Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Master Thesis | MT | 0,5 | 25,0 | M2.05280.40.011 |
Master Thesis Seminar | SE | 2,0 | 2,0 | M2.05280.40.021 |
Vertiefung: Electronic Systems | Typ | SWS | ECTS-Credits | |
Advanced Electronic Systems | ILV | 3,0 | 5,0 | M2.05282.20.091 |
Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Bachelorarbeit Seminar 2 | SE | 1,0 | 1,0 | B2.05270.60.480 |
Bachelorprüfung | DP | 0,0 | 2,0 | B2.05270.60.470 |
Projekt 1 | PT | 3,0 | 5,0 | B2.05270.40.170 |
Seminar Berufspraktikum | SE | 2,0 | 2,0 | B2.00000.60.470 |
Vertiefung: Elektronik | Typ | SWS | ECTS-Credits | |
Geräteentwicklung | ILV | 3,0 | 4,0 | B2.05272.40.260 |
Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Bachelorarbeit Seminar 2 | SE | 1,0 | 1,0 | B2.05270.60.480 |
Bachelorprüfung | DP | 0,0 | 2,0 | B2.05270.60.470 |
Bachelorprüfung | DP | 0,0 | 2,0 | B2.05270.60.470 |
Bachelorprüfung | DP | 0,0 | 2,0 | B2.05270.60.470 |
Seminar Berufspraktikum | SE | 2,0 | 2,0 | B2.00000.60.470 |
Seminar Berufspraktikum | SE | 2,0 | 2,0 | B2.00000.60.470 |
Seminar Berufspraktikum | SE | 2,0 | 2,0 | B2.00000.60.470 |
Systems Engineering Ausgewählte Kapitel - Gruppe I | SE | 3,0 | 4,0 | B2.05270.60.460 |
Vertiefung: Elektronik | Typ | SWS | ECTS-Credits | |
Geräteentwicklung | ILV | 3,0 | 4,0 | B2.05272.40.260 |
Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Automotive Safety | ILV | 1,5 | 2,0 | VEEMS-3.06 |
Control Systems Lab | LB | 2,0 | 3,0 | VEEMS-1.11 |
Power Train Simulation | ILV | 2,0 | 3,0 | VEEMS-3.03 |
Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Electromagnetic Interference in Power Electronics | SE | 3,0 | 5,0 | M2.08860.30.015 |
Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Dynamische Systeme | ILV | 3,5 | 5,0 | M2.06860.10.060 |
Vertiefung: Electronic Systems | Typ | SWS | ECTS-Credits | |
---|---|---|---|---|
FPGA Systems Prototyping | ILV | 3,0 | 5,0 | M2.05282.30.061 |
Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Bachelorarbeit Seminar 1 | SE | 1,0 | 1,0 | B2.05270.50.480 |
Mess- und Sensortechnik | ILV | 4,0 | 5,0 | B2.05270.30.930 |
Vertiefung: Elektronik | Typ | SWS | ECTS-Credits | |
Elektronische Schaltungstechnik 1 | ILV | 5,0 | 7,0 | B2.05272.30.160 |
Lehrveranstaltung | Typ | SWS | ECTS-Credits | LV-Nummer |
---|---|---|---|---|
Bachelorarbeit Seminar 1 | SE | 1,0 | 1,0 | B2.05270.50.480 |
Bachelorarbeit Seminar 1 | SE | 1,0 | 1,0 | B2.05270.50.480 |
Bachelorarbeit Seminar 1 | SE | 1,0 | 1,0 | B2.05270.50.480 |
Mess- und Sensortechnik | ILV | 4,0 | 5,0 | B2.05270.30.930 |
Mess- und Sensortechnik | ILV | 4,0 | 5,0 | B2.05270.30.930 |
Mess- und Sensortechnik | ILV | 4,0 | 5,0 | B2.05270.30.930 |
Projekt 2 | PT | 5,0 | 9,0 | B2.05270.50.190 |
Projekt 2 | PT | 5,0 | 9,0 | B2.05270.50.190 |
Projekt 2 | PT | 5,0 | 9,0 | B2.05270.50.190 |
Vertiefung: Elektronik | Typ | SWS | ECTS-Credits | |
Elektronische Schaltungstechnik 1 | ILV | 5,0 | 7,0 | B2.05272.30.160 |
Entwurf Digitaler Systeme | ILV | 2,0 | 2,0 | B2.05272.50.250 |
Leistungselektronik | ILV | 2,0 | 2,0 | B2.05272.50.400 |
Titel | Autor | Jahr |
---|---|---|
Design and implementation of an automated device for scanning EMI radiation in PCB | Eduardo José Guerra Yústiz | 2025 |
FPAG based High speed arbitrary waveform generator for power cycling test on micro-controllers | DAEYONG PARK | 2024 |
Development and System Validation of a Control and Protection Concept for FET-based Solid State Relays | Ivan Bosnic | 2022 |
Titel | Autor | Jahr |
---|---|---|
Design and implementation of an automated device for scanning EMI radiation in PCB | Eduardo José Guerra Yústiz | 2025 |
Titel | Autor | Jahr |
---|---|---|
