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| hintergruende_zu_meiner_person [2026/01/08 00:49] – [Tabelle] mexleadmin | hintergruende_zu_meiner_person [2026/09/17 18:56] (current) – mexleadmin |
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| ===== ausgewählte Publikationen ===== | ===== ausgewählte Publikationen ===== |
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| ^ Zeitpunkt ^ Publikation ^ | ^ Zeitpunkt ^ Publikation ^ |
| | 2025 | [[https://ieeexplore.ieee.org/abstract/document/11016566|WIP: MEXLEfirst - a Vision for an Inclusive and Impactful Education for the Introduction to Electrical Engineering]]: T. Fischer, G. Gruhler \\ // 2025 IEEE Global Engineering Education Conference (EDUCON) // | | | 2026 | [[https://library.iated.org/view/ABDELHAMED2026BUI|Take-Home Labs and Modular Kits in Electronics Education: A Systematic Scoping Review]]: N. Abdelhamed, F. Abdelsamad, __T. Fischer__, B.A.A.Y. Aboghanima \\ // INTED2026 Proceedings // | |
| | 2025 | [[https://library.iated.org/view/ABOGHANIMA2025FRO|From bungled Breadboards to modular Mastery- Integrating MEXLE 2020 as a modular Experimentation Framework for electrical Engineering Laboratories]]: B.A.A.Y. Aboghanima, T. Fischer \\ // INTED2025 Proceedings // | | | 2026 | [[https://library.iated.org/view/ELFEKY2026PRO|Building Blocks for MEXLEfirst: vision-based Circuit Analysis and smart Measurement Tools for Electrical Engineering Learning]]: A.M. Elfeky, B.A.A.Y. Aboghanima, __T. Fischer__ \\ // INTED2026 Proceedings // | |
| | 2019 | [[https://www.researchgate.net/publication/334675035_THE_WORM_HAS_TO_TASTE_TO_THE_FISH_NOT_TO_THE_ANGLER_THE_STUDENT-CENTERED_SUSAN-CONCEPT_FOR_LEARNING|The Worm has to taste to the Fish, not to the Angler! The Student-centered "SUSAN"-Concept for Learning]]: G. Gruhler, T. Fischer, L. Wildermuth, J.F. Kemadjou \\ // EDULEARN19 Proceedings // | | | 2026 | [[https://ieeexplore.ieee.org/document/11574302|Programmable impedance Modules as Components for inquiry-based Lab-in-a-Box Experiments in introductory Electrical Engineering]]: B.A.A.Y. Aboghanima, __T. Fischer__, D. Hennig \\ // 2026 IEEE Global Engineering Education Conference (EDUCON) // | |
| | 2019 | [[https://www.researchgate.net/publication/334677836_ACTIVE_LEARNING_IN_ENGINEERING_-_MEXLE_AN_OPEN_SOURCE_LAB-IN-A-BOX_SYSTEM_FOR_STUDENTS_IN_ELECTRICAL_ENGINEERING_ELECTRONICS_SIGNAL_PROCESSING_AND_PROGRAMMING_CLASSES|Active Learning in Engineering - MEXLE, an Open Source Lab-in-a-Box System for Students in Electrical Engineering, Electronics, Signal Processing and Programming Classes]]: G. Gruhler, T. Fischer, J.F. Kemadjou, L. Wildermuth \\ // EDULEARN19 Proceedings // | | | 2025 | [[https://ieeexplore.ieee.org/abstract/document/11016566|WIP: MEXLEfirst - a Vision for an Inclusive and Impactful Education for the Introduction to Electrical Engineering]]: __T. Fischer__, G. Gruhler \\ // 2025 IEEE Global Engineering Education Conference (EDUCON) // | |
| | 2018 | [[https://ieeexplore.ieee.org/document/8421782|MEXLE – A new Multimodal System for Experiments and Learning in Mechatronics]]: G. Gruhler, T. Fischer, J.F. Kemadjou \\ // 2018 19th International Conference on Research and Education in Mechatronics (REM) // | | | 2025 | [[https://library.iated.org/view/ABOGHANIMA2025FRO|From bungled Breadboards to modular Mastery- Integrating MEXLE 2020 as a modular Experimentation Framework for electrical Engineering Laboratories]]: B.A.A.Y. Aboghanima, __T. Fischer__ \\ // INTED2025 Proceedings // | |
