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| Funder | European Commission |
|---|---|
| Recipient Organization | Avl List Gmbh |
| Country | Austria |
| Start Date | May 01, 2021 |
| End Date | Nov 30, 2024 |
| Duration | 1,309 days |
| Number of Grantees | 33 |
| Roles | Participant; Coordinator |
| Data Source | European Commission |
| Grant ID | 101007281 |
The European Green Deal initiative by the EU commission strives for sustainable mobility and efficient use of resources.
Within HiEFFICIENT the project partners will work towards these goals and will develop the next generation of wide band-gap semiconductors (WBG) in the area of smart mobility.
To boost this development and the market introduction in automotive applications, HiEFFICIENT partners have set ambitious goals to gain higher acceptance and achieve the maximum benefit in using WBG semiconductors:1.) Reduction in Volume of 40%, by means of integration on all levels (component-, subsystem- and system level),2.) Increase efficiency beyond 98%, while reducing losses of up to 50%,3.) Increase reliability of wide band-gap power electronic system to ensure a lifetime improvement of up to 20%.To accomplish the targeted goals, the partners will work on industrial use cases to demonstrate the key achievements and the progress that goes beyond state of the art.
This includes, amongst others, modular inverters with different voltage levels (such as 48V, 400V, 800V), flexible on- and multi-use off-board chargers for different voltage levels, multi-purpose DC/DC converters and test systems for power electronics lifetime testing.
These use cases are led by OEMs and other industrial partners, who define requirements and specifications for the envisioned systems.
The project work starts at component-level, developing highly integrated GaN and SiC devices, and is followed by multi-objective design optimization and virtual prototyping approaches.
High integration means big challenges in thermal management, which will be addressed by the development of advanced cooling concepts and modularity for the sake of maintainability and flexibility for future applications.
Finally, the demonstrators are integrated in relevant environments to proof the concepts and the applicability for electric drivetrains with higher integration, higher efficiency, and higher reliability.
Slovenska Technicka Univerzita V Bratislave; Nano Design Sro; Avl Arastirma Ve Muhendislik Sanayi Ve Ticaret Limited Sirketi; Interactive Fully Electrical Vehicles Srl; Infineon Technologies Austria Ag; Ideas & Motion Srl; Nederlandse Organisatie Voor Toegepast Natuurwetenschappelijk Onderzoek Tno; At & S Austria Technologie & Systemtechnik Aktiengesellschaft; Mercedes-Benz Ag; Rheinisch-Westfaelische Technische Hochschule Aachen; Fraunhofer Gesellschaft Zur Forderung Der Angewandten Forschung Ev; Interuniversitair Micro-Electronica Centrum; Vrije Universiteit Brussel; Elaphe Pogonske Tehnologije Doo; Atlas Technologies Bv; Infineon Technologies Ag; Set Power Systems Gmbh; Virtual Vehicle Research Gmbh; Universita Di Pisa; Technische Universitat Dortmund; Valeo Electrification Sas; Silicon Austria Labs Gmbh; Technische Universitaet Chemnitz; Politecnico Di Torino; Avl List Gmbh; Tdk Electronics Ag; Fh Joanneum Gesellschaft Mbh; Ford Otomotiv Sanayi Anonim Sirketi; Technische Universiteit Eindhoven; Flexible and Green Mechatronics Solutions Srl; Avl Software and Functions Gmbh; Powerdale; Heliox Automotive Bv
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