Technische Universität Ilmenau

Semiconductor devices 1 - Interactive curriculae of TU Ilmenau

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module properties module number 101754 - common information
module number101754
departmentDepartment of Electrical Engineering and Information Technology
ID of group2143 (Micro- and Nanoelectronic Systems)
module leaderProf. Dr. Martin Ziegler
languageDeutsch
term unbekannt
previous knowledge and experienceGrundlagen der Elektronik, Grundlagen der Elektrotechnik
learning outcome

Students will be able to understand and analyze the principles of bipolar semiconductor devices so that they can compare various advantages and disadvantages of bipolar devices.

content

- Physikalische Grundlagen (Ladungsträgerdichten, Drift-Diffusions-Halbleiter-Grundgleichungen, Generations- und Rekombinationsmechanismen, SCL-Strom) - Metall-Halbleiterkontakt (Arten, Stromflussmechanismen, Anwendung) - Halbleiterdioden (Strom-Spannungsbeziehung, Kleinsignal und Schaltverhalten, Heteroübergang) - Bipolartransistor (Stationäres Verhalten, Grenzfrequenzen, HBT, DIAC, TRIAC) - besondere Anwendungen

media of instruction and technical requirements for education and examination in case of online participation

Power Point

literature / references

Simon M. Sze: Physics of Semiconductor Devices, John Wiley & Sons Inc 2006 Michael Shur: Physics of Semiconductor Devices, Prentice Hall 1991 Simon M. Sze: Modern Semiconductor Device Physics, John Wiley & Sons Inc, 1997

evaluation of teaching
Details reference subject
module nameSemiconductor devices 1
examination number90200
credit points5
SWS0
on-campus program (h)0
self-study (h)150
obligationobligatory module
exammultiple performances
details of the certificate
link to Moodle course
teacher
signup details for alternative examinations
maximum number of participants
Details in degree program Master Micro- and Nanotechnologies 2016, Diplom Elektrotechnik und Informationstechnik 2017
module nameSemiconductor devices 1
examination number2100554
credit points5
on-campus program (h)45
self-study (h)105
obligationobligatory module
examwritten examination performance, 90 minutes
details of the certificate
link to Moodle course
signup details for alternative examinations
maximum number of participants