Our portfolio of 4500 V and 6500 V IGBT power modules comprises different configurations, current ratings, as well as IGBT chip generations. The well-established IHV B-series modules feature 4500 V and 6500 V. They come in chopper and single switch configurations with a current rating between 250 A and 1800 A. Choose between different IGBT chip generations based on your requirements, for example, soft- and fast-switching TRENCHSTOP™ IGBT3.

  • 4500 V to 6500 V
  • Chopper configuration
  • Current rating from 250 to 1800 A
  • Single switch configuration

Products

About

The modules come in two housings, XHP™ 2 and XHP™ 3. Both have the same dimensions, 140 mm in length, 100 mm in width, and 40 mm in height. This gives product designers the opportunity to build homogenous solutions across different current and voltage ratings in order to implement optimized power converter concepts. The main focus in the development of this platform was to achieve flexibility and reliability while assuring optimal integration into customer systems. 

The new housing for high-power IGBT modules is designed to cover the full-voltage range of IGBT chips from 3.3 kV to 6.5 kV. Principle applications of the new package are expected in industrial drives, traction, renewable energy, and power transmission applications.

The various uses and in consequence, the market leadership of the Infineon 3.3 kV IHV (IGBT High-Voltage) Modules is based on customers, that especially like its supreme reliability in harshest environmental conditions, proven by field records over decades, and the unbeatable power density, which enables in consequence their own success

The 4.5 kV trench plus field stop IGBT and field stop diode chips fill the gap between the voltage classes of 3.3 kV and 6.5 kV IGBT modules. Using IHV modules enables participation in the strongly growing market of transmission and distribution, as well as in heavy-duty medium voltage drives and transportation.

The 6.5 kV IHV addresses customers’ demand for high power density, efficiency, long lifecycle, reliability, and reduced system costs in high-voltage applications like traction and HVDC. Using 4.5 kV IHV modules enables participation in the strongly growing market of transmission and distribution, as well as in heavy-duty medium voltage drives and transportation.

The modules come in two housings, XHP™ 2 and XHP™ 3. Both have the same dimensions, 140 mm in length, 100 mm in width, and 40 mm in height. This gives product designers the opportunity to build homogenous solutions across different current and voltage ratings in order to implement optimized power converter concepts. The main focus in the development of this platform was to achieve flexibility and reliability while assuring optimal integration into customer systems. 

The new housing for high-power IGBT modules is designed to cover the full-voltage range of IGBT chips from 3.3 kV to 6.5 kV. Principle applications of the new package are expected in industrial drives, traction, renewable energy, and power transmission applications.

The various uses and in consequence, the market leadership of the Infineon 3.3 kV IHV (IGBT High-Voltage) Modules is based on customers, that especially like its supreme reliability in harshest environmental conditions, proven by field records over decades, and the unbeatable power density, which enables in consequence their own success

The 4.5 kV trench plus field stop IGBT and field stop diode chips fill the gap between the voltage classes of 3.3 kV and 6.5 kV IGBT modules. Using IHV modules enables participation in the strongly growing market of transmission and distribution, as well as in heavy-duty medium voltage drives and transportation.

The 6.5 kV IHV addresses customers’ demand for high power density, efficiency, long lifecycle, reliability, and reduced system costs in high-voltage applications like traction and HVDC. Using 4.5 kV IHV modules enables participation in the strongly growing market of transmission and distribution, as well as in heavy-duty medium voltage drives and transportation.

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Thyristors have dominated this application for many decades. Nowadays thyristors as well as IGBTs are used in HVDC systems and FACTS to fulfill different needs.