| | 2018 | [[https://ieeexplore.ieee.org/document/8363359/#full-text-section|Learning electronics through head, heart and hands: An unconventional and holistic approach in engineering education]]: G. Gruhler, T. Fischer \\ // 2018 IEEE Global Engineering Education Conference (EDUCON) // | | | 2019 | [[https://www.researchgate.net/publication/334675035_THE_WORM_HAS_TO_TASTE_TO_THE_FISH_NOT_TO_THE_ANGLER_THE_STUDENT-CENTERED_SUSAN-CONCEPT_FOR_LEARNING|The Worm has to taste to the Fish, not to the Angler! The Student-centered "SUSAN"-Concept for Learning]]: G. Gruhler, __T. Fischer__, L. Wildermuth, J.F. Kemadjou \\ // EDULEARN19 Proceedings // | |
| | 2014 | [[https://www.sae.org/publications/technical-papers/content/2014-01-1910/|New Concepts for Drag Torque Control in the Power Electronic Control Unit]]: T. Fischer, S. Mueller \\ // SAE 2014 World Congress & Exhibition // | | | 2019 | [[https://www.researchgate.net/publication/334677836_ACTIVE_LEARNING_IN_ENGINEERING_-_MEXLE_AN_OPEN_SOURCE_LAB-IN-A-BOX_SYSTEM_FOR_STUDENTS_IN_ELECTRICAL_ENGINEERING_ELECTRONICS_SIGNAL_PROCESSING_AND_PROGRAMMING_CLASSES|Active Learning in Engineering - MEXLE, an Open Source Lab-in-a-Box System for Students in Electrical Engineering, Electronics, Signal Processing and Programming Classes]]: G. Gruhler, __T. Fischer__, J.F. Kemadjou, L. Wildermuth \\ // EDULEARN19 Proceedings // | |
| | 2013 | [[https://www.emobilitytec.de/wp-content/uploads/sites/12/2013/04/emt_01_iInternet.pdf#page=40|ABS für E-Motoren - Blockiererkennung beim Rekuperieren]]: T. Fischer, A. Thomys und S. Müller \\ // emobility tec, 01/2013 // | | | 2018 | [[https://ieeexplore.ieee.org/document/8421782|MEXLE – A new Multimodal System for Experiments and Learning in Mechatronics]]: G. Gruhler, __T. Fischer__, J.F. Kemadjou \\ // 2018 19th International Conference on Research and Education in Mechatronics (REM) // | |
| | 2012 | [[https://mediatum.ub.tum.de/1285607|e performance - more Range with thermal Management]]: C. Bohman, T. Fischer, et al. \\ // 12th Stuttgart International Symposium // | | | 2018 | [[https://ieeexplore.ieee.org/document/8363359/#full-text-section|Learning electronics through head, heart and hands: An unconventional and holistic approach in engineering education]]: G. Gruhler, __T. Fischer__ \\ // 2018 IEEE Global Engineering Education Conference (EDUCON) // | |
| | 2012 | [[https://www.researchgate.net/publication/291523840_Thermisches_und_Lebensdauerbatteriemodell_fur_die_Konzeptuntersuchung_eines_Lithium-Ionen_Batteriesystems_als_Warmespeicher_im_Elektrofahrzeug|Thermisches und Lebensdauerbatteriemodell für die Konzeptuntersuchung eines Lithium-Ionen Batteriesystems als Wärmespeicher im Elektrofahrzeug ]]: W. Zhou, Chr. Schäper, M. Ecker, T. Fischer, et al. \\ // 8. Tagung Wärmemanagement des Kraftfahrzeugs // | | | 2014 | [[https://www.sae.org/publications/technical-papers/content/2014-01-1910/|New Concepts for Drag Torque Control in the Power Electronic Control Unit]]: __T. Fischer__, S. Mueller \\ // SAE 2014 World Congress & Exhibition // | |
| | 2010 | [[https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.102.138303|Transition metal sulfide clusters below the cluster–platelet transition: Theory and experiment]]: S. Gemming, G. Seifert, M. Götz, T. Fischer, G. Ganteför \\ //Phys. Stat. Sol. (b) // | | | 2013 | [[https://www.emobilitytec.de/wp-content/uploads/sites/12/2013/04/emt_01_iInternet.pdf#page=40|ABS für E-Motoren - Blockiererkennung beim Rekuperieren]]: __T. Fischer__, A. Thomys und S. Müller \\ // emobility tec, 01/2013 // | |
