Subject Area | Computer Hardware and Architecture |
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Semester | Semester 9 – Fall |
Type | Elective |
Teaching Hours | 4 |
ECTS | 6 |
Prerequisites |
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Recommended Courses | |
Course Site | http://eclass.uth.gr |
Course Director |
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Scientific Responsible |
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Title | Characterisation of LN2 UUI |
Duration | 2019 – 2023 |
Site | https://caslab.e-ce.uth.gr/ |
Scientific Responsible |
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Title | Qualcomm Faculty R&D Award 2019 |
Duration | 2019 – 2023 |
Site | https://caslab.e-ce.uth.gr/ |
Scientific Responsible |
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Title | C4g: Coding4Girls |
Duration | 2018 – 2020 |
Scientific Responsible |
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Title | MUTUAL: mutlicultral/multilingual learning in early years |
Duration | 2018 – 2019 |
Site | https://igorrazbornik.wixsite.com/mutual |
Scientific Responsible |
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Title | ALIEN: Active Learning in Engineering Education |
Duration | 2017 – 2020 |
Site | http://projectalien.eu |
Scientific Responsible |
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Title | DesignIT: Design Thinking in Engineering Education |
Duration | 2017 – 2019 |
Site | http://projectdesignit.eu |
Title | ADLES: Active Digital Learning Environments in Schools |
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Duration | 2017 – 2019 |
Site | http://adles.eu/ |
Scientific Responsible |
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Title | LEAP: Lean and Agile Practices linking Engineering Higher Education to Industry |
Duration | 2016 – 2018 |
Site | http://leapproject.eu/ |
Scientific Responsible |
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Title | SCoRPiO- Significance-Based Computing for Reliability and Power Optimization |
Duration | 2013 – 2016 |
Site | http://www.scorpio-project.eu |
Scientific Responsible |
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Title | Fed4FIRE – Federation for FIRE |
Duration | 2012 – 2016 |
Site | http://www.fed4fire.eu/home.html |
Department of Electrical and Computer Engineering | |
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Tel. | +30 24210 74967 |
gece ΑΤ e-ce.uth.gr | |
PGS Tel. | +30 24210 74934 |
PGS e-mail | pgsec ΑΤ e-ce.uth.gr |
Fax | +30 24210 74997 |
Subject Area | Computer Hardware and Architecture |
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Semester | Semester 9 – Fall |
Type | Elective |
Teaching Hours | 4 |
ECTS | 6 |
Prerequisites |
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Recommended Courses | |
Course Site | http://eclass.uth.gr |
Course Director |
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Contents: Formulation of equations of linear and nonlinear circuits. Numerical solution of linear systems and application in static analysis of linear circuits. Sparse matrix algorithms for the simulation of large-scale circuits. Numerical solution of nonlinear systems and application in static analysis of nonlinear circuits. Numerical solution of differential systems and application in transient analysis of linear and nonlinear circuits. Frequency analysis of linear and nonlinear circuits.
Special emphasis in placed on a full-semester project where students are assigned to develop a complete circuit simulation program like SPICE.
The course aims at offering the students the possibility to combine knowledge obtained from the basic courses of Circuit Analysis, Numerical Analysis, and Programming, into the development of a modern software tool for circuit simulation like SPICE.
With the successful completion of the course, the student will be in a position to: