Electrical and Electronics Engineering
Course Details

KTO KARATAY UNIVERSITY
Mühendislik ve Doğa Bilimleri Fakültesi
Programme of Electrical and Electronics Engineering
Course Details
Mühendislik ve Doğa Bilimleri Fakültesi
Programme of Electrical and Electronics Engineering
Course Details

| Course Code | Course Name | Year | Period | Semester | T+A+L | Credit | ECTS |
|---|---|---|---|---|---|---|---|
| 15171009 | Embedded Systems | 2025 | Autumn | 7 | 3+0+0 | 3 | 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 | - |
| Instructor(s) | Asst. Prof. İbrahim ONARAN |
| Instructor Assistant(s) | - |
Course Instructor(s)
| Name and Surname | Room | E-Mail Address | Internal | Meeting Hours |
|---|---|---|---|---|
| Asst. Prof. İbrahim ONARAN | A-125 | [email protected] | 7678 | Tuesday 15:30 - 17:3* |
Objectives of the Course
To understand processors—the foundation of computers—and their architectures. To design systems utilizing processors with microcontrollers
Contribution of the Course to Field Teaching
| Basic Vocational Courses | X |
| 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 |
|---|---|---|
| P1 | Solid knowledge base in mathematics, natural sciences, and engineering-related subjects, along with the ability to solve complex engineering problems using this knowledge. | 5 |
| P3 | Ability to design a complex system, process, device, or product to meet specific requirements within real-world constraints and conditions; using current design techniques to achieve this goal. | 4 |
Course Learning Outcomes
| Upon the successful completion of this course, students will be able to: | |||
|---|---|---|---|
| No | Learning Outcomes | Outcome Relationship | Measurement Method ** |
| O1 | Must have a good command of discrete-time control theory and be able to analyze computer control and microprocessor control systems | P.1.67 | 1 |
| O2 | Must know the basics of digital electronics and be able to analyze logic and digital electronic circuits | P.1.68 | 1 |
| O3 | Must know basic programming languages (Visual basic, Assembly, C) used in programming electronic systems | P.1.69 | 1 |
| O4 | Must be able to write control algorithms on microprocessor | P.3.13 | 1 |
| O5 | Must know the basic elements and operating systems of computers and microprocessors and be able to select components | P.3.14 | 1 |
| ** 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 |
| 2 | CPU Architectures |
| 3 | Instruction Sets |
| 4 | Instruction Sets |
| 5 | Instruction sets |
| 6 | Instruction sets reviiew |
| 7 | Memory types |
| 8 | Timers |
| 9 | Interrupts |
| 10 | Threads and GPIO |
| 11 | ADC and DAC |
| 12 | Communication SPI, I2C and UART |
| 13 | Lab I |
| 14 | Lab II |
Textbook or Material
| Resources | EMBEDDED SYSTEMS: INTRODUCTION TO ARM®CORTEX-M MICROCONTROLLERS |
Evaluation Method and Passing Criteria
| In-Term Studies | Quantity | Percentage |
|---|---|---|
| Attendance | - | - |
| Laboratory | 6 | 55 (%) |
| Practice | - | - |
| Homework | - | - |
| Presentation | - | - |
| Projects | - | - |
| Quiz | - | - |
| Listening | - | - |
| Midterms | 1 | 45 (%) |
| Final Exam | - | - |
| 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 | 3 | 42 |
| Midterms | 1 | 24 | 24 |
| Quiz | 0 | 0 | 0 |
| Homework | 0 | 0 | 0 |
| Practice | 0 | 0 | 0 |
| Laboratory | 6 | 7 | 42 |
| Project | 0 | 0 | 0 |
| Workshop | 0 | 0 | 0 |
| Presentation/Seminar Preparation | 0 | 0 | 0 |
| Fieldwork | 0 | 0 | 0 |
| Final Exam | 0 | 0 | 0 |
| Other | 0 | 0 | 0 |
| Total Work Load: | 150 | ||
| Total Work Load / 30 | 5 | ||
| Course ECTS Credits: | 5 | ||
Course - Learning Outcomes Matrix
| Relationship Levels | ||||
| Lowest | Low | Medium | High | Highest |
| 1 | 2 | 3 | 4 | 5 |
| # | Learning Outcomes | P1 | P3 |
|---|---|---|---|
| O1 | Must have a good command of discrete-time control theory and be able to analyze computer control and microprocessor control systems | - | - |
| O2 | Must know the basics of digital electronics and be able to analyze logic and digital electronic circuits | - | - |
| O3 | Must know basic programming languages (Visual basic, Assembly, C) used in programming electronic systems | - | - |
| O4 | Must be able to write control algorithms on microprocessor | - | - |
| O5 | Must know the basic elements and operating systems of computers and microprocessors and be able to select components | - | - |
