228 capacitor value
0.22 pF
0.22 pF · 0.0002 nF · 0 µF
| Marked code | 228 |
| Picofarads | 0.22 pF |
| Nanofarads | 0.0002 nF |
| Microfarads | 0 µF |
| Farads | 2.20e-13 F |
Reading the code
The three digits are not a part number. The first two are the value in picofarads and the third says what to do with them:
22 × 0.01 = 0.22 pF
The last digit here is 8, which is one of the two exceptions. Eight and nine do not mean 10⁸ and 10⁹ — they mean × 0.01 and × 0.1, and they exist so that values below ten picofarads can be written in the same three characters. Read literally, 228 would be 22 × 108 = 2,200 µF, which is not a ceramic capacitor and not what is in your hand.
What 0.22 pF does at frequency
A capacitor's opposition to a signal is its reactance, 1 ÷ (2πfC), and it falls as the frequency rises. Over the range of frequencies a circuit can put across it, a 0.22 pF part covers several orders of magnitude:
| Frequency | Reactance |
|---|---|
| 50 Hz — mains | 14.47 GΩ |
| 1 kHz — audio | 723.43 MΩ |
| 100 kHz — switching | 7.23 MΩ |
| 10 MHz — RF | 72.34 kΩ |
Ten times the frequency is a tenth of the reactance, every time — which is why choosing a decoupling capacitor is really choosing the frequency band you want it to be low-impedance across, and why boards carry several sizes in parallel rather than one large one.
The letter after the number
A code like 228K carries a tolerance letter. It is not part of the value:
| Letter | Tolerance | 0.22 pF means |
|---|---|---|
228J | ±5% | 0.21 pF to 0.23 pF |
228K | ±10% | 0.2 pF to 0.24 pF |
228M | ±20% | 0.18 pF to 0.26 pF |
228Z | +80% / −20% | 0.18 pF to 0.4 pF |
A Z is worth knowing about. +80%/−20% is a real tolerance on cheap high-permittivity ceramics, and it means a part marked 228Z can legitimately be anything from 0.18 pF to 0.4 pF. Those go in decoupling positions where only the rough size matters, never in a timing or filter position.
Where 0.22 pF turns up
undefined
Frequently asked questions
What is the value of a 228 capacitor?
0.22 pF — 0.22 pF · 0.0002 nF · 0 µF. The first two digits are the value in picofarads and the third is how many zeros follow, so 228 is 22 followed by a divide rather than a multiply: 22 × 0.01 = 0.22 pF.
What is a 228 capacitor in µF?
0 µF. Going from picofarads to microfarads is six decimal places, which is where most of the confusion with these codes comes from — 0.22 pF, 0.0002 nF and 0 µF are the same capacitor written three ways.
What does the letter after 228 mean?
Tolerance. 228K is ±10%, 228J is ±5% and 228M is ±20% — so a 228K is anywhere from 0.2 pF to 0.24 pF and still in specification. A Z means +80%/−20%, which is not a mistake: some ceramic dielectrics really are that loose.
What is the impedance of a 228 capacitor at 1 kHz?
723.43 MΩ. Reactance is 1 ÷ (2πfC), so it falls as the frequency rises: the same part is 7.23 MΩ at 100 kHz and 72.34 kΩ at 10 MHz.
Nearby codes
- 278 capacitor — 0.27 pF
- 338 capacitor — 0.33 pF
- 398 capacitor — 0.39 pF
- 478 capacitor — 0.47 pF
- 568 capacitor — 0.56 pF
- 688 capacitor — 0.68 pF
- 828 capacitor — 0.82 pF
- 109 capacitor — 1 pF
- 129 capacitor — 1.2 pF
- 159 capacitor — 1.5 pF