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EHM2002 | Electronic Circuits - II | 3+0+0 | ECTS:4 | Year / Semester | Spring Semester | Level of Course | First Cycle | Status | Compulsory | Department | DEPARTMENT of ELECTRONICS and COMMUNICATION ENGINEERING | Prerequisites and co-requisites | DC must have been achieved from EHM2003-ELECTRONIC CIRCUITS-I | Mode of Delivery | Face to face | Contact Hours | 14 weeks - 3 hours of lectures per week | Lecturer | Doç. Dr. Zeynep HASIRCI TUĞCU | Co-Lecturer | | Language of instruction | Turkish | Professional practise ( internship ) | None | | The aim of the course: | Students learn the applications of electronic circuit components and various electronic circuits; develop their circuit design skills. |
Learning Outcomes | CTPO | TOA | Upon successful completion of the course, the students will be able to : | | | LO - 1 : | Learn AC analysis. | 1,2,3,4 | 1, | LO - 2 : | Learn electronic circuit structures. | 1,2,3,4 | 1, | LO - 3 : | Learn electronic circuits and types. | 1,2,3,4 | 1, | LO - 4 : | Learn the approach to electronic circuit design. | 1,2,3,4 | 1 | CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome | |
Transistor and Fet small signal (ac) analysis, CB, CC, CE transistor amplifiers, hybrid model, CS, CD, CG FET amplifiers, cascaded amplifiers, operational amplifiers (Op-Amp), linear-nonlinear op-amp applications, feed-back circuit analysis, negative feedback, oscillators, comparator and schmitt trigger circuits, square wave and triangle wave generators |
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Course Syllabus | Week | Subject | Related Notes / Files | Week 1 | Transistor and Fet small signal (ac) analysis | | Week 2 | Common emitter amplifiers | | Week 3 | Common collector amplifiers | | Week 4 | Common base amplifiers | | Week 5 | Hybrid model and applications | | Week 6 | Common source FET amplifiers | | Week 7 | Common drain FET amplifiers | | Week 8 | Common gate FET amplifiers | | Week 9 | Mid-term exam | | Week 10 | Cascaded amplifiers | | Week 11 | Operational amplifiers (Op-Amp), linear-nonlinear op-amp applications | | Week 12 | Feed-back circuit analysis | | Week 13 | Negative feedback | | Week 14 | Oscillators | | Week 15 | Comparator and schmitt trigger circuits, square wave and triangle wave generators | | Week 16 | Final exam | | |
1 | Boylestad, R. / Nashelsky, L.,1972, Electronic Devices and Circuit Theory, Prentice-HALL. | | |
1 | Demircioğlu, Türen, 2000, Electronic Circuits: Solved Problems | | 2 | Schilling D. L. / Belove, C., 1989, ELECTRONIC CIRCUITS, McGraw-HALL. | | 3 | Millman, J. 1985, MICROELECTRONICS :Digital and Analog Circuits and Systems, McGraw-HILL. | | |
Method of Assessment | Type of assessment | Week No | Date | Duration (hours) | Weight (%) | Mid-term exam | 9 | | 2 | 50 | End-of-term exam | 16 | | 2 | 50 | |
Student Work Load and its Distribution | Type of work | Duration (hours pw) | No of weeks / Number of activity | Hours in total per term | Yüz yüze eğitim | 3 | 14 | 42 | Sınıf dışı çalışma | 2 | 12 | 24 | Arasınav için hazırlık | 2 | 8 | 16 | Arasınav | 2 | 1 | 2 | Dönem sonu sınavı için hazırlık | 3 | 8 | 24 | Dönem sonu sınavı | 2 | 1 | 2 | Total work load | | | 110 |
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