onsemi FGH40N60UFDTU IGBT, 80 A 600 V, 3-Pin TO-247, Through Hole

RS Stock No.: 124-1335Brand: onsemiManufacturers Part No.: FGH40N60UFDTU
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Technical documents

Specifications

Brand

onsemi

Maximum Continuous Collector Current

80 A

Maximum Collector Emitter Voltage

600 V

Maximum Gate Emitter Voltage

±20V

Maximum Power Dissipation

290 W

Package Type

TO-247

Mounting Type

Through Hole

Channel Type

N

Pin Count

3

Transistor Configuration

Single

Dimensions

15.6 x 4.7 x 20.6mm

Minimum Operating Temperature

-55 °C

Maximum Operating Temperature

+150 °C

Product details

Discrete IGBTs, Fairchild Semiconductor

IGBT Discretes & Modules, Fairchild Semiconductor

The Insulated Gate Bipolar Transistor or IGBT is a three-terminal power semiconductor device, noted for high efficiency and fast switching. The IGBT combines the simple gate-drive characteristics of the MOSFETs with the high-current and low–saturation-voltage capability of bipolar transistors by combining an isolated gate FET for the control input, and a bipolar power transistor as a switch, in a single device.

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P.O.A.

onsemi FGH40N60UFDTU IGBT, 80 A 600 V, 3-Pin TO-247, Through Hole

P.O.A.

onsemi FGH40N60UFDTU IGBT, 80 A 600 V, 3-Pin TO-247, Through Hole
Stock information temporarily unavailable.

Technical documents

Specifications

Brand

onsemi

Maximum Continuous Collector Current

80 A

Maximum Collector Emitter Voltage

600 V

Maximum Gate Emitter Voltage

±20V

Maximum Power Dissipation

290 W

Package Type

TO-247

Mounting Type

Through Hole

Channel Type

N

Pin Count

3

Transistor Configuration

Single

Dimensions

15.6 x 4.7 x 20.6mm

Minimum Operating Temperature

-55 °C

Maximum Operating Temperature

+150 °C

Product details

Discrete IGBTs, Fairchild Semiconductor

IGBT Discretes & Modules, Fairchild Semiconductor

The Insulated Gate Bipolar Transistor or IGBT is a three-terminal power semiconductor device, noted for high efficiency and fast switching. The IGBT combines the simple gate-drive characteristics of the MOSFETs with the high-current and low–saturation-voltage capability of bipolar transistors by combining an isolated gate FET for the control input, and a bipolar power transistor as a switch, in a single device.