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  1. The following formulas and equations can be used to calculate the inductance and related quantities of different shapes of inductors as follow. Table of Contents. Inductance of Inductor: Voltage across Inductor: Current of the Inductor: Reactance of the Inductor: Quality Factor of Inductor: Dissipation Factor of Inductor:

  2. An inductor is a passive component that is used in most power electronic circuits to store energy. Learn more about inductors, their types, the working principle and more.

  3. Apr 22, 2024 · Inductor Formula. The voltage (V) across an inductor is directly proportional to the rate of change of current (I) flowing through it: V(t) = L dI(t)/dt. Where: V(t) is the inductive voltage at time t; L is the inductor inductance; dI(t)/dt denotes the speed of change of current over time ‘t’ Inductor Reactance

  4. Oct 29, 2021 · An inductor (also known as an electrical inductor) is defined as a two-terminal passive electrical element that stores energy in the form of a magnetic field when electric current flows through it. It is also called a coil, chokes, or reactor. An inductor is simply a coil of wire.

  5. To calculate the inductance of a coil or inductor, follow these steps: Determine the number of turns (N) in the coil. Identify the core material and find its relative permeability (μr). For air-core coils or coils with non-magnetic materials, μr is approximately equal to 1.

  6. Inductance Formula With Solved Examples. The inductance formula calculates the inductance of the inductor. This article describes the inductance formula and how to calculate inductance. When electric current flows through the inductor, a magnetic field is produced around it.

  7. Dec 18, 2023 · Learn Inductor Basics - Types of Inductor, How Inductor Works, Formula, Symbol, Unit, Uses, Function Explained in Detail.

  8. Inductor Voltage and Current Relationship. The instantaneous voltage drop across an inductor is directly proportional to the rate of change of the current passing through the inductor. The mathematical relationship is given by v = L (di/dt). Inductors do not have a stable “ resistance ” as conductors do.

  9. Induction Motors. Inductor: An inductor is a two terminal passive electrical component that store energy in a magnetic field.

  10. Self Induction of Inductor Formula. We can say that an inductor is a looped conductor wire wrapped around a core. This device can store energy in the form of a magnetic field. We can increase the inductance by increasing its loops or turns of the wire for the coil or inductor.