Information
| Unit | FACULTY OF ENGINEERING |
| MECHANICAL ENGINEERING PR. (ENGLISH) | |
| Code | MES429 |
| Name | Introduction to Mechatronic Systems |
| Term | 2019-2020 Academic Year |
| Semester | 7. Semester |
| Duration (T+A) | 3-0 (T-A) (17 Week) |
| ECTS | 5 ECTS |
| National Credit | 3 National Credit |
| Teaching Language | İngilizce |
| Level | Lisans Dersi |
| Type | Normal |
| Label | E Elective |
| Mode of study | Yüz Yüze Öğretim |
| Catalog Information Coordinator | Prof. Dr. HAKAN YAVUZ |
| Course Instructor |
Prof. Dr. HAKAN YAVUZ
(Güz)
(A Group)
(Ins. in Charge)
|
Course Goal / Objective
Teaching students about Mechatronic systems and related system components
Course Content
Definitions and Applications of Mechatronics, Structure of a typical Mechatronic System, Design of Mechatronic Systems, Sensors, Actuators, Modeling, Simulation, Optimization, Control, Actuator and Sensor Drivers, Analogue and Digital I/O, Computing Hardware and Software, Understanding and Modelling of Engineering Systems, Control Engineering, Mechatronic System Examples, Artificial Intelligence
Course Precondition
Resources
Notes
Course Learning Outcomes
| Order | Course Learning Outcomes |
|---|---|
| LO01 | Mechatronics Definition and Applications |
| LO02 | The Structure of Typical Mechatronic System |
| LO03 | Mechatronic Systems Design |
| LO04 | Sensors |
| LO05 | Actuators |
| LO06 | Modeling, Simulation |
| LO07 | Optimization |
| LO08 | Control |
| LO09 | Actuator and Sensor Drivers |
| LO10 | Analog and Digital I / O, |
| LO11 | Computer and hardware |
| LO12 | Understanding and Modeling of Engineering Systems |
| LO13 | Control Engineering |
| LO14 | Mechatronic System Examples |
| LO15 | Artificial intelligence |
Relation with Program Learning Outcome
| Order | Type | Program Learning Outcomes | Level |
|---|---|---|---|
| PLO01 | - | Student become equipped with the basic knowledge of math, science and engineering | 4 |
| PLO02 | - | Students gain a command of basic concepts, theories and principles in mechanical engineering | 3 |
| PLO03 | - | Students are able to design and carry out experiments in the basic fields of mechanical engineering, and interpret the results and the data obtained from the experiments | 4 |
| PLO04 | - | Students become equipped with a variety of skills and knowledge regarding engineering techniques | 3 |
| PLO05 | - | Students are able to design a system, component or process in order to meet the needs of various engineering problems within technical, economic, environmental, manufacturability, and sustainability limits. | 4 |
| PLO06 | - | Students independently review and learn the applications in an enterprise, make a critical assessment of the problems faced with, formulate problems and propose solutions by selecting the proper technique | 3 |
| PLO07 | - | Students take initiative in identification, design, development and use of a product or production process. | 5 |
| PLO08 | - | Students become aware of the necessity of lifelong learning and continuously self-renew | 3 |
| PLO09 | - | Students use English effectively for technical or non-technical topics orally or in wirtten form. | 4 |
| PLO10 | - | Students become effective in using computer, computer-aided drafting, design, analysis, and presentation | 5 |
| PLO11 | - | Students have good communicatino skills with a tendency to work in teams, and are able to work effectively as a member of an interdisciplinary team | 3 |
| PLO12 | - | Students become aware of the technical and ethical responsibilities, as well as being inquisitive and innovative | 5 |
Week Plan
| Week | Topic | Preparation | Methods |
|---|---|---|---|
| 1 | Mechatronics Definition and Applications | Reviewing of lecture notes and reference books | |
| 2 | The Structure of Typical Mechatronic System | Reviewing of lecture notes and reference books | |
| 3 | Mechatronic Systems Design | Reviewing of lecture notes and reference books | |
| 4 | Sensors | Reviewing of lecture notes and reference books | |
| 5 | Actuators | Reviewing of lecture notes and reference books | |
| 6 | Modeling, Simulation | Reviewing of lecture notes and reference books | |
| 7 | Optimization, Control | Reviewing of lecture notes and reference books | |
| 8 | Written Exam | Preparation for exam | |
| 9 | Actuator and Sensor Drivers | Reviewing of lecture notes and reference books | |
| 10 | Analog and Digital I / O, | Reviewing of lecture notes and reference books | |
| 11 | Computer and hardware | Reviewing of lecture notes and reference books | |
| 12 | Understanding and Modeling of Engineering Systems | Reviewing of lecture notes and reference books | |
| 13 | Control Engineering | Reviewing of lecture notes and reference books | |
| 14 | Mechatronic System Examples | Reviewing of lecture notes and reference books | |
| 15 | Artificial intelligence | Reviewing of lecture notes and reference books | |
| 16 | Written Exam | Preparation for exam | |
| 17 | Written Exam | Preparation for exam |
Assessment (Exam) Methods and Criteria
| Assessment Type | Midterm / Year Impact | End of Term / End of Year Impact |
|---|---|---|
| 1. Midterm Exam | 100 | 40 |
| General Assessment | ||
| Midterm / Year Total | 100 | 40 |
| 1. Final Exam | - | 60 |
| Grand Total | - | 100 |
Student Workload - ECTS
| Works | Number | Time (Hour) | Workload (Hour) |
|---|---|---|---|
| Course Related Works | |||
| Class Time (Exam weeks are excluded) | 14 | 3 | 42 |
| Out of Class Study (Preliminary Work, Practice) | 14 | 3 | 42 |
| Assesment Related Works | |||
| Homeworks, Projects, Others | 0 | 0 | 0 |
| Mid-term Exams (Written, Oral, etc.) | 1 | 12 | 12 |
| Final Exam | 1 | 18 | 18 |
| Total Workload (Hour) | 114 | ||
| Total Workload / 25 (h) | 4,56 | ||
| ECTS | 5 ECTS | ||