturers worldwide produce them and not all play by the same rules.

  7. Capacitor Codes.doc. Calculating additional capacitor codes. The most common capacitor code uses a first digit, second digit, and multiplier scheme: Example 223J = 22 x 103 pF = 22 nF = .022 μF 151K = 150 pF = .15 nF = .00015 μF.

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