2867002402 Allicdata Electronics
Allicdata Part #:

1934-1035-ND

Manufacturer Part#:

2867002402

Price: $ 0.22
Product Category:

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Manufacturer: Fair-Rite Products Corp.
Short Description: FERRITE CORE MULTI-APERTURE
More Detail: Ferrite Core ID OD Length 7.01mm
DataSheet: 2867002402 datasheet2867002402 Datasheet/PDF
Quantity: 1250
1 +: $ 0.19530
10 +: $ 0.15435
25 +: $ 0.13003
50 +: $ 0.11428
100 +: $ 0.10231
250 +: $ 0.08906
500 +: $ 0.08064
1000 +: $ 0.06861
5000 +: $ 0.06379
Stock 1250Can Ship Immediately
$ 0.22
Specifications
Series: --
Part Status: Active
Material: 67
Length: 7.01mm
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Ferrite Cores – Cables and Wiring is an emerging field in electronics and engineering. It is a combination of technologies that involve the manipulation and integration of ferrite cores with electrical cables and wires to create an efficient and cost effective wiring solution. The ferrite core is a material that is made from iron, nickel, cobalt and other compounds that have magnetic properties. The ferrite core is used as a conductor in electric wiring. This type of material can be shaped into various shapes and sizes for different applications. It has strong magnetic properties and is capable of carrying large amounts of current and providing insulation from environmental forces like rain, snow and wind.

The ferrite cores are further divided into two major categories: standard size ferrite cores and non-standard size ferrite cores. Standard-sized ferrite cores are typically made in a variety of shapes and sizes and are used in applications such as cable connectors and switches. Non-standard sized ferrite cores are more specialized and are usually made to fit specific applications and provide improved protection, insulation and transmission. In some cases, custom ferrite cores are designed for specific applications.

Regular ferrite cores are most often used in common applications, such as induction motors, transformers, heating coils and other electrical or electronic applications. Non-standard ferrite cores are regularly used in computers, x-ray machines, microwaves and other high frequency applications. The strength and flexibility of ferrite core cables makes them invaluable to a variety of applications such as radio frequencies, communications, scientific experiments, computers and more.

The working principle of ferrite cores is based on a basic physical property of electrons. Electrons can be either positive or negative and their physical properties are determined by their direction of rotation. By rotating the direction of flow in a ferrite core, it creates a reactance in the core. This reactance increases with the frequency of the current and can be used to control the amount of current flowing through a circuit. By adjusting the reactance, the required current can be controlled in both directions. The advantages of ferrite cores are that it is cheaper and more efficient than many traditional electrical and electronic components.

Ferrite cores are also used in many types of connectors such as screw terminals and insulation displacement connectors. By utilizing a combination of ferrite and other materials, these connectors can be constructed to provide superior shielding properties and reduce noise from other electrical components. This type of technology is becoming increasingly important in consumer electronics applications such as cell phone technology, home theater systems and so on. Ferrite cores can also be used as protection from electromagnetic radiation, such as in medical equipment.

Ferrite cores have become even more important in recent years due to the emergence of ultra-high temperature superconductors. Ferrite cores are used in some of these materials to reduce the amount of energy needed to power them and make them more efficient. These cores are also used in devices such as antennas, where they act as a filter to reduce the amount of RF (radio frequency) interference. The use of ferrite cores is rapidly growing in various fields and applications due to their efficiency and cost effectiveness. As this technology continues to improve, it is expected to provide solutions for many of today’s problems.

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

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