Infineon IGBT
Infineon IGBT
Infineon IGBT
Infineon IGBT

Infineon IGBT

Infineon IGBT Specification

  • Frequency
  • 50/60 Hz
  • Phase
  • Single / Three Phase (module usage dependent)
  • Mounting Type
  • Through Hole/Module Mount
  • Protection Level
  • Short Circuit and Overcurrent Protection
  • Usage & Applications
  • Industrial Machinery, Renewable Energy Systems, Motor Drives, UPS
  • Current
  • 75A
  • Installation Type
  • PCB Mounting/Module Mounting
  • Output
  • Collector-Emitter Output
  • Features
  • High Efficiency, Fast Switching, Low Conduction Losses, Robust Design
  • Connectivity Type
  • Solder/Module terminals
  • Switch Type
  • Single Switch
  • Product Type
  • IGBT (Insulated Gate Bipolar Transistor)
  • Operating Temperature
  • -40C to 150C
  • Working Temperature
  • Up to 150C
  • Input
  • Gate Drive
  • Application
  • Industrial Power Electronics, Motor Drives, Power Inverters, UPS, Welding Machines
  • Supply Voltage
  • 1200V (VCES)
  • Accuracy
  • Device dependent, Refer to datasheet
  • Dimension (L*W*H)
  • 34 mm x 24 mm x 5 mm (Typical for Module)
  • Weight
  • Approx. 40g
 
 

About Infineon IGBT



Discover the celebrated Infineon IGBT IKW75N120H3, a splendid solution for demanding industrial applications at the lowest price. This in-demand device features a crowning 1200V collector-emitter voltage, continuous 75A current, and advanced Trenchstop 3 technology for outstanding efficiency and robust switching performance. With enhanced safe operating area, short circuit protection, and RoHS compliance, its tailored for reliability in motor drives, renewable energies, power inverters, and more. Benefit from fast switching, minimal conduction losses, and easy installationmaking it the offer of choice for modern power solutions.

Infineon IGBT: Leading Edge Performance in Industrial Power

The Infineon IGBT IKW75N120H3 stands out with primary competitive advantages such as high efficiency, fast switching, and low conduction losses. Designed for both specific and general industrial use, it excels in motor drives, UPS systems, renewable energy, and welding machines. Suitable for single or three-phase configurations, this robust device is perfect for high-stress conditions, making it the ideal choice for your critical power electronics requirements.


Efficient Packaging, Prompt Delivery & Sample Availability

Goods are securely packaged in anti-static, industry-standard containers to preserve integrity during transport. Expect reliable delivery timelines, typically within 5-7 working days, subject to goods transport rate and distance. Samples are available upon request, allowing you to evaluate performance with minimal expenditure before bulk orders. Our streamlined shipping process ensures your order arrives safely and punctually, supporting seamless integration into your production schedule.


FAQs of Infineon IGBT:


Q: How does the Infineon IGBT IKW75N120H3 enhance efficiency in industrial applications?

A: This IGBT utilizes Trenchstop 3 technology, enabling fast switching and low conduction losses, which collectively improve energy efficiency and reduce operational costs in demanding industrial environments.

Q: What are the primary usage scenarios for the IKW75N120H3 IGBT?

A: It is mainly used in industrial power electronics, including motor drives, UPS systems, power inverters, renewable energy applications, and welding machines, due to its robustness and reliable high-current, high-voltage performance.

Q: Where can the Infineon IGBT IKW75N120H3 be installed?

A: The device supports flexible installation: PCB mounting or module mounting, via through-hole or module terminals, making it suitable for various equipment designs and upgrade projects.

Q: When is it recommended to use samples before placing a bulk order?

A: Requesting samples is advisable when you need to validate compatibility, performance, and integration efficiency in your specific application before committing to larger volume purchases.

Q: What protection features does the IKW75N120H3 offer for safe operation?

A: It provides enhanced safe operating area (SOA), short circuit and overcurrent protection, ensuring reliable operation even under severe inductive load switching conditions.

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