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INTERNATIONAL RECTIFIER/IR IRFP90N20DPBF

Specifications

SKU: 8665045

BUY INTERNATIONAL RECTIFIER/IR IRFP90N20DPBF https://www.utsource.net/itm/p/8665045.html

Parameter Symbol Min Typical Max Unit Test Conditions
Drain-Source Voltage VDS - 200 - V
Gate-Source Voltage VGS -20 0 15 V
Continuous Drain Current ID (DC) - 9.0 - A TC = 25°C, VGS = 10V
Pulse Drain Current ID (Pulse) - 36 - A tp = 10ms, Duty Cycle = 1%, TC = 25°C, VGS = 10V
Gate Charge QG - 18 - nC VDS = 100V, ID = 9A, VGS = 10V
Input Capacitance Ciss - 1700 - pF VDS = 0V, f = 1MHz
Output Capacitance Coss - 420 - pF VDS = 200V, f = 1MHz
Total Gate-to-Drain Capacitance Crss - 370 - pF VDS = 200V, f = 1MHz
On-State Resistance RDS(on) - 1.8 - Ω ID = 9A, VGS = 10V, TC = 25°C
Gate Threshold Voltage VGS(th) 2.0 4.0 6.0 V ID = 1mA, TA = 25°C
Power Dissipation PTOT - 130 - W TC = 25°C
Junction Temperature TJ - - 150 °C
Storage Temperature TSTG -55 - 150 °C

Instructions for Use:

  1. Mounting:

    • Ensure proper heat sinking to manage the power dissipation and keep the junction temperature within safe limits.
    • Use a thermal compound between the device and the heatsink to improve thermal conductivity.
  2. Biasing:

    • Apply the gate-source voltage (VGS) carefully to avoid exceeding the maximum ratings.
    • Use a gate resistor to control the switching speed and reduce EMI.
  3. Operation:

    • Operate the device within the specified drain-source voltage (VDS) and continuous drain current (ID) limits.
    • For pulse operation, ensure that the pulse duration and duty cycle do not exceed the specified values.
  4. Storage:

    • Store the device in a dry environment to prevent moisture damage.
    • Handle with care to avoid mechanical stress and electrostatic discharge (ESD).
  5. Testing:

    • Use the test conditions provided in the table to verify the performance parameters.
    • Ensure that all connections are secure and free from shorts or open circuits.
  6. Safety:

    • Always follow proper safety guidelines when handling high-voltage and high-current circuits.
    • Use appropriate protective equipment and grounding techniques to prevent electrical shock.
(For reference only)

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