- First capacitance C1 (F)
- 2F
- Second capacitance C2 (F)
- 3F
5.000000F
Open with these values5.000000F
Result: 5.000000 FCapacitors in parallel add: 2 F beside 3 F make 5 F, always more than either part. That is the reverse of resistors, where parallel lowers the total, and the reverse of capacitors in series, which come out smaller than either one. Enter both values in farads — 470 µF is 0.00047 F.
Held fixed: First capacitance C1 (F) 2.000000000000 F.
| Second capacitance C2 (F) (F) | Result (F) |
|---|---|
| 1.000000000000 | 3.000000 |
| 2.000000000000 | 4.000000 |
| 3.000000000000Your value | 5.000000 |
| 4.000000000000 | 6.000000 |
| 5.000000000000 | 7.000000 |
| 6.000000000000 | 8.000000 |
5.000000F
Open with these values0.000320F
Open with these values6.900000F
Open with these valuesC = C1 + C2
| C1 (F), C2 (F) | What it is | Total (F) |
|---|---|---|
| 0.0001, 0.00022 | 100 µF beside 220 µF | 0.00032 |
| 1, 1 | two matched parts | 2 |
| 2, 3 | the default pair | 5 |
| 4.7, 2.2 | two E12 values | 6.9 |
| 10, 5 | an unequal pair | 15 |
| 50, 50 | double one of them | 100 |
They simply add: C = C1 + C2. For 2 F and 3 F that is 5 F. Capacitors are in parallel when both leads connect to the same two nodes, so the same voltage sits across each one.
Connecting capacitors side by side effectively combines their plate areas, and a larger plate area holds more charge at the same voltage. Each part adds its own charge-storing surface. The total is therefore always above the larger of the two.
The total is exactly double one of them, because C plus C is 2C. Two 1 F capacitors give 2 F, two 10 µF capacitors give 20 µF. It is the easy way to build a value twice as large from matched parts.
It is the opposite. In parallel you add the values and the total grows; in series the total falls below the smaller capacitor. Note that this is the reverse of resistors, where series adds and parallel reduces.
Adding bulk capacitance to smooth a power supply, building a precise value from standard parts on hand, and pairing a large electrolytic with a small ceramic to filter both low and high frequency noise. Any time several capacitors share the same two nodes, their values add.
Information, not professional advice.
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