How to use this tool
- Enter input voltage, desired output voltage.
- Select Calculate to view the result.
- Check the method and assumptions below before using the result.
The method, explained
For an ideal boost converter in continuous conduction, D = 1−Vin/Vout.
Using input voltage = 5 V, desired output voltage = 12 V, the result is 58.3333333 %. Change these example inputs to match your task; use the method above to check each step.
Understanding your result
Ideal continuous conduction; high duty cycles may be impractical because losses and component stresses rise.
What to keep in mind
Ideal continuous conduction; high duty cycles may be impractical because losses and component stresses rise. Ideal-component calculation for study and estimation. It does not select safe wiring, protective devices or component ratings for an installation.
Common questions
How do I use this boost converter duty cycle calculator?
Estimate the ideal duty cycle for a step-up DC converter. Enter input voltage in V, desired output voltage in V. The starting example is editable; use values for the same system or project.
Which assumptions affect this result?
Ideal continuous conduction; high duty cycles may be impractical because losses and component stresses rise.
Methodology maintained by ClarityKit. How these tools are built and checked.