LFB290190-000 Allicdata Electronics
Allicdata Part #:

240-2286-ND

Manufacturer Part#:

LFB290190-000

Price: $ 1.04
Product Category:

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Manufacturer: Laird-Signal Integrity Products
Short Description: FERRITE CORE 22 OHM SOLID
More Detail: Solid Free Hanging Ferrite Core 22 Ohm @ 5MHz ID 0...
DataSheet: LFB290190-000 datasheetLFB290190-000 Datasheet/PDF
Quantity: 2383
1 +: $ 0.93870
10 +: $ 0.81081
25 +: $ 0.61589
50 +: $ 0.58351
100 +: $ 0.51874
250 +: $ 0.48631
500 +: $ 0.45388
1000 +: $ 0.41659
5000 +: $ 0.40525
Stock 2383Can Ship Immediately
$ 1.04
Specifications
Length: 0.599" (15.21mm)
Series: LF
Part Status: Active
Type: Round
Design: Solid
Impedance @ Frequency: 22 Ohm @ 5MHz
Material: LF
Inner Dimension: 0.750" Dia (19.05mm)
Outer Dimension: 1.141" Dia (28.98mm)
Ratings: --
Mounting Type: Free Hanging
Description

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Ferrite Cores - Cables and Wiring is a popular application field of a low frequency magnetic core, LFB290190-000. Ferrite cores come in a variety of shapes and sizes, yet this particular type is used almost exclusively for the material itself, as well as its function.

LFB290190-000 is a special type of ferrite core that is made using ferrite material with a nominal magnetic flux density of 5.8 T (Tesla) at a frequency range of 50 Hz to 10 kHz. This type of core is also known as a low-frequency transformer core because it is specially designed to transform signals from one frequency to another. This process is known as frequency conversion and is often used for applications such as audio frequency transformers, or to provide a uniform signal for digital processing. The LFB290190-000 is designed to be used in this type of application.

The main working principle behind a ferrite core is based on Faraday’s Law. This law is an expression of the relationship between a magnetic field and current flowing through a wire. According to Faraday’s law, when a current flows through a coil of wire, an opposing magnetic field is generated. This magnetic field causes the ferrite core material to become magnetized, creating an effective transformer. In this way, a current flowing through a wire produces a magnetic field, which in turn is used to produce a current in a different wire, with a different frequency.

The use of ferrite cores is most often seen in products such as transformers, and electronic ballast. When used in a transformer, the ferrite core forms the basis of the core, with two sets of coils used to pass current through the core in opposite directions. This current flow results in a magnetic field, which is then used to induce current in the second winding. When used to produce a current in an electronic ballast, the ferrite core is usually wound with an inductor in order to control the flow of current as well as the frequency of the current. This allows the ballast to be adjusted depending on the needs of the user.

The use of a ferrite core in this type of application is actually quite common due to its low cost, high efficiency and ease of installation. This is why it is not surprising to find LFB290190-000 ferrite cores in many consumer electronics, industrial machines and even medical devices.

At the same time, the LFB290190-000 ferrite core is also known for its ability to provide a high level of insulation from magnetic fields, which makes it ideal for use in computer systems, as well as in any other device that needs to be protected from magnetic interference. This is especially helpful for applications such as Shielded Twisted Pair cables, which help to prevent cross-talk and signal interference between devices. This is why ferrite cores are often used as part of the shielding of a signal, and why LFB290190-000 ferrite cores are often found in electronic systems that require high levels of shielding.

In short, the LFB290190-000 ferrite core is an ideal solution for those needing a low-cost, high-efficiency, and easy to install magnetic core material for applications such as transformers, electronic ballasts, and shielded cables. The core’s magnetizable material and Faraday’s law help to make it one of the most popular materials in the industry, and its ability to provide high levels of insulation makes it an indispensable tool for modern devices.

The specific data is subject to PDF, and the above content is for reference

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