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K50EH5 IKW50N65H5 650V 50A IGBT

Specifications

SKU: 9512410

BUY K50EH5 IKW50N65H5 650V 50A IGBT https://www.utsource.net/itm/p/9512410.html

Parameter Symbol Test Conditions Min Typical Max Unit
Collector-Emitter Voltage V CES I C = 0, T J = 25°C - 650 - V
Gate-Emitter Voltage V GES I G = 0, T J = 25°C -20 0 20 V
Continuous Collector Current I C T C = 25°C - 50 - A
Pulse Collector Current I CM t p = 10 ms, T C = 25°C - 100 - A
Collector-Emitter Saturation Voltage V CESAT I C = 50 A, V GE = 15 V, T J = 25°C - 1.8 - V
Turn-On Time t ON I C = 50 A, R G = 10 Ω, T J = 25°C - 0.3 - μs
Turn-Off Time t OFF I C = 50 A, R G = 10 Ω, T J = 25°C - 0.4 - μs
Total Switching Energy E SW I C = 50 A, R G = 10 Ω, T J = 25°C - 200 - μJ
Junction Temperature T J - -55 - 175 °C
Storage Temperature T STG - -55 - 150 °C

Instructions for Use:

  1. Handling and Storage:

    • Store the device in a dry, cool place to avoid moisture damage.
    • Handle with care to prevent static discharge which can damage the IGBT.
  2. Mounting:

    • Ensure proper heat sinking to manage the thermal dissipation.
    • Use a thermal interface material (TIM) between the IGBT and the heatsink to improve thermal conductivity.
  3. Electrical Connections:

    • Connect the gate and emitter terminals correctly to avoid damage.
    • Use short leads to minimize parasitic inductance.
  4. Operating Conditions:

    • Do not exceed the maximum ratings specified in the table.
    • Ensure the junction temperature does not exceed 175°C to prevent thermal runaway.
  5. Gate Drive:

    • Provide a clean, stable gate drive signal to ensure reliable switching.
    • Use appropriate gate resistors to control the turn-on and turn-off times.
  6. Protection:

    • Implement overcurrent protection to prevent damage from excessive current.
    • Consider using snubber circuits to protect against voltage spikes during switching.
  7. Testing:

    • Test the device under controlled conditions to verify its performance.
    • Use a suitable test setup that mimics the actual operating conditions.

By following these guidelines, you can ensure optimal performance and longevity of the K50EH5 IKW50N65H5 IGBT.

(For reference only)

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