
Allicdata Part #: | 1934-1304-ND |
Manufacturer Part#: |
2867000102 |
Price: | $ 0.71 |
Product Category: | Filters |
Manufacturer: | Fair-Rite Products Corp. |
Short Description: | FERRITE CORE MULTI-APERTURE |
More Detail: | Ferrite Core ID OD Length 13.34mm |
DataSheet: | ![]() |
Quantity: | 1984 |
1 +: | $ 0.64260 |
10 +: | $ 0.57834 |
25 +: | $ 0.42840 |
50 +: | $ 0.40698 |
100 +: | $ 0.36414 |
250 +: | $ 0.34272 |
500 +: | $ 0.32130 |
1000 +: | $ 0.27846 |
5000 +: | $ 0.26775 |
Series: | -- |
Part Status: | Active |
Material: | 67 |
Length: | 13.34mm |
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Ferrite cores are shapes consisting of high-magnetic materials such as iron, nickel and zinc. These materials are used to create electrical circuits, also known as inductors. Ferrite cores are commonly found in wiring applications, such as coaxial cables, namely,2867000102.
A Ferrite core is composed of two electric conductors wrapped around a core material. The ferrite core material\'s ability to conduct electricity and limit current is determined by its permeability, inductance and resistivity.
In a coaxial cable equipped with ferrite cores, the cores act as an inductor, providing a connection from the electrical power source, controlling current flow and preventing any interference from external signals. The two conductors are insulated along the entire length of the cable and a core material is placed in the center to create the path for current to flow.
The application of ferrite cores in cables is quite advantageous as it increases the carrying capacity of the cable with a minimal increase in cable diameter. The process of current flow inside a cable, however, is not the same as inside a wire. In order to achieve the desired current flow and signal attenuation levels, the properties of the ferrite cores must be taken into account.
The working principle of a ferrite core is based on the Faraday\'s Law of Induction. When current starts to flow through the ferrite core, a magnetic field is generated. This field interacts with the magnetic cores and creates a dynamic inductance. As the current flow increases, the inductance also increases. On the other hand, as the current flow decreases, the inductance decreases. This is the main principle that determines the working of ferrite cores.
It is important to note that the size and shape of the ferrite core material has a significant effect on the performance of the cable. The amount of inductance generated by the core material largely depends on its size. Generally, the size of the ferrite core should be chosen such that the inductance generated by the core reflects the current carrying capacity required by the cable.
Ferrite cores are used in many different types of wiring applications and these applications will vary depending on the amount of current flow required and the type of material used. 2867000102 Cable is an example of an application where ferrite cores are used to increase the current carrying capacity. The core material used for this type of cable is usually Zn-Ni, which is a combination of iron, nickel and zinc.
In conclusion, ferrite cores are widely used in wiring applications such as cables and are used to control current flow and attenuate external interference. Their ability to do this is based on their permeability, inductance and resistivity. The core material size and shape play an important role in determining the performance of the cable.
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