
Allicdata Part #: | 48283-057LF-ND |
Manufacturer Part#: |
48283-057LF |
Price: | $ 0.40 |
Product Category: | Uncategorized |
Manufacturer: | Amphenol FCI |
Short Description: | BERGPOST |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
25000 +: | $ 0.35905 |
Series: | * |
Part Status: | Active |
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The 48283-057LF is a radial-leaded 3-terminal fixed-value inductor. It has application in a variety of fields, and its working principle is relatively simple.
Radial Inductors, also commonly known as iron core inductors, use an iron core to store energy. This energy then causes an induced current to flow through the windings. This current is proportional to the rate of change of current through the winding. In other words, as current flows through the winding, a voltage is created which causes an opposing voltage through the inductor.
The 48283-057LF\'s application field is extensive. Its primary purpose is to reduce noise and interference in electronic systems, where it is often placed in parallel to a capacitor. As such, it is widely used in computers and televisions, where it helps maintain the purity of the signal. It is also used in power supplies as a choke, where it regulates the input and output currents, and helps reduce harmonics. Additionally, it is used in amplifiers, where it helps to increase the gain of an amplifier. Finally, it can be used in signal transmission lines to limit the transfer of signal.
Charting an inductor\'s behavior provides insight to its working principle. When a constant voltage is applied, the current through the inductor steadily increases until it reaches a steady-state current. This steady-state current is dependent on the resistor in parallel with the inductor. When the voltage is removed, the energy stored in the inductor\'s magnetic field is released, causing the current to decay slowly.
For the 48283-057LF, this steady-state current can be calculated by taking the ratio of the inductor\'s inductance to the resistance of the inductor in parallel with the load. This ratio is multiplied by the applied voltage to calculate the steady-state current. The 48283-057LF has an inductance of 4.7 μH and a resistance of 18.5 mΩ, so the steady-state current can be calculated by taking the ratio of 4.7 μH/18.5 mΩ and multiplying it by the applied voltage.
The 48283-057LF is an incredibly useful and versatile inductor. It is used in a variety of applications where it helps reduce interference and noise, as well as regulate current. Its working principle is relatively simple, and can be easily understood from its charted behavior. All in all, the 48283-057LF is an indispensable part of any electronic system.
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