Certifications

iso9001
iso14001
icas
Delivery
security
warranty
roiginal
RoHS
UL
Millions of Electronic Parts In Stock. Price & Lead Time Quotes within 24 Hours.

First SiC intelligent power modules delivered to thales

Aug 1 2016 2016-08 Power Cree/Wolfspeed
Article Cover
CISSOID, the leader in high-temperature and extended lifetime semiconductor solutions, announces the delivery of the first prototypes of a 3-phase 1200V/100A SiC MOSFET Intelligent Power Modules (IPM) to Thales Avionics Electrical Systems.

     CISSOID, the leader in high-temperature and extended lifetime semiconductor solutions, announces the delivery of the first prototypes of a 3-phase 1200V/100A SiC MOSFET Intelligent Power Modules (IPM) to Thales Avionics Electrical Systems. This module, developed with the support of Clean Sky Joint Undertaking, will help to increase power converters' density, by decreasing weight and size, for power generation and electromechanical actuators in More-Electrical Aircraft.

     This IPM offers an optimal integration of the gate driver with power transistors together in order to take advantage of the full benefits of Silicon Carbide (SiC), i.e. low switching losses and high operating temperature. Leveraging on HADES2® Isolated Gate Driver that incorporates years of development in driving SiC transistors, it combines advanced packaging technologies enabling a reliable operation of power modules in extreme conditions.

     For this Aerospace module, a 3-phase power inverter topology was selected while other topologies are being investigated for HEV and Railways projects. In this 3-phase topology, each of the 6 switch positions includes a 100A SiC MOSFET transistor and a 100A SiC Schottky freewheeling diode. These devices can block voltages up to 1200V, which provide enough headroom against overvoltages in a 540V Aerospace DC bus, and the module is designed to be easily upgraded with 1700V/150A SiC devices. The transistors have a typical On resistance of 12.5mOhms or 8.5mOhms depending on their current rating, Resistance of 12.5 Mohms or 8.5 Mohms depending on their current rating, either 100A or 150A. Resistance of 12.5 Mohms or 8.5 Mohms depending on their current rating, either 100A or 150A. Resistance of 12.5 Mohms or 8.5 Mohms depending on their current rating, either 100a or 150a.

     Special care was put on thermal aspects during the design of the module. First, all the materials have been selected to allow reliable operation at high junction temperatures, up to 200°C with peaks at 225°C, in order to decrease cooling requirements. This materials' selection also enables high case and storage temperatures, up to 150°C. Finally, the module is based on high-performance materials such as AlSiC baseplate, AlN substrates and Silver Sintering in order to offer near perfect CTE matching with SiC devices and high robustness against thermal and power cycling.

     Co-designing the gate driver with the power module in a single IPM allowed CISSOID to optimize the gate driver circuit taking into account parasitic inductances of the power module while minimizing them when possible. Minimizing parasitic inductances allows switching SiC transistors faster and to lower switching losses. An IPM also offers a plug-and-play solution to power electronic designers who save a lot of time in the design of the gate driver board, which is particularly challenging with SiC transistors. They can then focus on the design of high density power converters taking advantage of SiC.

     “It was a pleasure to work with CISSOID team in the frame of this Clean Sky program. They showed a great flexibility in proposing us solutions addressing the requirements of the next generation of high density power converters for the More-Electrical-Aircraft” said Taoufik Bensalah, Power Converter Design Team Manager at Thales Avionics. Etienne Vanzieleghem, VP Engineering at CISSOID added: “We are very glad about this fruitful cooperation with Thales and with the open discussions we had in specifying this IPM. We also thank Clean Sky for making this cooperation possible, which is a good example of CISSOID combined expertise in packaging and circuit design. This project was also an opportunity to strengthen our cooperation with PRIMES platform in Tarbes which is hosting CISSOID packaging team.”

The Products You May Be Interested In

1191 1191 SWITCH PUSHBUTTON SPST-NO YELLOW 8910

More on Order

1192 1192 SWITCH PUSHBUTTON SPST-NO WHT 6984

More on Order

1733 1733 ANEMOMETER WIND SENSOR ANLG VOUT 6912

More on Order

1766 1766 FAST VIBRATION SENSOR SWITCH (EA 23136

More on Order

3809 3809 SMALL 6V 1W SOLAR PANEL - SILVER 5166

More on Order

1170 1170 MAGNET ROUND, SQUARE FRAME 4644

More on Order

633 633 STARTER PK EL STRIP 100CM BLUE 4302

More on Order

2432 2432 DOTSTAR LED STRIP - ADDRESSABLE 8244

More on Order

2507 2507 NEOPIXEL DIGITAL RGB LED STRIP - 4572

More on Order

2537 2537 NEOPIXEL DIGITAL RGB LED STRIP - 7416

More on Order

2042 2042 ADDRESS LED MATRIX I2C GREEN 7290

More on Order

2043 2043 ADDRESS LED MATRIX I2C YELLOW 5274

More on Order

4310 4310 FLEXIBLE SILICONE NEON-LIKE SKIN 6858

More on Order

2760 2760 ADDRESS LED DISCR SER RGBW 1=10 8676

More on Order

1376 1376 ADDRESS LED STRIP SERIAL RGB 5M 7236

More on Order

2856 2856 ADDRESS LED RING SERIAL RGBW 6324

More on Order

2970 2970 ADDRESS LED STRIP SERIAL RGB 1M 5760

More on Order

2240 2240 ADDRESS LED STRIP SERIAL RGB 4M 6372

More on Order

2761 2761 ADDRESS LED DISCR SER RGBW 1=10 7284

More on Order

2226 2226 ADDRESS LED MODULE SERIAL RGB 7272

More on Order

3860 3860 FLEXIBLE SILICONE LED STRIP - 1 7776

More on Order

1480 1480 2.2 COLOR TFT LCD DISP W/MICROSD 7512

More on Order

1814 1814 LED BAR 10-SEGMENT GREEN 5562

More on Order

4164 4164 FIBER OPTIC TUBE 5MM DIA 1M 6120

More on Order