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LTC4357CMS8-PBF Positive High Voltage Ideal Diode Controller Signal Schottky diode double diode model

Anterwell Technology Ltd.
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    Buy cheap LTC4357CMS8-PBF Positive High Voltage Ideal Diode Controller Signal Schottky diode double diode model from wholesalers
     
    Buy cheap LTC4357CMS8-PBF Positive High Voltage Ideal Diode Controller Signal Schottky diode double diode model from wholesalers
    • Buy cheap LTC4357CMS8-PBF Positive High Voltage Ideal Diode Controller Signal Schottky diode double diode model from wholesalers

    LTC4357CMS8-PBF Positive High Voltage Ideal Diode Controller Signal Schottky diode double diode model

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    Brand Name : LINER
    Model Number : LTC4357CMS8-PBF
    Certification : Original Factory Pack
    Price : negotiation
    Payment Terms : T/T, Western Union,PayPal
    Supply Ability : 5200PCS
    Delivery Time : 1 day
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    LTC4357CMS8-PBF Positive High Voltage Ideal Diode Controller Signal Schottky diode double diode model

    LTC4357CMS8-PBF Positive High Voltage Ideal Diode Controller Signal Schottky diode double diode model

    ► Reduces Power Dissipation by Replacing a Power Schottky Diode with an N-Channel MOSFET

    ►0.5μs Turn-Off Time Limits Peak Fault Current

    ► Wide Operating Voltage Range: 9V to 80V

    ►Smooth Switchover without Oscillation

    ► No Reverse DC Current

    ► Available in 6-Lead (2mm × 3mm) DFN and 8-Lead MSOP Packages


    APPLICATIONS

    ► N + 1 Redundant Power Supplies

    ► High Availability Systems

    ► AdvancedTCA Systems

    ► Telecom Infrastructure

    ► Automotive Systems


    DESCRIPTION

    The LTC®4357 is a positive high voltage ideal diode controller that drives an external N-channel MOSFET to replace a Schottky diode. When used in diode-OR and high current diode applications, the LTC4357 reduces power consumption, heat dissipation, voltage loss and PC board area.


    The LTC4357 easily ORs power sources to increase total system reliability. In diode-OR applications, the LTC4357 controls the forward voltage drop across the MOSFET to ensure smooth current transfer from one path to the other without oscillation. If the power source fails or is shorted, a fast turn-off minimizes reverse current transients.



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