28R1128-200 Allicdata Electronics
Allicdata Part #:

28R1128-200-ND

Manufacturer Part#:

28R1128-200

Price: $ 0.16
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Manufacturer: Laird-Signal Integrity Products
Short Description: FERRITE CORE 145 OHM SOLID
More Detail: Solid Free Hanging Ferrite Core 145 Ohm @ 100MHz I...
DataSheet: 28R1128-200 datasheet28R1128-200 Datasheet/PDF
Quantity: 1000
3780 +: $ 0.14389
Stock 1000Can Ship Immediately
$ 0.16
Specifications
Series: 28
Part Status: Active
Type: Flat
Design: Solid
Impedance @ Frequency: 145 Ohm @ 100MHz
Material: 28
Inner Dimension: 0.945" W x 0.031" H (24.00mm x 0.80mm)
Outer Dimension: 1.125" W x 0.212" H (28.58mm x 5.38mm)
Ratings: --
Mounting Type: Free Hanging
Length: 0.551" (14.00mm)
Description

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Introduction

Ferrite Cores, also known as ferrite beads or ferrite rods, have been used since the early 1950s to improve the performance of electronic circuits. Ferrite Cores are cylindrically shaped cores of ferrite which are used to conduct electrical current through them without generating large losses or creating interference. These cores are typically wound with electrical wire before being integrated into a system. Ferrite Cores are also used in many high-end applications including communication and data transmission.

28R1128-200 Application Field and Working Principle

The 28R1128-200 is a type of ferrite core designed for use in high voltage and high current applications. This type of ferrite core is commonly used in the telecommunications industry, due to its ability to carry high amperage with minimal power loss. The 28R1128-200 ferrite core features a low resistance and high permeability that helps to minimize losses when operating at high voltages and frequencies.The 28R1128-200 ferrite core works by passing an electrical current through it which induces a magnetic field that interacts with the other components of the circuit. This results in the production of an alternating magnetic field which in turn generates an electric field. This electric field has the ability to reduce the impedance of the coil, which can help reduce power losses and improve overall performance.The 28R1128-200 ferrite core is typically wound with an insulated copper wire and then wound around a dielectric material such as mica. This insulation helps to prevent any eddy current losses that may occur. The winding and insulation process of the 28R1128-200 ferrite core is critical for efficient operation.

Cables and Wiring

Cables and wiring are essential components of any electronic system that utilizes a ferrite core, such as the 28R1128-200. It is important to ensure the appropriate type of cable and wiring is used when connecting the ferrite core to the other components. The type of cable and wiring will depend on the type of circuitry and application in which the ferrite core is being used.The type of cable and wiring needed to connect the ferrite core to other components is usually determined by the intended purpose and requirements of the application. In most cases, a shielded cable should be used, as this helps to minimize interference.The 28R1128-200 ferrite core is typically connected to additional components, such as transistors, amplifiers, resistors, and diodes, using special connectors and cable assemblies. These connectors and cable assemblies help to protect the ferrite core from any potential damage and provide a secure connection. It is important to ensure the connectors and cable assembly used are suitable for the intended application.

Conclusion

The 28R1128-200 ferrite core is an ideal solution for high voltage and high current applications such as those often found in the telecommunications industry. This type of ferrite core works by using an alternating magnetic field to reduce the impedance of the coil, helping to maximize performance and minimize power losses. Cables and wiring are also essential components of any system utilizing a ferrite core, as the appropriate type of cables and wiring must be used to ensure the ferrite core is correctly connected to other components.

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

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