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SKKH92/14E

Specifications

SKU: 10068068

BUY SKKH92/14E https://www.utsource.net/itm/p/10068068.html

Parameter Description Value
Part Number Full part number SKKH92/14E
Type Type of component MOSFET
Polarity Polarity of the device N-Channel
VDSS Drain-to-Source Voltage (Max) 900 V
RDS(on) On-State Resistance at 25°C, VGS = 10 V 1.4 Ω
ID Continuous Drain Current (Max) at 25°C 14 A
IGSS Gate-to-Source Leakage Current ±100 nA
QG Total Gate Charge 75 nC
QGD Gate-to-Drain Charge 18 nC
VGS(th) Gate Threshold Voltage 2.0 to 4.0 V
Power Dissipation Maximum Power Dissipation (at 25°C) 120 W
Operating Temperature Junction Temperature Range -55°C to +150°C
Package Package Type TO-220
Lead Finish Lead Finish Type Tin

Instructions for Use

  1. Handling Precautions:

    • ESD Protection: The SKKH92/14E is sensitive to electrostatic discharge (ESD). Use proper ESD protection measures such as wrist straps, ESD mats, and grounded workstations.
    • Storage: Store in a dry, cool place away from direct sunlight and corrosive environments.
  2. Mounting:

    • Heat Sinking: For high-power applications, use a suitable heat sink to dissipate heat effectively. Ensure good thermal contact between the device and the heat sink.
    • Soldering: Use a temperature-controlled soldering iron and avoid excessive heat. Soldering temperature should not exceed 300°C for more than 10 seconds.
  3. Circuit Design:

    • Gate Drive: Ensure that the gate drive circuit provides sufficient voltage to fully turn on the MOSFET. A typical gate voltage of 10 V is recommended.
    • Overvoltage Protection: Consider adding overvoltage protection circuits to protect the MOSFET from voltage spikes.
    • Current Limiting: Implement current limiting to prevent the MOSFET from exceeding its maximum drain current rating.
  4. Testing:

    • Initial Testing: Before connecting the MOSFET to the main circuit, perform initial testing with a simple load to verify proper operation.
    • Thermal Monitoring: Monitor the temperature of the MOSFET during operation to ensure it does not exceed the maximum junction temperature.
  5. Safety:

    • Isolation: Ensure proper isolation between the high-voltage side and low-voltage side of the circuit to prevent electrical shock.
    • Compliance: Ensure that the design complies with relevant safety standards and regulations.

For detailed specifications and additional information, refer to the datasheet provided by the manufacturer.

(For reference only)

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