Toshiba MG50Q6ES40 IGBT Module

Toshiba MG50Q6ES40 IGBT module. It’s evident that this module is designed to offer high-performance characteristics suitable for a variety of high-power applications. Here’s a summary based on the information you’ve provided:

Features:

  • The MG50Q6ES40 is a power transistor module designed for high-power switching applications, commonly used in motor control, welding equipment, and power supplies.
  • The module contains six insulated gate bipolar transistors (IGBTs) with a current rating of 50 amperes and a voltage rating of 600 volts.
  • It features low on-state voltage drop and fast switching speeds, making it suitable for efficient power conversion.
  • Built-in protection features include overcurrent protection, overtemperature protection, and short circuit protections.
  • The module is designed to withstand high levels of shock and vibration due to its rugged and compact packaging.

Specifications (Maximum Ratings):

  • Collector-Emitter Voltage (Vces): The maximum collector-emitter voltage is 1200V, indicating the highest voltage the module can withstand in the off-state.
  • Gate-Emitter Voltage (VGES): The maximum voltage that can be applied between the gate and emitter terminals is ±20V.
  • Continuous Collector Current (Ic): The module can handle a continuous collector current of up to 50A.
  • Pulsed Collector Current (Icp): The module can handle a pulsed collector current of up to 100A.
  • Collector Power Dissipation (Pc): The maximum power that the module can dissipate while operating is 250W.
  • Collector-Emitter Voltage (VCES): The module’s maximum collector-emitter voltage rating is 2500V.
  • Operating Junction Temperature (Tj): The recommended operating temperature range for the module is up to +150°C.
  • Storage Temperature (Tstg): The module can be stored within a temperature range of -40°C to +125°C.
  • Mounting Screw Torque: The recommended torque for mounting screws is 2/3 N·m.

Applications:

  • The MG50Q6ES40 IGBT module is versatile and finds its use in various high-power applications, including:
    • Inverter systems for motor drive applications.
    • AC and DC servo drive amplifiers for precise motor control.
    • Uninterruptible power supply (UPS) systems.