Basics of information and communication technology (ICT). Principles of design including elements design, process and/or a system related to specific disciplines. Methodologies of solving engineering problems, data collection and interpretation. Current engineering technologies as related to disciplines. Contemporary engineering topics. Principles of operation and performance specifications of electrical and electromechanical engineering systems. Logic circuits. Analysis, design and implementation of various methods of control using analogue and digital control systems. Applications of industrial automated systems for electrical and control engineering. Formulate the problem, realizing the requirements and identifying the constraints.
Bachelor Degree in Electrical and Control Engineering
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content serial | Description |
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1 | Introduction to Automation. |
2 | Building blocks of automation. |
3 | Motor Control Center (MCC). |
4 | Relay logic. |
5 | Programmable Logic Controller (PLC) hardware. |
6 | PLC Programming Languages. |
7 | 7th week exam + Programming With Logic Functions. |
8 | Timers Operation. |
9 | Counters Operation. |
10 | Advanced programming techniques. |
11 | Control Application Examples. |
12 | 12th week exam + Industrial Application Examples. |
13 | Practical Case Studies. |
14 | Application project. |
15 | Advanced PLC And Automated Systems. |
16 | Final Exam. |
1 | Introduction to Automation. |
2 | Building blocks of automation. |
3 | Motor Control Center (MCC). |
4 | Relay logic. |
5 | Programmable Logic Controller (PLC) hardware. |
6 | PLC Programming Languages. |
7 | 7th week exam + Programming With Logic Functions. |
8 | Timers Operation. |
9 | Counters Operation. |
10 | Advanced programming techniques. |
11 | Control Application Examples. |
12 | 12th week exam + Industrial Application Examples. |
13 | Practical Case Studies. |
14 | Application project. |
15 | Advanced PLC And Automated Systems. |
16 | Final Exam. |
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