High-Frequency Ferrite Transformer Core, Model P47EE19

Description

 

COST PER PIECE

The P47EE19 is a ferrite core, a type of magnetic core made of ferrite, which is used in electronic components such as transformers and inductors. Ferrite cores are widely chosen for their magnetic properties, particularly in high-frequency applications.

  1. Material (Ferrite): Ferrite cores are made from a class of ceramic, ferromagnetic material composed of iron oxides combined with nickel, zinc, and/or manganese compounds. They are characterized by their high electrical resistivity and substantial magnetic permeability, which makes them efficient at preventing eddy current losses at high frequencies.

  2. Core Type (P47EE19): The designation 'P47EE19' specifies a particular size and shape of the ferrite core. These specifications are important as they determine the core's inductance, maximum current capacity, and the type of applications it is suitable for.

  3. Applications: Ferrite cores like the P47EE19 are commonly used in transformers, inductors, and other electromagnetic components within electronic devices. They are particularly effective in power supplies, RF applications, and for noise suppression purposes.

  4. Efficiency in High-Frequency Circuits: Due to their high magnetic permeability and low electrical conductivity, ferrite cores are excellent for use in high-frequency applications. They help in reducing electromagnetic interference (EMI) and improving the efficiency of transformers and inductors by minimizing core losses.

  5. Usage: In transformers and inductors, these cores serve to guide and confine magnetic fields, thus enhancing the efficiency of these components. They are particularly useful in switch-mode power supplies, antenna rods, and RF transformers.

The P47EE19 ferrite core is an essential component in the design of electronic circuits where managing high-frequency signals and minimizing EMI are crucial. Its specific material and design properties make it suitable for a variety of applications in both power electronics and signal processing.

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  COST PER PIECE The P47EE19 is a ferrite core, a type of magnetic core made of ferrite, which is... Read more

SKU: P47EE19

$0.14 Excl. VAT

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    Description

     

    COST PER PIECE

    The P47EE19 is a ferrite core, a type of magnetic core made of ferrite, which is used in electronic components such as transformers and inductors. Ferrite cores are widely chosen for their magnetic properties, particularly in high-frequency applications.

    1. Material (Ferrite): Ferrite cores are made from a class of ceramic, ferromagnetic material composed of iron oxides combined with nickel, zinc, and/or manganese compounds. They are characterized by their high electrical resistivity and substantial magnetic permeability, which makes them efficient at preventing eddy current losses at high frequencies.

    2. Core Type (P47EE19): The designation 'P47EE19' specifies a particular size and shape of the ferrite core. These specifications are important as they determine the core's inductance, maximum current capacity, and the type of applications it is suitable for.

    3. Applications: Ferrite cores like the P47EE19 are commonly used in transformers, inductors, and other electromagnetic components within electronic devices. They are particularly effective in power supplies, RF applications, and for noise suppression purposes.

    4. Efficiency in High-Frequency Circuits: Due to their high magnetic permeability and low electrical conductivity, ferrite cores are excellent for use in high-frequency applications. They help in reducing electromagnetic interference (EMI) and improving the efficiency of transformers and inductors by minimizing core losses.

    5. Usage: In transformers and inductors, these cores serve to guide and confine magnetic fields, thus enhancing the efficiency of these components. They are particularly useful in switch-mode power supplies, antenna rods, and RF transformers.

    The P47EE19 ferrite core is an essential component in the design of electronic circuits where managing high-frequency signals and minimizing EMI are crucial. Its specific material and design properties make it suitable for a variety of applications in both power electronics and signal processing.

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