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Infineon’s CoolSiC™ devices support bi-directional inverter from Delta to let electric vehicles become emergency backup power

CoolSiC™ products from Infineon Technologies AG are adopted by Delta Electronics, a Taiwan-based global leading provider of power and energy management solutions, to allow for a big step towards energy transition and carbon neutrality with green power. With the successful development of bi-directional inverters, a hybrid three-in-one system that integrates solar, energy storage and charging of electric vehicles (EV), Delta is enabling EVs to become an household emergency backup power.

The bi-directional inverter can be used to supply power to charge electric vehicles (EVs) and home batteries, while acting as a backup power for unexpected outages and a high-efficiency green energy control core. Products from Infineon include the 1200 V M1H CoolSiC EasyPACK™ 1B modules and 1200 V CoolSiC D²PAK 7-pin, a surface mount device. The integration of three applications is also a milestone. This three-in-one system was realized in a compact package of just 425 x 865 x 160 mm 3. With an output power of about 10 kW, the system allows a maximum continuous current of 34 A and achieves peak efficiencies of more than 97.5 percent.

“Infineon is a trusted brand that has been spearheading the development of power semiconductors and power efficiency for many years”, said Raymond Lee, director of Delta PV Inverter business unit. “With the company's devices, we were able to integrate three applications into one system, which allows us to take a giant leap toward green energy.”

“We are proud to be a big part of this project, representing a major milestone on the road to carbon neutrality,” said Dr. Peter Wawer, President of Infineon’s Industrial Power Control Division. “We look forward to a long-term collaboration between Infineon and Delta and are proud that our devices contribute to this smart energy solution.”

One of the essential elements for creating the three-in-one system includes the1200 V M1H CoolSiC EasyPACK 1B module (F4-23MR12W1M1_B11) with integrated NTC temperature sensor and PressFIT contact technology. The module offers maximum flexibility and high-current density. With best-in-class package technology combined with CoolSiC MOSFETs, the module features a low-inductive design with minimal switching and conduction losses. Furthermore, high-switching frequency operation is enabled on the customer side, which allows for smaller system designs. The EasyPACK module helps optimize the development time and reduces the overall costs for the customer.

Several other components from Infineon are used in the system, including devices using CoolMOS™ C7 and TRENCHSTOP™ 5 IGBT technologies. Additionally, the 1200 V CoolSiC MOSFET (IMBG120R350M1H) in a surface-mounted device (SMD) package, the D²PAK 7-pin, is also a part of this system. This device uses .XT interconnection technology for best-in-class thermal properties, as well as the Kelvin source concept. The MOSFETs ensure very low switching losses, improving the system’s efficiency.

The devices include a 3 µs short-circuit resistance, and the MOSFETs provide full slew rate (dV/dt) control as well as a benchmark gate threshold voltage (V GS(th)) of 4.5 V. They are also robust against parasitic turn-on and can be operated with a turn-off voltage of 0 V. Furthermore, the MOSFETs contain a robust body diode that enables hard commutation. The package creepage and clearance distances are 6.1 mm. Additionally, the SMD package allows direct integration into PCBs with natural convection cooling without additional heat sinks.

More information about Infineon’s contribution to energy efficiency: www.infineon.com/green-energy

2022072901 / 29.07.2022 / Electronic-components / Infineon Technologies AG /

Infineon launches next-generation ZVS flyback converter chipset for advanced USB-C PD adapters and chargers
The growing popularity of USB-C power delivery (PD) charging increases the demand for compatible chargers. Users now seek powerful yet compact adapters.

Infineon Lighting Shoe: Infineon develops worldwide unique shoe prototype with adidas that listens to music and reacts to it with lighting effects

Infineon’s single-chip solution for NFC lock applications enables KISS to take self-storage to the next level with new smart lock solution

Infineon introduces new automotive 60 V and 120 V OptiMOS™ 5 in TOLx packages for 24 V-72 V supplied high power ECUs
The electrification of the transportation system is advancing continuously. In addition to passenger cars, 2- and 3-wheelers as well as light vehicles are increasingly being electrified. Therefore, the automotive market for Electronic Control Units (ECUs) powered by 24 V-72 V is expected to keep growing in the coming years.

Infineon presents highly integrated XENSIV™ 60 GHz radar sensor for consumer electronics, IoT applications, and healthcare devices

Engine management and pneumatic seat systems: Infineon launches two XENSIV™ barometric air pressure sensors

Infineon and SCHWEIZER extend cooperation in chip embedding to develop more efficient silicon carbide automotive solutions

Infineon introduces a new single-stage flyback controller for battery charging applications, enabling hassle-free and scalable designs
Battery-powered appliances, one of the industry’s fastest-growing segments, require energy-efficient, robust, and cost-effective battery charging. For this reason Infineon Technologies AG extends its offering of AC-DC controller ICs by introducing the ICC80QSG single-stage PWM controller for flyback topologies.

Infineon’s CoolSiC™ devices support bi-directional inverter from Delta to let electric vehicles become emergency backup power

Infineon and Oxford Ionics join forces to develop leading Trapped Ion Quantum Processors
Infineon Technologies AG and Oxford Ionics announce a collaboration to build high-performance and fully integrated quantum processing units (QPUs).

Optimized CoolSiC™ MOSFETs 650 V in D²PAK for lowest losses in the application and highest reliability in operation

World’s first TPM 2.0 with open-source software stack cuts down security integration efforts in industrial, automotive and IoT applications
Trusted Platform Modules (TPM) enable secured remote software updates, disc encryption and user authentication. Hence, they are crucial for connected industrial, automotive and other embedded devices.

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