10 pcs : ESW108M063AM3AA - Aluminium Electrolytic Capacitors - Radial Leaded 63V 1000uF 105C 6k Hour Radial
    • 10 pcs : ESW108M063AM3AA - Aluminium Electrolytic Capacitors - Radial Leaded 63V 1000uF 105C 6k Hour Radial

    10 pcs : ESW108M063AM3AA - Aluminium Electrolytic Capacitors - Radial Leaded 63V 1000uF 105C 6k Hour Radial

    10(electronicparts)80ESW108M063AM3AA
    KEMET
    10 pcs : ESW108M063AM3AA - Aluminium Electrolytic Capacitors - Radial Leaded 63V 1000uF 105C 6k Hour Radial
    £39.92
    Delivery: 7-10 business days
    Quantity
    10 Items

    Description
    ESW +105°C Radial Aluminum Electrolytic Capacitors KEMET ESW Series Radial Aluminum Electrolytic Capacitors are designed for long life (3000 to 6000 hours), high reliability, low impedance, and high-frequency applications. The capacitors have a capacitance range of 4.7μF to 10000μF, a voltage range of 6.3VDC to 100VDC, and an operating temperature of up to 105°C. The series features a safety vent on the capacitor base. KEMET ESW Series Radial Aluminum Electrolytic Capacitors applications include high-frequency switch-mode circuits.
    Product Details
    KEMET
    10(electronicparts)80ESW108M063AM3AA
    ESW108M063AM3AA
    10 Items

    Data sheet

    Manufacturer
    KEMET
    Capacitance
    1000 uF
    Tolerance
    20 %
    Leakage current
    630 uA
    Diameter
    16 mm
    Length
    36 mm
    Series
    ESW
    Maximum Operating Temperature
    + 105 C
    Minimum Operating Temperature
    - 40 C
    Life
    6000 Hour
    Type
    Single Ended Aluminium Electrolytic Capacitor
    Product Type
    Electrolytic Capacitors
    Termination Style
    Radial
    Ripple Current
    1.79 A
    Product Category
    Aluminium Electrolytic Capacitors - Radial Leaded
    Lead Spacing
    7.5 mm
    RoHS
    Details
    Brand
    KEMET
    Product
    General Purpose Electrolytic Capacitors
    Factory Pack Quantity Factory Pack Quantity
    200
    Subcategory
    Capacitors
    Voltage Rating DC
    63 VDC
    Lead Style
    Straight
    Dissipation Factor DF
    9 %