Inductor Voltage Spike
Inductor voltage spike is the sharp rise in voltage that occurs across an inductor when the current flowing through it is suddenly interrupted or changed rapidly. This phenomenon is due to the fundamental property of an inductor, which resists changes in current. Inductors store energy in the form of a magnetic field when current passes through them. If the current through the inductor changes very quickly (such as when a switch is opened or a circuit is interrupted), the rate of change of current becomes very large, and as a result, the voltage across the inductor can spike dramatically.
Inductor Voltage Spike Formula |
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\( V \;=\; L \cdot \dfrac{ \Delta I }{ \Delta t } \) (Inductor Voltage Spike) \( L \;=\; \dfrac{ V \cdot \Delta t }{ \Delta I }\) \( \Delta I \;=\; \dfrac{ V \cdot \Delta t }{ L }\) \( \Delta t \;=\; \dfrac{ L \cdot \Delta I }{ V }\) |
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| Symbol | English | Metric |
| \( V \) = Inductor Voltage Spike | \(V\) | \(V\) |
| \( L \) = Inductance | \(H\) | \(H\) |
| \( \Delta I \) = Current Change | \(I\) | \(I\) |
| \( \Delta t \) = Time Change | \(sec\) | \(s\) |
Key Points about Inductor Voltage Spike

