ELECTRONICS II
- Course
- EEE342 - ELECTRONICS II
- Department
- Electrical - Electronic Engineering - English - Master
- Course Type
- Scientific Preparation
- Status
- Required
- Language
- English
- Credit
- 0
- ECTS
- 0
- T+P+L
- 0 + 0 + 0
- Course Coordinator(s)
- -
- Prerequisite
- -
- Keywords
- -
Course Description
-
ELECTRONICS II
Evaluation Tools (Active Term)
No evaluation items have been defined.
Course outcomes
- 01 Design and analysis of amplifiers circuits using BJT.
- 02 Design and analysis of amplifiers circuits using FET and MOSFET.
- 03 Analyze and design feedback amplifiers and transistor oscillators
- 04 Calculate approximate frequency response diagrams of amplifiers.
- 05 Demonstrate understanding and skills in the design of passive to active filters
- 06 Understand data conversion concepts.
Course Syllabus
| Week | Topic |
|---|---|
| Week 1 | Frequency Response of Amplifiers: Introduction |
| Week 2 | Frequency Response of Amplifiers: Introduction |
| Week 3 | Frequency Response of Amplifiers: Low Frequency Response |
| Week 4 | Frequency Response of Amplifiers: Low Frequency Response |
| Week 5 | Frequency Response of Amplifiers: High Frequency Response |
| Week 6 | Frequency Response of Amplifiers: High Frequency Response |
| Week 7 | Frequency Response of Amplifiers: Step Response |
| Week 8 | Feedback: Introduction |
| Week 9 | MIDTERM EXAM PERIOD |
| Week 10 | Operational Amplifiers |
| Week 11 | Operational Amplifiers |
| Week 12 | Operational Amplifiers |
| Week 13 | Feedback: Types of Feedback |
| Week 14 | Feedback: Types of Feedback |
| Week 15 | Feedback: Stability |
Reference Books & Course Materials
- 01 Adel S. Sedra and Kenneth C. Smith, “Microelectronic Circuits”, 4th Edition, Oxford: International Edition, 1998. ISBN: 978-0195323030
- 02 Donald A. Neamen, “Electronic Circuit Analysis and Design”, McGraw-Hill, Third Eddition, 2006. ISBN: 978-0-256-08405-4
- 03 R. C. Jaeger, “Microelectronic Circuit Design”, McGraw-Hill, First Edition, 1997. ISBN 978-0-07-338045-2
- 04 J. Millman and A. Grabel, “Microelectronics”, McGraw-Hill, 1987.ISBN:007042330X
Learning Outcomes
No learning outcomes have been defined.
Program Outcomes
- Based on master's-level qualifications, be able to develop and deepen current and advanced knowledge in the field at the level of expertise through original thinking and/or research, and achieve original conceptualizations that contribute innovation to the field.
- Should be able to comprehend the interdisciplinary interactions related to their field and employ specialized knowledge to analyze, synthesize, and evaluate new and complex ideas, leading to original conclusions.
- Should be able to systematically evaluate and apply new knowledge in their field.
- Should be able to develop innovative ideas, methods, designs, and/or applications that contribute to the advancement of the field, or apply existing ideas, methods, designs, and/or applications to a different field. Should be able to investigate, comprehend, design, adapt, and implement original research topics.
- hould be able to critically analyze, synthesize, and evaluate new and complex ideas.
- Should demonstrate advanced proficiency in the application of research methods in studies related to their field.
- Should be able to independently conduct original research that develops innovative ideas, methods, designs, and/or applications, or applies existing ideas, methods, designs, and/or applications to a different field, thereby contributing to the advancement of their field.
- Should be able to extend the frontiers of knowledge in their field by publishing at least one scientific article in a national and/or international peer-reviewed journal and/or by producing or critically interpreting an original work.
- Should be able to demonstrate leadership in addressing original and interdisciplinary problems within complex environments.
- Should be able to develop innovative ideas and methods in their field through the effective use of higher-order cognitive skills, including creative and critical thinking, problem-solving, and decision-making.
- Should be able to critically analyze and enhance social relationships and the norms that shape these relationships, and lead actions toward their transformation when necessary.
- Should be able to defend original viewpoints when discussing issues related to their field with experts and establish effective communication that demonstrates their expertise and competence in the field.
- Should be able to conduct advanced written, oral, and visual communication and participate in discussions using at least one foreign language at the C1 level of the European Language Portfolio.
- Should be able to contribute to the development and sustainability of a knowledge society by disseminating scientific, technological, social, and cultural advancements related to their field.
- Should be able to engage in effective interactions by employing strategic decision-making processes to address and solve problems encountered in their field.
- Should be able to contribute to solving social, scientific, cultural, and ethical issues related to their field and promote the advancement of these values.
- Based on master's-level qualifications, be able to develop and deepen current and advanced knowledge in the field at the level of expertise through original thinking and/or research, and achieve original conceptualizations that contribute innovation to the field.
Po-Lo Matrix
The PO-LO matrix has not been populated yet.