Infineon, Type N-Channel IGBT, 75 A 600 V, 3-Pin TO-247, Through Hole

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Subtotal (1 tube of 30 units)*

SGD168.09

(exc. GST)

SGD183.21

(inc. GST)

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30 - 60SGD5.603SGD168.09
90 - 120SGD5.393SGD161.79
150 +SGD5.056SGD151.68

*price indicative

RS Stock No.:
911-4789
Mfr. Part No.:
IKW75N60TFKSA1
Manufacturer:
Infineon
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Brand

Infineon

Maximum Continuous Collector Current Ic

75A

Product Type

IGBT

Maximum Collector Emitter Voltage Vceo

600V

Maximum Power Dissipation Pd

428W

Package Type

TO-247

Mount Type

Through Hole

Channel Type

Type N

Pin Count

3

Maximum Gate Emitter Voltage VGEO

20 V

Minimum Operating Temperature

-40°C

Maximum Collector Emitter Saturation Voltage VceSAT

2V

Maximum Operating Temperature

175°C

Series

TrenchStop

Standards/Approvals

RoHS, JEDEC, Pb-free lead plating

Automotive Standard

No

COO (Country of Origin):
GB

Infineon IGBT, 80A Maximum Continuous Collector Current, 600V Maximum Collector Emitter Voltage - IKW75N60TFKSA1


This IGBT is a high-performance semiconductor component designed for power electronics applications. With a maximum continuous collector current of 80A, it operates efficiently in high-voltage environments, rated for 600V. The device is packaged in a TO-247 format, ideal for through-hole mounting.

Features & Benefits


• Low collector-emitter saturation voltage enhances efficiency

• High switching speed reduces energy loss during operation

• Positive temperature coefficient ensures stable performance

• Compatible with a wide temperature range from -40°C to +175°C

Applications


• Suitable for use in frequency converters in industrial settings

• Ideal for uninterruptible power supply systems

• Utilised in motor control for automation

• Effective for renewable energy systems to ensure efficiency

What are the implications of short circuit withstand time for my application?


The short circuit withstand time of 5μs allows for reliable protection in applications that may encounter fault conditions, ensuring that the device can endure brief overcurrent situations without immediate failure.

How does the high switching speed impact system efficiency?


A high switching speed of 20kHz minimises energy losses during transitions, significantly improving overall system efficiency and performance, particularly in fast-response applications.

What are the thermal management considerations for optimal performance?


Thermal resistance values indicate effective heat dissipation from junction to case; managing junction temperatures within specified limits is crucial to maintain reliable operation and extend component lifespan.

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