FPAG based High speed arbitrary waveform generator for power cycling test on micro-controllers | DAEYONG PARK | 2024 |
Titel | Autor | Jahr |
---|---|---|
Development and System Validation of a Control and Protection Concept for FET-based Solid State Relays | Ivan Bosnic | 2022 |
Titel | Autor | Jahr |
---|---|---|
High-Voltage Current Limiter Module | 2025 | |
Sense on wafer backside | 2023 | |
Optimale isolierende Materialien für das Erwärmen von einem Liter Wasser zum Kochen von Teigwaren | 2022 | |
Entwicklung eines Fehlererzeugungsmoduls für die Überprüfung von Mikrochips | 2021 | |
Thermal analysis of PCBs | 2021 | |
Versorgungsspannungsdesign eines High-End-Audioverstärkersystems | 2021 |
Titel | Autor | Jahr |
---|---|---|
High-Voltage Current Limiter Module | 2025 |
Titel | Autor | Jahr |
---|---|---|
Sense on wafer backside | 2023 |
Titel | Autor | Jahr |
---|---|---|
Optimale isolierende Materialien für das Erwärmen von einem Liter Wasser zum Kochen von Teigwaren | 2022 |
Titel | Autor | Jahr |
---|---|---|
Entwicklung eines Fehlererzeugungsmoduls für die Überprüfung von Mikrochips | 2021 | |
Thermal analysis of PCBs | 2021 | |
Versorgungsspannungsdesign eines High-End-Audioverstärkersystems | 2021 |
Laufzeit | Oktober/2023 - September/2027 |
Projektleitung | |
Projektmitarbeiter*innen | |
Forschungsschwerpunkt | Bildungsforschung |
Studiengänge | |
Forschungsprogramm | DIGITAL-2022-SKILLS-03-SPECIALISED-EDU, DIGITAL-SIMPLE |
Förderinstitution/Auftraggeber |
The EU Chips Act aims to increase Europe‘s global production share of semiconductors to 20% by 2030, leading to a need for a skilled workforce to support this growth. Additionally, the EU‘s Green Deal initiative focuses on a transition to sustainable and energy efficient technologies, further emphasizing the need for expertise in sustainable chip development and green applications. There is an EU wide shortage of skilled workers in microelectronics. Addressing this shortage will be crucial in meeting the goals of both the EU Chips Act and the Green Deal. Furthermore, the next generation of students is largely interested in contributing to a sustainable environment. Providing them with the opportunity to gain deeper expertise in this field will align their skills with the industry‘s future needs. The proposed project „Green Chips-EDU“ supports the aforementioned goals by addressing the needs and challenges of a green and digital transition in the microelectronics industry. The consortium, made up of 15 key players from 7 EU countries, aims to build an attractive education ecosystem in green microelectronics by integrating the knowledge triangle of excellent education, industries needs and research challenges. The consortium includes 6 Unite! partners working on a harmonized curriculum focusing on energy efficiency and the development of sustainable integrated circuits. The project addresses all objectives from the call by offering a wide range of degree programs including mutual recognition as well as self-standing modules, implementing staff and student mobility, digital learning formats and upgrading infrastructure. About 600 students are planned to receive degrees or certificates in green electronics. In addition, summer schools, sustainability hackathons, learn-repair cafés as well as expert lectures by the partner companies and research institutions are organized to attract and train students to counteract the skills shortage in microelectronics in the EU.
- European Commission (Fördergeber/Auftraggeber)
- Politecnico Di Torino
- Technische Universität Darmstadt
- Universitat Politecnica de Catalunya
- Institut Polytechnique de Grenoble
- Instituto Superior Tecnico
- INESC ID
- Infineon Technologies Austria AG
- KONCAR - ELECTRONICS AND INFORMATICS Inc.
