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- Parallel NOR flash
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FM3 32-bit Arm® Cortex®-M3 microcontroller (MCU) families
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FM4 32-bit Arm® Cortex®-M4 microcontroller (MCU) families
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32-bit TriCore™ AURIX™ – TC2x
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- AURIX™ family – TC21xL
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32-bit TriCore™ AURIX™ – TC3x
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- AURIX™ family - TC32xLP
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- PSOC™ 4 Arm® Cortex®-M0/M0+
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- 32-bit XMC1000 industrial microcontroller Arm® Cortex®-M0
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- Legacy 32-bit MCU
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- AC-DC LED driver ICs
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- 32-bit PSOC™ Control Arm® Cortex®-M33 MCU
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High-side switches
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- PROFET™ +2 12V | Automotive smart high-side switch
- PROFET™ Industrial | Smart high-side switch
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- EZ-USB™ CX3 MIPI CSI2 to USB 3.0 camera controller
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- EZ-PD™ CCG3 USB type-C port controller PD
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- EZ-PD™ ACG1F one-port USB-C controller
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- EZ-PD™ CCG6DF dual-port and CCG6SF single-port USB-C PD controllers
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- EZ-PD™ CCG7SAF Automotive Single-port USB-C PD + DC-DC Controller + FETs
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Infineon koordiniert breit angelegte Forschungsinitiative für Hochleistungscomputer in hochautomatisierten vernetzten Fahrzeugen
Infineon koordiniert breit angelegte Forschungsinitiative für Hochleistungscomputer in hochautomatisierten vernetzten Fahrzeugen
Wirtschaftspresse
München, 28. Februar 2023 – Sie werden das Herz von hoch automatisierten vernetzten Fahrzeugen bilden: leistungsstarke im Auto verbaute Computer, die alle Daten und Informationen so schnell und hochzuverlässig verarbeiten, dass sie Fahrzeuge sicher durch den Verkehr steuern können. Das Forschungsprojekt Mannheim-CeCaS (CentralCarServer) soll eine entsprechende Automotive Supercomputing Plattform entwickeln. 30 Forschungspartner aus Industrie und Hochschulen arbeiten an dem Projekt, das im Rahmen einer großangelegten Förderinitiative der Bundesregierung zur Digitalisierung der Automobilität gefördert wird. Infineon führt und koordiniert das Projekt. Heute haben sich Vertreter*innen von allen beteiligten Institutionen zum Kick-off am Campeon, dem Unternehmenssitz von Infineon, getroffen.
„Die hohe Akzeptanz von Fahrerassistenzsystemen zeigt, dass die Automatisierung des Fahrens nicht aufzuhalten ist“, sagt Peter Schiefer, Division President Automotive von Infineon. „Für eine starke Automobilindustrie in Deutschland und Europa geht es auch bei diesem Thema um digitale Souveränität. Deshalb bündeln wir die Kräfte, um zuverlässige leistungsstarke Computing-Strukturen für hochautomatisierte Fahrzeuge zu entwickeln. Als Weltmarktführer bei Halbleitern für die Automobilindustrie übernimmt Infineon die Koordination dieses Forschungsprojekts und steuert hohe Automotive-Systemkompetenz bei.“
Das Forschungsprojekt Mannheim-CeCaS widmet sich der Erforschung und Entwicklung einer ganzheitlichen zentralen Rechenplattform für künftige hochautomatisierte Fahrzeuge. Es soll eine Lücke schließen, die sich bei vernetzten und elektrifizierten Automobilen abzeichnet: Zu deren Alltagstauglichkeit fehlen noch energieeffiziente und kostengünstige High-End-Computer, die mit den steigenden Anforderungen an Rechenleistung und Komplexität Schritt halten und zugleich die hohen Ansprüche an eine Qualifizierung für Automobile erfüllen. Es geht um die Verbindung von Sicherheit und Höchstleistung, um Automotive Supercomputing. Dazu gehören sowohl eigens entworfene Prozessoren als auch Schnittstellen und Systemarchitekturen.
Die zentrale Recheneinheit soll auf neuartigen automotive-qualifizierten Hochleistungsprozessoren in nichtplanarer Transistortechnologie (FinFET) basieren. Applikationsspezifische Hardware-Beschleuniger sowie eine adaptive Software-Plattform für autonome Fahrzeuge werden die Prozessoren ergänzen. Dabei werden Ansätze für sogenannte „gefaltete neuronale Netze“ sowie ereignisbasierte neuromorphe Beschleuniger untersucht. Notwendige Anpassungen des Bordnetzes sollen dabei ebenso betrachtet werden wie eine automotive-taugliche Aufbau- und Verbindungstechnik. Das Konsortium strebt eine vollständige Automotive-Qualifizierung (ASIL-D) auf Systemebene an.
Das Bundesministerium für Bildung und Forschung (BMBF) fördert Mannheim-CeCaS mit zirka 46 Millionen Euro im Rahmen seiner Initiative „Mannheim“, die sich namentlich auf den Geburtsort des Automobils bezieht und jetzt dessen Entwicklung durch die Digitalisierung auf eine neue Stufe heben soll. Die Projektbeteiligten unter der Leitung von Infineon bilden die gesamte Kette von Zulieferern, Spezialisten, Forschungsinstituten und Universitäten ab. Zu den größeren Unternehmen zählen Bosch, Continental und ZF Friedrichshafen. Neben verschiedenen Fraunhofer-Instituten sind auch Partner wie die TU München (TUM) und das Karlsruher Institut für Technologie (KIT) dabei. Für das zu entwickelnde zukunftsfähige Zentralrechnerkonzept der Autoelektronik veranschlagen die insgesamt 30 Partner ein Gesamtbudget von rund 90 Millionen Euro. Damit bildet Mannheim-CeCaS eines der größten geförderten deutschen Kooperationsprojekte mit dreijähriger Laufzeit.
Die 30 Partner des CeCaS-Forschungsprojekts:
Bosch, Continental Automotive, ZF Friedrichshafen, Hella, AVL Software & Functions, Ambrosys, Infineon Technologies AG (Koordination; mit Infineon Technologies Dresden GmbH & Co. KG und Infineon Technologies Semiconductor GmbH), Kernkonzept, Berliner Nanotest und Design, Missing Link Electronics, Inchron, Glück Engineering, STTech, Steinbeis ZFW, Swissbit Deutschland, KIT Karlsruher Institut für Technologie, FZI Forschungszentrum Informatik, Technische Universität München AIR, LIS, SEC, Hochschule München, Universität zu Lübeck, Technische Universität Chemnitz, Fraunhofer ENAS, IMWS, IPMS und IZM.
Die Infineon Technologies AG ist ein weltweit führender Anbieter von Halbleiterlösungen für Power-Systems und das Internet der Dinge (IoT). Mit seinen Produkten und Lösungen treibt Infineon die Dekarbonisierung und Digitalisierung voran. Das Unternehmen hat weltweit rund 56.200 Beschäftigten und erzielte im Geschäftsjahr 2022 (Ende September) einen Umsatz von rund 14,2 Milliarden Euro. Infineon ist in Frankfurt unter dem Symbol „IFX“ und in den USA im Freiverkehrsmarkt OTCQX International unter dem Symbol „IFNNY“ notiert.
Pressefotos
Peter Schiefer
Peter Schiefer, Division President Automotive bei Infineon
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Information Number : INFXX202302-070