IRFR2407

IRFR2407


Specifications
SKU
12608399
Details

BUY IRFR2407 https://www.utsource.net/itm/p/12608399.html

Parameter Symbol Test Conditions Min Typical Max Unit
Drain-Source Voltage VDS - - 600 - V
Gate-Source Voltage VGS - - 卤20 - V
Continuous Drain Current ID TC = 25掳C - - 39 A
TC = 100掳C - - 29 A
Pulse Drain Current IDpeak TC = 25掳C, tp = 10 渭s - - 120 A
Power Dissipation PTOT TC = 25掳C - - 320 W
TC = 100掳C - - 180 W
Junction Temperature TJ - - - 175 掳C
Storage Temperature Range TSTG - -65 - 150 掳C
Total Gate Charge QG VGS = 15V, ID = 30A - 110 - nC
Input Capacitance Ciss VDS = 400V, f = 1 MHz - 3600 - pF
Output Capacitance Coss VDS = 400V, f = 1 MHz - 280 - pF
Reverse Transfer Capacitance Crss VDS = 400V, f = 1 MHz - 240 - pF
Turn-On Delay Time td(on) VGS = 15V, ID = 30A - 62 - ns
Rise Time tr VGS = 15V, ID = 30A - 56 - ns
Turn-Off Delay Time td(off) VGS = 15V, ID = 30A - 52 - ns
Fall Time tf VGS = 15V, ID = 30A - 104 - ns

Instructions for Use:

  1. Handling and Storage:

    • Store the device in a dry, cool environment to avoid moisture damage.
    • Handle the device with care to prevent mechanical damage and static discharge.
  2. Mounting:

    • Ensure proper thermal management by using appropriate heatsinks or cooling solutions.
    • Torque the mounting screws to the recommended specifications to ensure good thermal contact.
  3. Electrical Connections:

    • Apply gate-source voltage (VGS) within the specified range to avoid damaging the device.
    • Ensure that the drain-source voltage (VDS) does not exceed the maximum rating.
    • Keep the continuous drain current (ID) within the limits specified for the operating temperature.
  4. Thermal Management:

    • Monitor the junction temperature (TJ) to ensure it does not exceed 175掳C.
    • Use thermal paste or thermal interface materials to improve heat transfer between the device and the heatsink.
  5. Pulse Operation:

    • For pulse applications, ensure that the pulse duration and frequency do not cause the device to exceed its power dissipation limits.
    • Verify that the peak current (IDpeak) is within the specified range for the given pulse width.
  6. Capacitance and Switching:

    • Consider the input (Ciss), output (Coss), and reverse transfer (Crss) capacitances when designing the circuit to minimize switching losses.
    • Use the turn-on and turn-off delay times, as well as rise and fall times, to optimize the switching performance.
  7. Safety:

    • Always follow safety guidelines when handling high-voltage and high-current circuits.
    • Ensure proper isolation and grounding to prevent electrical hazards.
(For reference only)

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