- Silicongate LDA
- JLG Formations
- AEDVICES Consulting
- RUSZ - Verein zur Förderung der Sozialwirtschaft
- BK-Business Konsens OG
- CADENCE DESIGN SYSTEMS GMBH
- STMICROELECTRONICS (ALPS) SAS
- ONG "THE STERN STEWART INSTITUTE"/LYCEE PRIVE SHORGE
- Technische Universität Graz (Lead Partner)
Laufzeit | Oktober/2023 - September/2027 |
Projektleitung | |
Projektmitarbeiter*innen | |
Forschungsschwerpunkt | Bildungsforschung |
Studiengänge | |
Forschungsprogramm | DIGITAL-2022-SKILLS-03-SPECIALISED-EDU, DIGITAL-SIMPLE |
Förderinstitution/Auftraggeber |
The EU Chips Act aims to increase Europe‘s global production share of semiconductors to 20% by 2030, leading to a need for a skilled workforce to support this growth. Additionally, the EU‘s Green Deal initiative focuses on a transition to sustainable and energy efficient technologies, further emphasizing the need for expertise in sustainable chip development and green applications. There is an EU wide shortage of skilled workers in microelectronics. Addressing this shortage will be crucial in meeting the goals of both the EU Chips Act and the Green Deal. Furthermore, the next generation of students is largely interested in contributing to a sustainable environment. Providing them with the opportunity to gain deeper expertise in this field will align their skills with the industry‘s future needs. The proposed project „Green Chips-EDU“ supports the aforementioned goals by addressing the needs and challenges of a green and digital transition in the microelectronics industry. The consortium, made up of 15 key players from 7 EU countries, aims to build an attractive education ecosystem in green microelectronics by integrating the knowledge triangle of excellent education, industries needs and research challenges. The consortium includes 6 Unite! partners working on a harmonized curriculum focusing on energy efficiency and the development of sustainable integrated circuits. The project addresses all objectives from the call by offering a wide range of degree programs including mutual recognition as well as self-standing modules, implementing staff and student mobility, digital learning formats and upgrading infrastructure. About 600 students are planned to receive degrees or certificates in green electronics. In addition, summer schools, sustainability hackathons, learn-repair cafés as well as expert lectures by the partner companies and research institutions are organized to attract and train students to counteract the skills shortage in microelectronics in the EU.
- European Commission (Fördergeber/Auftraggeber)
- Politecnico Di Torino
- Technische Universität Darmstadt
- Universitat Politecnica de Catalunya
- Institut Polytechnique de Grenoble
- Instituto Superior Tecnico
- INESC ID
- Infineon Technologies Austria AG
- KONCAR - ELECTRONICS AND INFORMATICS Inc.
- Silicongate LDA
- JLG Formations
- AEDVICES Consulting
- RUSZ - Verein zur Förderung der Sozialwirtschaft
- BK-Business Konsens OG
- CADENCE DESIGN SYSTEMS GMBH
- STMICROELECTRONICS (ALPS) SAS
- ONG "THE STERN STEWART INSTITUTE"/LYCEE PRIVE SHORGE
- Technische Universität Graz (Lead Partner)
Laufzeit | Oktober/2023 - September/2027 |
Projektleitung | |
Projektmitarbeiter*innen | |
Forschungsschwerpunkt | Bildungsforschung |
Studiengänge | |
Forschungsprogramm | DIGITAL-2022-SKILLS-03-SPECIALISED-EDU, DIGITAL-SIMPLE |
Förderinstitution/Auftraggeber |
The EU Chips Act aims to increase Europe‘s global production share of semiconductors to 20% by 2030, leading to a need for a skilled workforce to support this growth. Additionally, the EU‘s Green Deal initiative focuses on a transition to sustainable and energy efficient technologies, further emphasizing the need for expertise in sustainable chip development and green applications. There is an EU wide shortage of skilled workers in microelectronics. Addressing this shortage will be crucial in meeting the goals of both the EU Chips Act and the Green Deal. Furthermore, the next generation of students is largely interested in contributing to a sustainable environment. Providing them with the opportunity to gain deeper expertise in this field will align their skills with the industry‘s future needs. The proposed project „Green Chips-EDU“ supports the aforementioned goals by addressing the needs and challenges of a green and digital transition in the microelectronics industry. The consortium, made up of 15 key players from 7 EU countries, aims to build an attractive education ecosystem in green microelectronics by integrating the knowledge triangle of excellent education, industries needs and research challenges. The consortium includes 6 Unite! partners working on a harmonized curriculum focusing on energy efficiency and the development of sustainable integrated circuits. The project addresses all objectives from the call by offering a wide range of degree programs including mutual recognition as well as self-standing modules, implementing staff and student mobility, digital learning formats and upgrading infrastructure. About 600 students are planned to receive degrees or certificates in green electronics. In addition, summer schools, sustainability hackathons, learn-repair cafés as well as expert lectures by the partner companies and research institutions are organized to attract and train students to counteract the skills shortage in microelectronics in the EU.
