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FUJI 4MBI900VB-12R1-61 IGBT Module

FUJI 4MBI900VB-12R1-61 IGBT Module

Posted Date: 2023-07-15
FUJI 4MBI900VB-12R1-61 IGBT Module
FUJI 4MBI900VB-12R1-61 IGBT Module
FUJI 4MBI900VB-12R1-61 IGBT Module
FUJI 4MBI900VB-12R1-61 IGBT Module

The Fuji 4MBI900VB-12R1-61 is an IGBT (Insulated Gate Bipolar Transistor) module with the next options:

  1. Excessive-speed switching voltage drive: This module is designed to facilitate quick switching of voltages, which is helpful in functions that require fast and environment friendly management.
  2. Low inductance module construction: The module is constructed with a low inductance construction, which helps in lowering the undesired results of inductance and improves the efficiency of the machine.

The module is often used within the following functions:

  1. Inverter for Motor Drive: It may be utilized in motor drive programs to transform DC energy to AC energy, enabling management and operation of electrical motors.
  2. AC and DC Servo Drive Amplifier: It may be employed in servo drive amplifiers, that are used to regulate and regulate the motion and positioning of equipment in varied industries.
  3. Uninterruptible Energy Provide: The module will be utilized in uninterruptible energy provide (UPS) programs to make sure a steady energy provide in case of energy outages or fluctuations.
  4. Industrial machines, reminiscent of Welding machines: It's appropriate to be used in industrial machines like welding machines, the place it aids within the management and regulation of energy for welding processes.

The module has the next most scores and traits (assuming a temperature of 25°C except specified in any other case):

  1. Collector-Emitter voltage Vces: 1200V
  2. Gate-Emitter voltage VGES: ±20V
  3. Collector present IC: 900A
  4. Collector present Icp: 1800A
  5. Collector energy dissipation Computer: 6250W
  6. Collector-Emitter voltage VCES: 4000V
  7. Working junction temperature Tj: +150°C
  8. Storage temperature Tstg: -40 to +125°C
  9. Mounting M5 screw torque: 6.0 N·m