- Timing resistor R (Ω)
- 10000Ω
- Timing capacitor C (µF)
- 10µF
0.110000s
Open with these values0.110000s
Result: 0.110000 sOne trigger, one pulse of fixed length, however long the trigger itself lasted. The width is T = 1.1 × R × C: 10 kΩ with 10 µF gives 0.11 s. The 1.1 is ln(3) rounded, because the capacitor starts at zero and runs to two thirds of the supply — the astable circuit uses ln(2) instead.
Held fixed: Timing resistor R (Ω) 10,000.000 Ω.
| Timing capacitor C (µF) (µF) | Result (s) |
|---|---|
| 2.500000 | 0.027500 |
| 5.000000 | 0.055000 |
| 7.500000 | 0.082500 |
| 10.000000Your value | 0.110000 |
| 12.500000 | 0.137500 |
| 15.000000 | 0.165000 |
| 17.500000 | 0.192500 |
| 20.000000 | 0.220000 |
0.110000s
Open with these values0.051700s
Open with these values0.000110s
Open with these valuesT = 1.1 × R × C
| R (Ω), C (µF) | Same pulse in ms | Pulse width (s) |
|---|---|---|
| 1000, 0.1 | 0.11 ms | 0.000110 |
| 4700, 0.47 | 2.43 ms | 0.002430 |
| 47000, 1 | 51.7 ms | 0.051700 |
| 10000, 10 | 110 ms | 0.110000 |
| 220000, 2.2 | 532.4 ms | 0.532400 |
| 100000, 10 | 1100 ms | 1.100000 |
Use T = 1.1 × R × C, with R in ohms and C in farads. For R = 10 kΩ and C = 10 µF that is 0.11 s, or 110 ms. Enter the capacitance in microfarads here and the conversion is done for you.
Because the voltage swing is different. In one-shot mode the capacitor starts at zero and charges until it reaches two thirds of the supply, which takes ln(3) time constants; the free-running astable circuit only swings between one third and two thirds, which is ln(2). Same chip, different starting point.
No — ln(3) is 1.098612, and 1.1 is the two-digit form that datasheets and textbooks print. The difference is about 0.13 %, far smaller than the tolerance of any real resistor or electrolytic capacitor. This calculator keeps 1.1 so its numbers match published 555 tables.
The output rests low until a trigger arrives, then goes high for a fixed time and falls back. One trigger produces one timed pulse, no matter how long the trigger itself lasted. It is used for timed lights, button debouncers and turning a momentary press into a fixed delay.
The width is linear in both R and C, so raising either value lengthens the pulse. A 10 µF capacitor with 100 kΩ gives 1.1 s; the same capacitor with 1 kΩ gives 11 ms. A trimmer for R lets you dial the timing in.
Information, not professional advice.
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