- European Commission (Fördergeber/Auftraggeber)
- Politecnico Di Torino
- Technische Universität Darmstadt
- Universitat Politecnica de Catalunya
- Institut Polytechnique de Grenoble
- Instituto Superior Tecnico
- INESC ID
- Infineon Technologies Austria AG
- KONCAR - ELECTRONICS AND INFORMATICS Inc.
- Silicongate LDA
- JLG Formations
- AEDVICES Consulting
- RUSZ - Verein zur Förderung der Sozialwirtschaft
- BK-Business Konsens OG
- CADENCE DESIGN SYSTEMS GMBH
- STMICROELECTRONICS (ALPS) SAS
- ONG "THE STERN STEWART INSTITUTE"/LYCEE PRIVE SHORGE
- Technische Universität Graz (Lead Partner)
Laufzeit | Oktober/2023 - September/2027 |
Projektleitung | |
Projektmitarbeiter*innen | |
Forschungsschwerpunkt | Bildungsforschung |
Studiengänge | |
Forschungsprogramm | DIGITAL-2022-SKILLS-03-SPECIALISED-EDU, DIGITAL-SIMPLE |
Förderinstitution/Auftraggeber |
The EU Chips Act aims to increase Europe‘s global production share of semiconductors to 20% by 2030, leading to a need for a skilled workforce to support this growth. Additionally, the EU‘s Green Deal initiative focuses on a transition to sustainable and energy efficient technologies, further emphasizing the need for expertise in sustainable chip development and green applications. There is an EU wide shortage of skilled workers in microelectronics. Addressing this shortage will be crucial in meeting the goals of both the EU Chips Act and the Green Deal. Furthermore, the next generation of students is largely interested in contributing to a sustainable environment. Providing them with the opportunity to gain deeper expertise in this field will align their skills with the industry‘s future needs. The proposed project „Green Chips-EDU“ supports the aforementioned goals by addressing the needs and challenges of a green and digital transition in the microelectronics industry. The consortium, made up of 15 key players from 7 EU countries, aims to build an attractive education ecosystem in green microelectronics by integrating the knowledge triangle of excellent education, industries needs and research challenges. The consortium includes 6 Unite! partners working on a harmonized curriculum focusing on energy efficiency and the development of sustainable integrated circuits. The project addresses all objectives from the call by offering a wide range of degree programs including mutual recognition as well as self-standing modules, implementing staff and student mobility, digital learning formats and upgrading infrastructure. About 600 students are planned to receive degrees or certificates in green electronics. In addition, summer schools, sustainability hackathons, learn-repair cafés as well as expert lectures by the partner companies and research institutions are organized to attract and train students to counteract the skills shortage in microelectronics in the EU.
- European Commission (Fördergeber/Auftraggeber)
- Politecnico Di Torino
- Technische Universität Darmstadt
- Universitat Politecnica de Catalunya
- Institut Polytechnique de Grenoble
- Instituto Superior Tecnico
- INESC ID
- Infineon Technologies Austria AG
- KONCAR - ELECTRONICS AND INFORMATICS Inc.
- Silicongate LDA
- JLG Formations
- AEDVICES Consulting
- RUSZ - Verein zur Förderung der Sozialwirtschaft
- BK-Business Konsens OG
- CADENCE DESIGN SYSTEMS GMBH
- STMICROELECTRONICS (ALPS) SAS
- ONG "THE STERN STEWART INSTITUTE"/LYCEE PRIVE SHORGE
- Technische Universität Graz (Lead Partner)
Laufzeit | Oktober/2023 - September/2027 |
Projektleitung | |
Projektmitarbeiter*innen | |
Forschungsschwerpunkt | Bildungsforschung |
Studiengänge | |
Forschungsprogramm | DIGITAL-2022-SKILLS-03-SPECIALISED-EDU, DIGITAL-SIMPLE |
Förderinstitution/Auftraggeber |
The EU Chips Act aims to increase Europe‘s global production share of semiconductors to 20% by 2030, leading to a need for a skilled workforce to support this growth. Additionally, the EU‘s Green Deal initiative focuses on a transition to sustainable and energy efficient technologies, further emphasizing the need for expertise in sustainable chip development and green applications. There is an EU wide shortage of skilled workers in microelectronics. Addressing this shortage will be crucial in meeting the goals of both the EU Chips Act and the Green Deal. Furthermore, the next generation of students is largely interested in contributing to a sustainable environment. Providing them with the opportunity to gain deeper expertise in this field will align their skills with the industry‘s future needs. The proposed project „Green Chips-EDU“ supports the aforementioned goals by addressing the needs and challenges of a green and digital transition in the microelectronics industry. The consortium, made up of 15 key players from 7 EU countries, aims to build an attractive education ecosystem in green microelectronics by integrating the knowledge triangle of excellent education, industries needs and research challenges. The consortium includes 6 Unite! partners working on a harmonized curriculum focusing on energy efficiency and the development of sustainable integrated circuits. The project addresses all objectives from the call by offering a wide range of degree programs including mutual recognition as well as self-standing modules, implementing staff and student mobility, digital learning formats and upgrading infrastructure. About 600 students are planned to receive degrees or certificates in green electronics. In addition, summer schools, sustainability hackathons, learn-repair cafés as well as expert lectures by the partner companies and research institutions are organized to attract and train students to counteract the skills shortage in microelectronics in the EU.
