CE83B0394 Allicdata Electronics
Allicdata Part #:

CE83B0394-ND

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CE83B0394

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Manufacturer: Leader Tech Inc.
Short Description: FERRITE CORE 130OHM SOLID 4.75MM
More Detail: Solid Free Hanging Ferrite Core 130 Ohm @ 100MHz I...
DataSheet: CE83B0394 datasheetCE83B0394 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Type: Round
Design: Solid
Impedance @ Frequency: 130 Ohm @ 100MHz
Material: CE83
Inner Dimension: 0.187" Dia (4.75mm)
Outer Dimension: 0.394" Dia (10.00mm)
Ratings: --
Mounting Type: Free Hanging
Length: 0.787" (20.00mm)
Description

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Ferrite Cores are cables and wiring components that are designed to provide efficient pathways for both electricity and data signals. A ferrite core is made up of a ferromagnetic material, such as iron, nickel or cobalt as the base material. The fluxes of alternating current that pass through the core generate an induced field, which helps protect against interference from other sources of current. The most common type of ferrite core is the CE83B0394, which is a very widely used part in the communications, electronics, and power industries. The CE83B0394 is a three-layer ferrite core that provides excellent shielding, signal isolation, and high-frequency filtering.

The ferrite core is designed to contain the field in an enclosed area. This helps to protect any nearby electronic components from the effects of EMF interference. To further improve the shielding of the core, various types of shielding are applied. These shielding materials can vary depending on the type and size of the core and the application. They can include layers of aluminum, copper, nickel, and tin foil, as well as special magnetic properties for added protection.

The application of the CE83B0394 ferrite core typically involves the use of RF cables and the containment of noisy and potentially damaging EMF, or electromagnetic field, signals. RF cables are special cables designed to be used in environments with high levels of electromagnetic interference, primarily from radiofrequency and other sources of radiation. One of the primary functions of the CE83B0394 in RF cable applications is to filter out these interfering signals, allowing the cables to transmit data cleanly and efficiently.

In addition to its use in RF cable applications, the CE83B0394 ferrite core can also be used in other electrical applications. For example, it can be used in voltage converters to provide signal isolation. By separating the high and low voltage signals from each other, the core can help to protect the sensitive components within the voltage converter. Additionally, the core also helps to reduce the noise and ripple of the output signal.

In addition to its usage in electrical applications, the CE83B0394 ferrite core can also be used in telecommunications. Here it is used to help control the flow of signals and reduce noise. By controlling the signals, the core can help to improve the quality of voice and data transmission. The core works by absorbing interference and controlling electromagnetic radiation. This helps to reduce the amount of wasted energy and can improve the overall efficiency of the communications system.

The working principle of the CE83B0394 ferrite core is that it induces a high inductive reactance barrier around it when AC magnetic fluxes pass through the core. The higher the inductive reactance barrier, the more efficient the core is at eliminating or reducing EMF interference. The higher the inductive reactance barrier, the better the overall protection offered with regard to distortion, noise and other interruptions in signals.

The CE83B0394 ferrite core is one of the most widely used parts in the communications, electronics, and power industries. It provides excellent shielding, signal isolation, and high-frequency filtering. Its use is primarily in the containment of noisy and potentially damaging EMF, or electromagnetic fields, signals. It is also used in voltage converters to provide signal isolation and help to reduce noise and ripple. Additionally, it can also be used in telecommunications to help control the flow of signals and reduce noise. The working principle of the CE83B0394 involves inducing a high inductive reactance barrier when AC magnetic fluxes pass through the core.

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

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