Semiconductor Devices 2 - Interactive curriculae of TU Ilmenau
The interactive curriculae provide information on the degree programmes offered by the TU Ilmenau.
Please refer to the respective study and examination rules and regulations for the legally binding curricula (Annex Curriculum).
You can find all details on planned lectures and classes in the course catalogue.
Please note that this page is no longer updated. All modules and study plans from PO version 2021 onwards (Bachelor and Master study programs) are now available on the Campus Portal.
| module properties Semiconductor Devices 2 in degree program Diplom Elektrotechnik und Informationstechnik 2021 | |
|---|---|
| module number | 200520 |
| examination number | 2100857 |
| department | Department of Electrical Engineering and Information Technology |
| ID of group | 2143 (Micro- and Nanoelectronic Systems) |
| module leader | Dr. Frank Schwierz |
| term | summer term only |
| language | Englisch |
| credit points | 5 |
| on-campus program (h) | 45 |
| self-study (h) | 105 |
| obligation | elective module |
| exam | written examination performance, 90 minutes |
| details of the certificate | |
| link to Moodle course | |
| teacher | Prof. Dr. Ziegler, Martin |
| signup details for alternative examinations | |
| maximum number of participants | |
| previous knowledge and experience | Fundamentals of electronics, Fundamentals of electrical engineering, Semiconductor devices 1 |
| learning outcome | After the lectures and exercises, the students have acquired an overview on current semiconductor devices: the physical background, typical applications and physical limits of different device technologies. Capabilities: The students have a profound understanding of the main semiconductor devices and valuation of their advantages and disadvantages. They know current difficulties and developments in device-technologies and have knowledge of recent research approaches. Competences: Students understand the physical background of different semiconductor devices, their scaling limits and functional principles. |
| content | 1-Field-Effect Tranisitors and beyond: repetition of Semiconductor devices 1 (MOS capacitor, the classical MOSFET), moderen types of Field-Effect Tranisitors 2-Device Scaling: Moore's law, Scaling MOSFET, Short channel effects 3-Limits of Binary Computation: Binary states variables, physical limits of computation |
| media of instruction and technical requirements for education and examination in case of online participation | PowerPoint resentations + blackbboard |
| literature / references |
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| evaluation of teaching | |