- European Commission (Fördergeber/Auftraggeber)
- Politecnico Di Torino
- Technische Universität Darmstadt
- Universitat Politecnica de Catalunya
- Institut Polytechnique de Grenoble
- Instituto Superior Tecnico
- INESC ID
- Infineon Technologies Austria AG
- KONCAR - ELECTRONICS AND INFORMATICS Inc.
- Silicongate LDA
- JLG Formations
- AEDVICES Consulting
- RUSZ - Verein zur Förderung der Sozialwirtschaft
- BK-Business Konsens OG
- CADENCE DESIGN SYSTEMS GMBH
- STMICROELECTRONICS (ALPS) SAS
- ONG "THE STERN STEWART INSTITUTE"/LYCEE PRIVE SHORGE
- Technische Universität Graz (Lead Partner)
Laufzeit | Oktober/2023 - September/2027 |
Projektleitung | |
Projektmitarbeiter*innen | |
Forschungsschwerpunkt | Bildungsforschung |
Studiengänge | |
Forschungsprogramm | DIGITAL-2022-SKILLS-03-SPECIALISED-EDU, DIGITAL-SIMPLE |
Förderinstitution/Auftraggeber |
The EU Chips Act aims to increase Europe‘s global production share of semiconductors to 20% by 2030, leading to a need for a skilled workforce to support this growth. Additionally, the EU‘s Green Deal initiative focuses on a transition to sustainable and energy efficient technologies, further emphasizing the need for expertise in sustainable chip development and green applications. There is an EU wide shortage of skilled workers in microelectronics. Addressing this shortage will be crucial in meeting the goals of both the EU Chips Act and the Green Deal. Furthermore, the next generation of students is largely interested in contributing to a sustainable environment. Providing them with the opportunity to gain deeper expertise in this field will align their skills with the industry‘s future needs. The proposed project „Green Chips-EDU“ supports the aforementioned goals by addressing the needs and challenges of a green and digital transition in the microelectronics industry. The consortium, made up of 15 key players from 7 EU countries, aims to build an attractive education ecosystem in green microelectronics by integrating the knowledge triangle of excellent education, industries needs and research challenges. The consortium includes 6 Unite! partners working on a harmonized curriculum focusing on energy efficiency and the development of sustainable integrated circuits. The project addresses all objectives from the call by offering a wide range of degree programs including mutual recognition as well as self-standing modules, implementing staff and student mobility, digital learning formats and upgrading infrastructure. About 600 students are planned to receive degrees or certificates in green electronics. In addition, summer schools, sustainability hackathons, learn-repair cafés as well as expert lectures by the partner companies and research institutions are organized to attract and train students to counteract the skills shortage in microelectronics in the EU.
- European Commission (Fördergeber/Auftraggeber)
- Politecnico Di Torino
- Technische Universität Darmstadt
- Universitat Politecnica de Catalunya
- Institut Polytechnique de Grenoble
- Instituto Superior Tecnico
- INESC ID
- Infineon Technologies Austria AG
- KONCAR - ELECTRONICS AND INFORMATICS Inc.
- Silicongate LDA
- JLG Formations
- AEDVICES Consulting
- RUSZ - Verein zur Förderung der Sozialwirtschaft
- BK-Business Konsens OG
- CADENCE DESIGN SYSTEMS GMBH
- STMICROELECTRONICS (ALPS) SAS
- ONG "THE STERN STEWART INSTITUTE"/LYCEE PRIVE SHORGE
- Technische Universität Graz (Lead Partner)