Mechatronics Engineering
Course Details

KTO KARATAY UNIVERSITY
Faculty of Engineering and Natural Science
Programme of Mechatronics Engineering
Course Details
Faculty of Engineering and Natural Science
Programme of Mechatronics Engineering
Course Details

| Course Code | Course Name | Year | Period | Semester | T+A+L | Credit | ECTS |
|---|---|---|---|---|---|---|---|
| 15551005 | Embedded Systems | 2025 | Autumn | 5 | 3+1+0 | 3,5 | 5 |
| Course Type | Elective |
| Course Cycle | Bachelor's (First Cycle) (TQF-HE: Level 6 / QF-EHEA: Level 1 / EQF-LLL: Level 6) |
| Course Language | Turkish |
| Methods and Techniques | - |
| Mode of Delivery | Face to Face |
| Prerequisites | - |
| Coordinator | Prof. Ali Bülent UŞAKLI |
| Instructor(s) | - |
| Instructor Assistant(s) | - |
Course Content
Introduction to C programming, Functions, Arrays, Pointers, Memory allocations, Introduction to OpenCV, and Real Time Object Tracking
Objectives of the Course
This class will introduce you to the fundamental ideas of microcontroller programming using the C programming language.
Contribution of the Course to Field Teaching
| Basic Vocational Courses | |
| Specialization / Field Courses | X |
| Support Courses | |
| Transferable Skills Courses | |
| Humanities, Communication and Management Skills Courses |
Relationships between Course Learning Outcomes and Program Outcomes
| Relationship Levels | ||||
| Lowest | Low | Medium | High | Highest |
| 1 | 2 | 3 | 4 | 5 |
| # | Program Learning Outcomes | Level |
|---|---|---|
| P3 | Ability to design a complex system, process, device, or product to meet specific requirements under realistic constraints and conditions; ability to apply modern design methods for this purpose | 5 |
| P5 | An ability to design and conduct experiments, collect data, analyze, and interpret results for the study of complex engineering problems or research topics specific to Mechatronics Engineering | 5 |
Course Learning Outcomes
| Upon the successful completion of this course, students will be able to: | |||
|---|---|---|---|
| No | Learning Outcomes | Outcome Relationship | Measurement Method ** |
| O1 | Introduction to Ubuntu Operator | P.3.6 | 1 |
| O2 | Ability to understand embedded systems | P.3.7 | 1 |
| O3 | Ability to understand the principles of embedded software programming and real-time programming | P.5.8 | 1 |
| O4 | Ability to program embedded microcontroller with C programming language | P.5.9 | 7 |
| ** Written Exam: 1, Oral Exam: 2, Homework: 3, Lab./Exam: 4, Seminar/Presentation: 5, Term Paper: 6, Application: 7 | |||
Weekly Detailed Course Contents
| Week | Topics |
|---|---|
| 1 | Introduction and Familiarization with the teaching environment |
| 2 | Introduction to Embedded Systems |
| 3 | Introduction to C programming I |
| 4 | Introduction to C programming II |
| 5 | Function |
| 6 | Array |
| 7 | Pointers |
| 8 | Dynamic Memory Allocation |
| 9 | Midterm |
| 10 | Introduction to OpenCV |
| 11 | Image Operations and Convolution Transforms |
| 12 | Filtering Thresholding and Background Elimination |
| 13 | Edge Detection Algorithms and Simple Image Scanning and Analysis |
| 14 | Real Time Object Tracking |
Textbook or Material
| Resources | Learning OpenCV 3, Gary Bradski, Adrian Kaehler, O'Reilly Media, 2016. |
| Learning OpenCV 3, Gary Bradski, Adrian Kaehler, O'Reilly Media, 2016. | |
| Learning OpenCV 3, Gary Bradski, Adrian Kaehler, O'Reilly Media, 2016. |
Evaluation Method and Passing Criteria
| In-Term Studies | Quantity | Percentage |
|---|---|---|
| Attendance | - | - |
| Laboratory | - | - |
| Practice | - | - |
| Course Specific Internship (If Any) | - | - |
| Homework | - | - |
| Presentation | - | - |
| Projects | 1 | 35 (%) |
| Quiz | - | - |
| Midterms | 1 | 30 (%) |
| Final Exam | 1 | 35 (%) |
| Total | 100 (%) | |
ECTS / Working Load Table
| Quantity | Duration | Total Work Load | |
|---|---|---|---|
| Course Week Number and Time | 14 | 3 | 42 |
| Out-of-Class Study Time (Pre-study, Library, Reinforcement) | 14 | 5 | 70 |
| Midterms | 1 | 10 | 10 |
| Quiz | 0 | 0 | 0 |
| Homework | 0 | 0 | 0 |
| Practice | 0 | 0 | 0 |
| Laboratory | 14 | 1 | 14 |
| Project | 1 | 5 | 5 |
| Workshop | 0 | 0 | 0 |
| Presentation/Seminar Preparation | 0 | 0 | 0 |
| Fieldwork | 0 | 0 | 0 |
| Final Exam | 1 | 10 | 10 |
| Other | 0 | 0 | 0 |
| Total Work Load: | 151 | ||
| Total Work Load / 30 | 5,03 | ||
| Course ECTS Credits: | 5 | ||
Course - Learning Outcomes Matrix
| Relationship Levels | ||||
| Lowest | Low | Medium | High | Highest |
| 1 | 2 | 3 | 4 | 5 |
| # | Learning Outcomes | P3 | P5 |
|---|---|---|---|
| O1 | Introduction to Ubuntu Operator | 5 | - |
| O2 | Ability to understand embedded systems | 5 | - |
| O3 | Ability to understand the principles of embedded software programming and real-time programming | - | 5 |
| O4 | Ability to program embedded microcontroller with C programming language | - | 5 |
