1 pcs : C330C104J2H5TA - Multilayer Ceramic Capacitors MLCC - Leaded .1UF 200V 5% 5.08MM
    • 1 pcs : C330C104J2H5TA - Multilayer Ceramic Capacitors MLCC - Leaded .1UF 200V 5% 5.08MM

    1 pcs : C330C104J2H5TA - Multilayer Ceramic Capacitors MLCC - Leaded .1UF 200V 5% 5.08MM

    1(electronicpartsUK)80C330C104J2H5TA
    KEMET
    1 pcs : C330C104J2H5TA - Multilayer Ceramic Capacitors MLCC - Leaded .1UF 200V 5% 5.08MM
    £8.88
    Delivery: 7-10 business days
    Quantity
    10 Items

    Description
    Commercial & Automotive 150°C Leaded Capacitors KEMET Commercial and Automotive Grade High-Temperature +150°C Aximax Axial and Goldmax Radial Capacitors are conformally coated ceramic capacitors that combine the benefits of ceramic MLCC performance with radial leads for increased mechanical robustness. In addition, leaded ceramic capacitors allow engineers to design capacitors without needing PCBs such as sensors and motors. These capacitors are available in X8L and X8R dielectrics with capacitance values up to 4.7µF. These capacitors are lead (Pb) free, RoHS and REACH compliant without exemption, and meet the flame test requirements outlined in UL 94V–0.
    Product Details
    KEMET
    1(electronicpartsUK)80C330C104J2H5TA
    C330C104J2H5TA
    10 Items

    Data sheet

    Manufacturer
    KEMET
    Capacitance
    0.1 uF
    Tolerance
    5 %
    Width
    9.14 mm
    Height
    4.07 mm
    Length
    7.11 mm
    Series
    GoldMax 300 Comm X8R HT150C
    Maximum Operating Temperature
    + 150 C
    Minimum Operating Temperature
    - 55 C
    Type
    Goldmax X8R Dielectric Commercial and Automotive Grade MLCCs
    Product Type
    Ceramic Capacitors
    Termination Style
    Radial
    Product Category
    Multilayer Ceramic Capacitors MLCC - Leaded
    Lead Spacing
    5.08 mm
    RoHS
    Details
    Brand
    KEMET
    Product
    General Type MLCCs
    Factory Pack Quantity Factory Pack Quantity
    250
    Subcategory
    Capacitors
    Voltage Rating DC
    200 VDC
    Lead Style
    Straight
    Dissipation Factor DF
    0.025