Allicdata Part #: | 28B0590-200-ND |
Manufacturer Part#: |
28B0590-200 |
Price: | $ 0.21 |
Product Category: | Filters |
Manufacturer: | Laird-Signal Integrity Products |
Short Description: | FERRITE CORE SOLID |
More Detail: | Solid Ferrite Core |
DataSheet: | 28B0590-200 Datasheet/PDF |
Quantity: | 1000 |
2640 +: | $ 0.18902 |
Specifications
Series: | 28 |
Part Status: | Active |
Type: | Round |
Design: | Solid |
Impedance @ Frequency: | -- |
Material: | 28 |
Inner Dimension: | -- |
Outer Dimension: | -- |
Ratings: | -- |
Mounting Type: | -- |
Length: | -- |
Description
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Ferrite Cores - Cables and Wiring covers a wide range of applications in various fields, including military, automotive, communications, and industrial. One of the most widely used materials in this category are 28B0590-200 ferrite cores. These cores are often used for applications like signal suppression, pulse shaping, shielding, and EMI reduction.
The 28B0590-200 ferrite core is a small structure consisting of fine iron particles embedded in a ceramic. The construction of ferrite cores, including the 28B0590-200, give them unique electrical properties that make them useful for various applications. A ferrite core acts like an inductor, allowing it to store electrical energy and also affect the frequency of signals travelling through them.
Ferrite cores can be used in a variety of ways, depending on the specific application at hand. To better understand the working principle of the 28B0590-200, let’s look at one of the most common uses: signal suppression.
When a signal travelling through a conductor meets a ferrite core, the flow of electricity is diverted, or inhibited, through the core. By doing this, the signal is changed in certain ways that make it less powerful. This is what makes ferrite cores useful for signal suppression. The 28B0590-200 ferrite core is especially suited for this application due to its construction, which is designed to reduce high-frequency signals while still allowing low-frequency ones to pass.
In addition to signal suppression, 28B0590-200 ferrite cores are also employed for pulse shaping, shieldin, and EMI reduction. Pulse shaping involves altering the shape of high-frequency electrical pulses, which are used for communication and other applications. The shape of the pulses can be changed by sending them through a 28B0590-200 ferrite core, as the core will divert the signal in certain ways. Shielding is a process of creating an electric barrier around an area to protect it from external interference. Ferrite cores can be used to create such a barrier, as the magnetic properties of the core will prevent electrical signals from entering the area. Finally, EMI reduction involves lessening the amount of interference that can interfere with conducting signals, and 28B0590-200 cores are ideal for this application due to their construction.
In conclusion, the 28B0590-200 ferrite core is a versatile material used for many different applications in a variety of fields. Its construction lets it act like an inductor, which makes it useful for signal suppression, pulse shaping, shielding, and EMI reduction. Thanks to its flexibility and wide range of applications, the 28B0590-200 is one of the most popular ferrite cores available.
The 28B0590-200 ferrite core is a small structure consisting of fine iron particles embedded in a ceramic. The construction of ferrite cores, including the 28B0590-200, give them unique electrical properties that make them useful for various applications. A ferrite core acts like an inductor, allowing it to store electrical energy and also affect the frequency of signals travelling through them.
Ferrite cores can be used in a variety of ways, depending on the specific application at hand. To better understand the working principle of the 28B0590-200, let’s look at one of the most common uses: signal suppression.
When a signal travelling through a conductor meets a ferrite core, the flow of electricity is diverted, or inhibited, through the core. By doing this, the signal is changed in certain ways that make it less powerful. This is what makes ferrite cores useful for signal suppression. The 28B0590-200 ferrite core is especially suited for this application due to its construction, which is designed to reduce high-frequency signals while still allowing low-frequency ones to pass.
In addition to signal suppression, 28B0590-200 ferrite cores are also employed for pulse shaping, shieldin, and EMI reduction. Pulse shaping involves altering the shape of high-frequency electrical pulses, which are used for communication and other applications. The shape of the pulses can be changed by sending them through a 28B0590-200 ferrite core, as the core will divert the signal in certain ways. Shielding is a process of creating an electric barrier around an area to protect it from external interference. Ferrite cores can be used to create such a barrier, as the magnetic properties of the core will prevent electrical signals from entering the area. Finally, EMI reduction involves lessening the amount of interference that can interfere with conducting signals, and 28B0590-200 cores are ideal for this application due to their construction.
In conclusion, the 28B0590-200 ferrite core is a versatile material used for many different applications in a variety of fields. Its construction lets it act like an inductor, which makes it useful for signal suppression, pulse shaping, shielding, and EMI reduction. Thanks to its flexibility and wide range of applications, the 28B0590-200 is one of the most popular ferrite cores available.
The specific data is subject to PDF, and the above content is for reference
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