28B0736-0 Allicdata Electronics
Allicdata Part #:

28B0736-0-ND

Manufacturer Part#:

28B0736-0

Price: $ 2.72
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Manufacturer: Leader Tech Inc.
Short Description: FERRITE 176OHM SOLID 10.90MM
More Detail: Solid Cable Tie Ferrite Core 176 Ohm @ 100MHz ID 0...
DataSheet: 28B0736-0 datasheet28B0736-0 Datasheet/PDF
Quantity: 1000
100 +: $ 2.46645
Stock 1000Can Ship Immediately
$ 2.72
Specifications
Series: --
Part Status: Active
Type: Round
Design: Solid
Impedance @ Frequency: 176 Ohm @ 100MHz
Material: 28
Inner Dimension: 0.429" Dia (10.90mm)
Outer Dimension: 0.736" Dia (18.70mm)
Ratings: --
Mounting Type: Cable Tie
Length: 1.126" (28.60mm)
Description

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Ferrite CoreFerrite cores are one of the most versatile components used for electrical and magnetic purpose, in a variety of applications. Ferrite core material is made of either manganese or nickel. When used with high frequencies and higher voltages, the ferrite core material has the ability to absorb stray electromagnetic energy. Ferrite cores also have excellent heat resistance and resistance to mechanical shock and vibration. The use of ferrite cores can often reduce the bulk and cost of incorporating inductance into electrical devices, making them an attractive component for many electronic applications.In particular, 28B0736-0 ferrite cores are cylindrical in shape and made of ferrite material. These ferrite core cores offer high heat resistance, low-profile design, and low-noise characteristics. The 28B0736-0 ferrite cores are widely used in RF isolation and high-frequency signal applications, such as cable television, cell phones, automotives, handheld digital devices, and other consumer electronics. The 28B0736-0 ferrite cores\' inductance values are nominal and depend on the application requirements.Application FieldFerrite cores have multiple applications and are highly used in many commercial and industrial sectors. Their most common application is for wound coils, transformers, and power supplies. Other common applications include noise frequency reduction, anti-interference, radio frequency shielding, signal coupling and decoupling, and harmonic control in high power drives.The 28B0736-0 ferrite core makes for an excellent choice for RF cable television isolation applications. It helps reduce interference from incoming and outgoing signals from the cable. Another application where the 28B0736-0 ferrite core can be used is to reduce the high frequency crosstalk in multiple circuit board designs. This type of ferrite core can also help to reduce susceptibility of computer systems from any transient effects.The 28B0736-0 ferrite core can also be used for high frequency signal applications such cell phones and automotive applications. These require the use of a ferrite core for efficient signal transmission. A ferrite core also helps to reduce any spurious signals during transmission. In addition, these ferrite cores can be used for sensitive analog circuit applications, such as precision oscillators, active filters, and amplifier integrated circuits (IC).Working PrincipleWhen a ferrite core is used in an electronic circuit, it works to reduce electromagnetic interference and electrical noise. The ferrite core helps to absorb the noise by acting as a shield that blocks out unwanted signals and prevents them from entering the circuit.The 28B0736-0 ferrite core works in the same manner, absorbing stray electromagnetic energy and acting as a shield. The core is made of two concentric cylinders of ferrite material with a gap in between. The gap between the two cylinders helps to absorb the energy so it does not enter the circuitry. The core is also designed to minimize any inductance values associated with the gap, thus reducing any interference from outside signals.ConclusionFerrite cores are a popular and versatile component used in several industrial and commercial sectors. Their high heat resistance and ability to reduce noise interference make them an attractive choice for many electronic applications. The 28B0736-0 ferrite cores are an excellent choice for RF isolation, high-frequency signal applications, and other sensitive analog circuit applications. These cores can help to reduce the interference from incoming and outgoing signals, and also help to reduce the susceptibility of a system from transient effects.

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