Physique
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Capacitor Size Calculator.
Calculate the capacitance required for an RC target time constant and its corresponding cutoff.
Saisissez vos valeurs
Les résultats se mettent à jour pendant la saisie.
Results update automatically as you type.
Educational idealized model with every parameter shown; this tool does not size wiring, components, or safety systems.
Use Cases
Design RC timing circuits
Determine the capacitor value needed to achieve a specific time constant for timing applications, such as in oscillators, delays, or pulse generation.
Example: For a 10 kΩ resistor and a 0.1 s time constant, the required capacitance is 10 µF.
Set filter cutoff frequency
Calculate the capacitor size to set the desired cutoff frequency in RC low-pass or high-pass filters for signal processing.
Example: To get a 1 kHz cutoff with a 1 kΩ resistor, you need about 159 nF.
Frequently Asked Questions
- How do I use the capacitor size calculator?
- Enter the resistance in ohms (Ω) and the target time constant in seconds (s). The calculator will compute the required capacitance in farads (F) using the formula C = τ / R, and also display the corresponding cutoff frequency (fc = 1 / (2πRC)).
- What is the relationship between capacitance, resistance, and time constant?
- The RC time constant (τ) is the product of resistance (R) and capacitance (C): τ = R × C. For a given resistance and desired time constant, the required capacitance is C = τ / R. This calculator uses that relationship to find the capacitor size.
- What is the cutoff frequency and how is it calculated?
- The cutoff frequency (fc) is the frequency at which the output power of an RC circuit drops to half its input power (-3 dB point). It is calculated as fc = 1 / (2πRC). This calculator provides it based on the resistance and computed capacitance.
Tips & Common Mistakes
Tips
- Use standard capacitor values close to the calculated result; you may need to combine capacitors in series or parallel to achieve the exact value.
- Ensure the resistance value is in ohms and the time constant in seconds to get capacitance in farads. Convert units if necessary.
- For high-frequency applications, consider parasitic capacitance and inductance that can affect the actual time constant.
- Double-check your target time constant: a larger time constant requires a larger capacitor or higher resistance.
Common Mistakes to Avoid
- Forgetting to convert units, e.g., using milliseconds for time constant without converting to seconds, leading to incorrect capacitance.
- Using the cutoff frequency formula incorrectly: remember it is fc = 1/(2πRC), not 1/(RC).
- Assuming the calculated capacitance is a standard value; always check against available capacitor values.
Last updated: August 13, 2026