555 astable: R1=4.7kΩ, R2=4.7kΩ, C=100nF → 1.023 kHz

Worked answer for a 555 timer free-running (astable) with R1=4.7kΩ, R2=4.7kΩ and C=100nF.

Oscillates at 1.023 kHz period 977.338 µs · duty 66.7%
R14.7kΩ
R24.7kΩ
C100nF
Frequency f = 1/(ln2·(R1+2R2)·C)1.023 kHz
Period T = 1/f977.338 µs
t_high = ln2·(R1+R2)·C651.558 µs
t_low = ln2·R2·C325.779 µs
Duty cycle = t_high / T66.7%

In the classic two-resistor astable, the cap charges through R1+R2 but discharges only through R2, so the duty cycle is always > 50%. To approach a 50% square wave, add a diode across R2 so charging bypasses it.

Different values? Change R1, R2 or C in the interactive tool:

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Read more: NE555 pinout, specs & circuits · NE555 pinout reference

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Disclaimer: These are ideal values from the textbook astable formula. Real capacitor tolerance and leakage shift the actual frequency — trim by measurement for anything time-critical.

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