Magnetizing Current

Magnetizing current is the component of current required to establish magnetic flux in an inductive device, such as a transformer, and is essential for understanding its no-load behavior and efficiency. When an alternating voltage is applied to a winding, this current produces magnetomotive force that drives flux through the magnetic core; its magnitude depends on the winding inductance, core reluctance, frequency, and nonlinear effects such as hysteresis and saturation. Engineers analyze magnetizing current to assess transformer excitation, power factor, inrush behavior, core losses, and voltage regulation, supporting the design, testing, and safe operation of electrical machines and power systems.

Magnetizing Current - Related Videos

Education

JoVE Core - Physics

Magnetic Field Of A Current Loop

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2025

Consider a circular loop with a radius a, that carries a current I. The magnetic field due to the current at an arbitrary point P along the axis of the loop can be calculated using the Biot-Savart law. Let axial point P be a distance x from the center of the loop. The magnetic field at P, produced by an infinitesimal current element dl, is directed at an angle θ. The current element and the unit vector along the line joining P are perpendicular at all points on the loop. Substituting this and...

Magnetic Force Between Two Parallel Currents

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2026

Two long, straight, and parallel current-carrying conductors exert a force of equal magnitude on one another. The direction of the force depends on the current direction in the conductors. The force exerted by the magnetic field due to the first conductor over a finite length of the second conductor is given as the product of the current in the second conductor and the vector product of the length vector along the current element and the field due to the first conductor. According to the...

Research

JoVE Journal - Behavior
Free Sample

Simultaneous Transcranial Alternating Current Stimulation and Functional Magnetic Resonance Imaging

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Cited by 18 •

2017

Transcranial alternating current stimulation (tACS) is a promising tool for noninvasive investigation of brain oscillations, though its effects are not completely understood. This article describes a safe and reliable setup for applying tACS simultaneously with functional magnetic resonance imaging, which can increase understanding oscillatory brain function and effects of tACS.

Magnetic Force On A Current-Carrying Conductor

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2023

Moving charges experience a force in a magnetic field. Since the magnetic fields produced by moving charges are proportional to the current, a conductor carrying a current creates a magnetic field around it. Consider a compass placed near a current-carrying wire. The wire experiences a force that aligns the needle of the compass tangentially around the wire. Thus, the current-carrying wire produces concentric circular loops of magnetic field. The magnetic field generated by a wire can be...

Magnetic Force On Current-Carrying Wires: Example

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2025

In a magnetic field, moving charges encounter a force. If a wire contains these moving charges, i.e., if the wire is carrying a current, then a force acts on the wire as well. Consider a pair of flexible leads holding a wire that is 40 cm long and 10 g in weight in a horizontal position. The wire is placed in a constant magnetic field of 0.40 T, as shown in Figure 1(a). Determine the magnitude and direction of the current flowing in the wire needed to remove the tension in the supporting leads.

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