FF300R12KE4HOSA1 Allicdata Electronics
Allicdata Part #:

FF300R12KE4HOSA1-ND

Manufacturer Part#:

FF300R12KE4HOSA1

Price: $ 82.45
Product Category:

Discrete Semiconductor Products

Manufacturer: Infineon Technologies
Short Description: IGBT MODULE VCES 600V 300A
More Detail: IGBT Module Trench Field Stop 2 Independent 1200V ...
DataSheet: FF300R12KE4HOSA1 datasheetFF300R12KE4HOSA1 Datasheet/PDF
Quantity: 1000
10 +: $ 74.95670
Stock 1000Can Ship Immediately
$ 82.45
Specifications
Series: --
Part Status: Active
IGBT Type: Trench Field Stop
Configuration: 2 Independent
Voltage - Collector Emitter Breakdown (Max): 1200V
Current - Collector (Ic) (Max): 460A
Power - Max: 1600W
Vce(on) (Max) @ Vge, Ic: 2.15V @ 15V, 300A
Current - Collector Cutoff (Max): 5mA
Input Capacitance (Cies) @ Vce: 19nF @ 25V
Input: Standard
NTC Thermistor: Yes
Operating Temperature: -40°C ~ 150°C
Mounting Type: Chassis Mount
Package / Case: Module
Supplier Device Package: Module
Description

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IGBT modules are widely used in many applications of electrical engineering, owing to their ability to handle high power levels and maintain an efficient electrical circuit. The FF300R12KE4HOSA1 is a type of IGBT module that has been designed for high power levels and low power losses. In this article, we will discuss the application fields and working principles of the FF300R12KE4HOSA1 IGBT module.

Application Fields

The FF300R12KE4HOSA1 IGBT module is designed for a wide range of applications, such as motor control, UPS systems, frequency converters, welding systems, induction heating and other variable speed applications. It is ideal for applications that require high power levels, but need to remain energy efficient. The IGBT module is also a perfect choice for applications that require a reliable and high power output with minimal power losses.

The FF300R12KE4HOSA1 IGBT module is also well-suited for applications with high peak current levels, such as electric drive systems, solenoid valves and electrically operated pumps. Its robust design ensures a reliable operation even in extreme environments, such as those with high temperature and vibrations.

In addition, the IGBT module can also be used in high power AC drives and inverters, as well as in rectifier applications. This makes the FF300R12KE4HOSA1 an ideal choice for industrial and commercial applications, as its reliable performance ensures an efficient and high power output.

Working Principle

The FF300R12KE4HOSA1 utilizes an insulated gate bipolar transistor (IGBT) design to deliver a reliable and high power output. An IGBT is a type of transistor that combines the strong current carrying capabilities of a MOSFET and the voltage control of a bipolar transistor. This combination allows the module to provide an efficient and high power output with minimal power losses.

The FF300R12KE4HOSA1 module operates on the principle of switching a transistor on and off rapidly to control the amount of current flowing through the circuit. This is done by sending a gate pulse to the gate of the transistor, which in turn controls the amount of current flowing through the transistor and the circuit. This is referred to as the switching action, and it is what allows the module to efficiently handle high power levels and maintain an efficient electrical circuit.

The FF300R12KE4HOSA1 module also utilizes a high degree of isolation between the power and control circuits, allowing it to maintain an efficient electrical circuit without any risk of interference. This feature is essential in applications where high power and high speed are required, as it ensures that the power and control circuits will not interfere with one another.

Conclusion

The FF300R12KE4HOSA1 IGBT module is a reliable and efficient way to handle high power levels while maintaining an efficient electrical circuit. Its robust design and ability to handle high peak current levels make it an ideal choice for a variety of industrial and commercial applications. Its working principle also ensures an efficient and high power output, as it is able to switch a transistor on and off rapidly to control the amount of current passing through the circuit.

The specific data is subject to PDF, and the above content is for reference

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