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Discrete IGBTs

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DGU4020GR
SANKEN ELECTRIC
N-channel Ignition IGBT Chip
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FGF65A3L
SANKEN ELECTRIC
72W 1.6V 650V 50A TO-3PF Through hole mounting
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KGF65A4H
SANKEN ELECTRIC
Trench Field Stop IGBTs With Fast Recovery Diode
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FGM603
SANKEN ELECTRIC
60W 600V 30A TO-3PF Through hole mounting
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MGF65A6H
SANKEN ELECTRIC
650V 80A TO-3P-3L Through hole mounting
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KGF65A6H
SANKEN ELECTRIC
650V 80A TO-247-3 Through hole mounting
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MGF65A3L
SANKEN ELECTRIC
650V 50A TO-3P-3L Through hole mounting
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MOQ: 1
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KGF65A6L
SANKEN ELECTRIC
650V 80A TO-247-3 Through hole mounting
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KGF65A3H
SANKEN ELECTRIC
217W 1.9V 650V 50A TO-247
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Discrete IGBTs

Definition:
An IGBT (Insulated Gate Bipolar Transistor) module is a high-power semiconductor device that combines the features of a MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor) and a bipolar junction transistor (BJT). It is designed to provide efficient power control in various electronic systems.

Function:
The IGBT module functions as a voltage-controlled switch, allowing for the control of high currents and voltages with low input power. It is particularly useful in applications requiring fast switching and high efficiency. The IGBT operates by using an insulated gate to control the flow of current between its collector and emitter terminals, with the current being primarily carried by electrons and holes.

Applications:
IGBT modules are widely used in various industries due to their ability to handle high power levels with high efficiency and fast switching speeds. Some common applications include:
1. Electric vehicles (EVs) for motor control.
2. Renewable energy systems such as solar inverters and wind turbines.
3. Industrial motor drives for variable frequency drives (VFDs).
4. Power supplies for high-power electronics.
5. Rail transportation systems for traction control.
6. High-voltage direct current (HVDC) transmission systems.

Selection Criteria:
When selecting an IGBT module, the following criteria should be considered:
1. Voltage Rating: Ensure the module can handle the maximum voltage of the application.
2. Current Rating: Choose a module that can handle the expected current load.
3. Switching Speed: Consider the required switching speed for the application.
4. Thermal Characteristics: The module should have adequate thermal management capabilities.
5. Package Type: Depending on the application, different package types may be more suitable (e.g., press-pack, module, or smart module).
6. Reliability and Durability: Look for modules with proven reliability and a long service life.
7. Cost: Balance the cost of the module with its performance and reliability.
8. Manufacturer Support: Consider the support and availability of technical assistance from the manufacturer.

In summary, IGBT modules are essential components in modern power electronics, offering a combination of high efficiency, fast switching, and the ability to handle high power levels. Their selection should be based on a thorough understanding of the application requirements and the specific characteristics of the IGBT modules available on the market.
Please refer to the product rule book for details.