| | 2009 | [[https://www.sciencedirect.com/science/article/pii/S0009261409004497|One-dimensional (Mo3S3)n clusters: Building blocks of clusters materials and ideal nanowires for molecular electronics]]: S. Gemming, G. Seifert, N. Bertram, T. Fischer, M. Götz, G. Ganteför c \\ //Chem. Phys. Lett.// | | | 2012 | [[https://mediatum.ub.tum.de/1285607|e performance - more Range with thermal Management]]: C. Bohman, __T. Fischer__, et al. \\ // 12th Stuttgart International Symposium // | |
| | 2009 | [[https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.102.138303|Core-Hole Screening as a Probe for a Metal-to-Nonmetal Transition in Lead Clusters]]: V. Senz, T. Fischer, et al. \\ //Phys. Rev. Lett.// | | | 2012 | [[https://www.researchgate.net/publication/291523840_Thermisches_und_Lebensdauerbatteriemodell_fur_die_Konzeptuntersuchung_eines_Lithium-Ionen_Batteriesystems_als_Warmespeicher_im_Elektrofahrzeug|Thermisches und Lebensdauerbatteriemodell für die Konzeptuntersuchung eines Lithium-Ionen Batteriesystems als Wärmespeicher im Elektrofahrzeug ]]: W. Zhou, Chr. Schäper, M. Ecker, __T. Fischer__, et al. \\ // 8. Tagung Wärmemanagement des Kraftfahrzeugs // | |
| | 2008 | [[http://kops.uni-konstanz.de/handle/123456789/9376|Untersuchung von massenselektierten Clustern mittels VUV-Lasern : Photoelektronenspektroskopie massenselektierter Cluster mit Lasern extrem kurzer Wellenlänge]] \\ Doktorarbeit | | | 2010 | [[https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.102.138303|Transition metal sulfide clusters below the cluster–platelet transition: Theory and experiment]]: S. Gemming, G. Seifert, M. Götz, __T. Fischer__, G. Ganteför \\ //Phys. Stat. Sol. (b) // | |
| | | 2009 | [[https://www.sciencedirect.com/science/article/pii/S0009261409004497|One-dimensional (Mo3S3)n clusters: Building blocks of clusters materials and ideal nanowires for molecular electronics]]: S. Gemming, G. Seifert, N. Bertram, __T. Fischer__, M. Götz, G. Ganteför c \\ //Chem. Phys. Lett.// | |
| | | 2009 | [[https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.102.138303|Core-Hole Screening as a Probe for a Metal-to-Nonmetal Transition in Lead Clusters]]: V. Senz, __T. Fischer__, et al. \\ //Phys. Rev. Lett.// | |
| | | 2008 | [[http://kops.uni-konstanz.de/handle/123456789/9376|Untersuchung von massenselektierten Clustern mittels VUV-Lasern : Photoelektronenspektroskopie massenselektierter Cluster mit Lasern extrem kurzer Wellenlänge]] \\ Doktorarbeit | |
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| ===== Lehre, gehaltene Schulungen ===== | ===== Lehre, gehaltene Schulungen ===== |
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| ^ Zeitraum ^ Tätigkeit ^ Betreute Abschlussarbeiten ^ Arbeitsstätte ^ | ^ Zeitraum ^ Tätigkeit ^ Betreute Abschlussarbeiten ^ Arbeitsstätte ^ |
| | SS25 | MR2 [[Elektrotechnik Labor:start]] \\ MR2 [[Electrical Engineering 2:start]] \\ MR2 [[Elektronische Schaltungstechnik:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]]\\ MR4 [[Elektronische Systeme:start]] | 1 BA [[https://www.siemensgamesa.com/global/en/home.html|Siemens Gamesa]]\\ 1 BA laborintern | | | | WS26 | MR1 [[Electrical Engineering and Electronics 1:start]] \\ MR2 [[Elektrotechnik Labor:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]] \\ MR3 [[Elektronische Schaltungstechnik:start]] \\ MR4 [[Elektronische Systeme:start]] | 3 BA laborintern \\ 5 MA Industrie \\ 1 MA laborintern | HHN | |
