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    Transformer Cores

    Transformers consist of a magnetic circuit commonly referred to as the "transformer core", the purpose of which is to create a pathway around which magnetic fields can flow. To induce voltage between the two input and output windings, this magnetic path is necessary.

    Ferrite Core Transformer

    Transformers use ferrite cores to reduce losses and increase efficiency by reducing losses. In ferrite cores, iron oxide is combined with other metallic elements to form ferrite, a ferromagnetic material. Because ferrite cores have a high magnetic permeability and a low electrical conductivity, they are commonly used in transformers.

    How does the Transformer Ferrite Cores work?

    Transformers use ferrite cores to form magnetic fields. A change in current induces a magnetic field in the primary winding of the transformer, which then magnetizes the secondary winding through the ferrite core. As a result of the change in magnetic field in the core, ferrite cores reduce losses caused by eddy currents and hysteresis losses in transformers.

    Types of transformers ferrite cores

    Different transformer cores are intended to be used with specific kinds of equipment. These include broadband transformers, DC/DC converters, flat transformers, power transformers, reactors, switch mode power supply (SMPS ) transformers, and transmitters.

    In addition to length, depth, and width, transformer ferrite cores also vary in their minimum and maximum operating temperatures. It is important to consider the operating temperature of the equipment that the core will be used in when choosing between cores.

    There are several types of ferrite cores that are used in transformers:

    Manganese Zinc (MnZn)

    In NiZn ferrites, saturation levels are higher and permeabilities are higher. Applications with frequencies less than 5MHz are suitable for these. Inductors up to 70 MHz can also be used with them because of their impedance.

    Nickel Zinc (NiZn)

    Their resistivity is higher than that of MnZn ferrites. The inductors used in these applications are suitable for inductor frequencies above 70 MHz, between 2 MHz and several hundred MHz.

    Sand Dust

    It is ideally suited for use with ferrites only because these Choke Coils have a high frequency.

    Lamination/ Amorphous & Nanocrystalline

    UPS systems, inverters, and welding sets use lamination transformers.

    What is the reason for the transformer cores high demand?

    Transformer cores with ferrites are usually more in demand than those with iron cores, as ferrites have several advantages.

    A ferrite is a ceramic material, derived from zinc and manganese compounds. Transformers rely on them for insulating and resisting high currents.

    What are the Benefits of using them?

    Transformers with Ferrite Cores provide a range of advantages suited to a variety of electrical applications. They offer the following benefits:

    High Magnetic Permeability

    High-frequency transformers utilize ferrite cores because of their magnetic permeability.

    Low Electrical Conductivity

    Eddy current losses are prevented by the low electrical conductivity along with the high permeability of the ferrite cores. This is why, at higher frequencies, the cores perform exceptionally well.

    Higher Coercivity

    Hard ferrite cores are more coercive than soft ferrite cores. Furthermore, they ensure negligible hysteresis losses when changing their magnetic direction.

    In addition to the benefits listed above, these cores provide High Q values, moderate DC sensitivity, Low hysteresis factor, as well as Low signal distortion.

    237 產品顯示為 Transformer Cores

    EPCOS
    PQ
    Power Transformers
    35.1 x 26 x 17.4mm
    4700nH
    N97
    17.4mm
    35.1mm
    26mm
    -
    -
    EPCOS
    EFD 20
    DC DC converter
    20 x 10 x 6.65mm
    1200nH
    N87
    6.65mm
    20mm
    10mm
    -
    -
    EPCOS
    EFD 20
    DC DC converter
    20 x 10 x 6.65mm
    1200nH
    N87
    6.65mm
    20mm
    10mm
    -
    -
    EPCOS
    E 65
    -
    65 x 32.8 x 27.4mm
    7900nH
    N87
    27.4mm
    65mm
    32.8mm
    -
    -
    EPCOS
    EFD 15/8/5
    DC/DC Converter, Flat Transformers, Power Transformers
    15 x 4.85 x 7.5mm
    100nH
    N87
    7.5mm
    15mm
    4.85mm
    -
    -
    EPCOS
    E 42
    -
    42 x 21.2 x 20mm
    5200nH
    N87
    20mm
    42mm
    21.2mm
    -
    -
    EPCOS
    EFD 25/13/9
    DC/DC Converter, Flat Transformers, Power Transformers
    25 x 9.1 x 12.5mm
    2100nH
    N97
    12.5mm
    25mm
    9.1mm
    -
    -
    EPCOS
    EC 70
    Power Transformers
    70 x 34.6 x 16.8mm
    3900nH
    N27
    16.8mm
    70mm
    34.6mm
    -
    -
    EPCOS
    ETD 49/25/16
    Power Transformers, SMPS Transformers
    48.5 x 16.7 x 24.9mm
    314nH
    N87
    24.9mm
    48.5mm
    16.7mm
    -
    -
    EPCOS
    ETD 49
    -
    48.5 x 24.9 x 16.7mm
    3800nH
    N87
    16.7mm
    48.5mm
    24.9mm
    -
    -
    EPCOS
    ETD 49
    SMPS Transformers
    43.8 x 22.5 x 15.2mm
    438nH
    N87
    15.2mm
    43.8mm
    22.5mm
    -
    -
    EPCOS
    PQ 26/25
    Power Transformers
    26.5 x 19 x 10.08mm
    5150nH
    N97
    10.08mm
    26.5mm
    19mm
    -
    -
    EPCOS
    RM 6
    Transformer
    17.9 x 14.7 x 12.5mm
    2400nH
    N87
    12.5mm
    17.9mm
    14.7mm
    -
    -
    EPCOS
    E 25/13/7
    Power Transformers
    25 x 7.5 x 12.8mm
    1850nH
    N87
    12.8mm
    25mm
    7.5mm
    -
    -
    EPCOS
    ETD 49/25/16
    Power Transformers, SMPS Transformers
    48.5 x 16.7 x 24.9mm
    314nH
    N87
    24.9mm
    48.5mm
    16.7mm
    -
    -
    EPCOS
    PM 62/49
    DC DC converter
    62 (Dia.) x 49mm
    9200nH
    N27
    -
    -
    -
    -
    -
    EPCOS
    EFD 25/13/9
    DC/DC Converter, Flat Transformers, Power Transformers
    25 x 9.1 x 12.5mm
    2100nH
    N97
    12.5mm
    25mm
    9.1mm
    -
    -
    EPCOS
    PM 50/39
    Energy Storage Chokes, Power Transformers
    -
    7400nH
    N87
    39mm
    -
    50mm
    -
    -
    EPCOS
    PM 74/59
    Energy storing choke
    85.5 x 75 x 65mm
    10000nH
    N87
    -
    74mm
    59mm
    -
    -
    EPCOS
    PM 74/59
    Energy storing choke
    85.5 x 75 x 65mm
    315nH
    N27
    59mm
    74mm
    -
    -
    -
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