SGW10N60AFKSA1 Allicdata Electronics
Allicdata Part #:

SGW10N60AFKSA1-ND

Manufacturer Part#:

SGW10N60AFKSA1

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Infineon Technologies
Short Description: IGBT 600V 20A 92W TO247-3
More Detail: IGBT NPT 600V 20A 92W Through Hole PG-TO247-3
DataSheet: SGW10N60AFKSA1 datasheetSGW10N60AFKSA1 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Switching Energy: 320µJ
Supplier Device Package: PG-TO247-3
Package / Case: TO-247-3
Mounting Type: Through Hole
Operating Temperature: -55°C ~ 150°C (TJ)
Test Condition: 400V, 10A, 25 Ohm, 15V
Td (on/off) @ 25°C: 28ns/178ns
Gate Charge: 52nC
Input Type: Standard
Series: --
Power - Max: 92W
Vce(on) (Max) @ Vge, Ic: 2.4V @ 15V, 10A
Current - Collector Pulsed (Icm): 40A
Current - Collector (Ic) (Max): 20A
Voltage - Collector Emitter Breakdown (Max): 600V
IGBT Type: NPT
Part Status: Obsolete
Packaging: Tube 
Description

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SGW10N60AFKSA1 Application Field and Working Principle

Transistors - IGBTs - Single

The SGW10N60AFKSA1 is a single insulated-gate bipolar transistor (IGBT) that belongs to the family of IGBTs. It is a 600 amperes (A) and 650 volts (V) device with a low conduction and switching loss footprint that makes it suitable for automotive and industrial power supply applications, such as DC-DC converters, motor control, and AC power supplies. The SGW10N60AFKSA1 also has high current capability, low switching noise, and high misalignment immunity, making it an excellent choice for power converter applications.

Working Principle

The working principle of an IGBT is based on the semiconductor effect. An IGBT consists of two junction layers which are separated by an insulator. The layer which carries the current is called the emitter, while the layer where current flow is stopped is called the collector. In operation, a voltage is applied through the emitter, which attracts current carrying electrons from the emitter to the insulating layer, creating an electric field between the two layers. This electric field is then challenged by an electric field produced by a second voltage source connected to the collector, resulting in a voltage division between the two layers, causing current to flow across the junction.

The junction\'s resistance determines the amount of current that can flow through it, in addition to the voltage division effect. In an IGBT, this resistance allows for the required switching speed, since this resistance is low for high current. Hence, an IGBT such as the SGW10N60AFKSA1 can handle high current application and have a relatively low on-state resistance. This is especially important for applications where switching losses must be minimized.

Applications

The SGW10N60AFKSA1 has many applications in the automotive and industrial power supply industry. Here are some examples:

  • DC-DC Converters: By connecting two IGBTs in series, the current can be stepped down or up in order to get the desired output. The IGBTs also offer very low switching loss and high efficiency, which makes them suitable for this application.
  • Motor Control: By controlling the voltage applied to the motor, the SGW10N60AFKSA1 can be used to control the speed of the motor. Again, low switching loss and high current capability makes it an ideal component for this application.
  • AC Power Supplies: The SGW10N60AFKSA1 can be used to produce the alternating current needed for many household applications. The device has good immunity to voltage misalignment, making it suitable for this application.

Conclusion

The SGW10N60AFKSA1 is a single IGBT designed for automotive and industrial power supply applications. Its low conduction and switching losses promote high efficiency and good switching performance, while its high current capability and voltage misalignment immunity make it suitable for a wide range of applications. This device is a great choice for DC-DC converters, motor control, and AC power supplies.

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

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