| | WS24 | MR1 [[Electrical Engineering 1:start]] \\ MR1 [[Introduction to Digital Systems:start]] \\ MR1 [[Circuit Design:start]] \\ MR2 [[Elektrotechnik Labor:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]] | 1 BA [[https://schunk.com/de/de|Schunk]]\\ 1 BA [[https://weima.com/de/|WEIMA]]\\ 3 BA laborintern\\ 2 MA [[https://r-stahl.com/de/|STAHL]] | | | | SS26 | MR2 [[Elektrotechnik Labor:start]] \\ MR2 [[Electrical Engineering and Electronics 2:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]]\\ MR4 [[Elektronische Systeme:start]] | 1 BA laborintern\\ 1 BA [[https://www.schuhmann-messtechnik.de/|Schumann]] \\ 2 BA [[https://www.bosch.de/unternehmen/bosch-in-deutschland/abstatt/|Bosch]] (Abstatt) \\ 1 MA laborintern\\ 1 MA [[https://www.axtal.com/Deutsch/|AXTAL]] | HHN | |
| | | WS25 | MR1 [[Electrical Engineering and Electronics 1:start]] \\ MR2 [[Elektrotechnik Labor:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]] | 4 BA laborintern \\ 1 MA laborintern\\ 1 MA [[https://www.stihl.de/|STIHL]] | HHN | |
| | | SS25 | MR2 [[Elektrotechnik Labor:start]] \\ MR2 [[Electrical Engineering 2:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]]\\ MR4 [[Elektronische Systeme:start]] | 1 BA [[https://www.siemensgamesa.com/global/en/home.html|Siemens Gamesa]]\\ 1 BA [[https://www.spiratec.com/de/|SpiraTec]]\\ 1 BA [[https://www.magna.com/de|Magna]]\\ 1 MA laborintern\\ 2 MA [[https://r-stahl.com/de/|STAHL]] | HHN | |
| | | WS24 | MR1 [[Electrical Engineering 1:start]] \\ MR1 [[Introduction to Digital Systems:start]] \\ MR1 [[Circuit Design:start]] \\ MR2 [[Elektrotechnik Labor:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]] | 1 BA [[https://schunk.com/de/de|Schunk]]\\ 1 BA [[https://weima.com/de/|WEIMA]]\\ 4 BA laborintern | HHN | |
| | SS24 | MR2 [[Elektrotechnik Labor:start]] \\ MR2 [[Electrical Engineering 2:start]] \\ MR2 [[Elektronische Schaltungstechnik:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]]\\ MR4 [[Elektronische Systeme:start]] | 1 BA laborintern\\ 1 MA [[https://www.br-automation.com/de-de/|B & R Industrie-Elektronik GmbH]]\\ 1 MA laborintern | HHN | | | SS24 | MR2 [[Elektrotechnik Labor:start]] \\ MR2 [[Electrical Engineering 2:start]] \\ MR2 [[Elektronische Schaltungstechnik:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]]\\ MR4 [[Elektronische Systeme:start]] | 1 BA laborintern\\ 1 MA [[https://www.br-automation.com/de-de/|B & R Industrie-Elektronik GmbH]]\\ 1 MA laborintern | HHN | |
| | WS23 | MR1 [[Electrical Engineering 1:start]] \\ MR1 [[Introduction to Digital Systems:start]] \\ MR1 [[Circuit Design:start]] \\ MR2 [[Elektrotechnik Labor:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]] | 1 MA [[https://www.bosch.de/unternehmen/bosch-in-deutschland/renningen/|Bosch Vorausentwicklung]] | HHN | | | WS23 | MR1 [[Electrical Engineering 1:start]] \\ MR1 [[Introduction to Digital Systems:start]] \\ MR1 [[Circuit Design:start]] \\ MR2 [[Elektrotechnik Labor:start]] \\ MR3 [[Microcontrollertechnik:start]] \\ MR3 [[Elektronik Labor:start]] | 1 MA [[https://www.bosch.de/unternehmen/bosch-in-deutschland/renningen/|Bosch Vorausentwicklung]] | HHN | |