Educational Objectives

Enabling students to understand the fundamental principles of mechatronics technologies by integrating mechanical engineering, electronics, control systems, and computers, with the ability to analyze smart system components and their operating mechanisms.

Interpreting the behavior of various electromechanical systems, understanding the relationship between sensors, actuators, and control units, and analyzing the response of dynamic systems in industrial applications.

Conducting laboratory experiments and tests related to mechatronics systems, and mastering the practical application of sensors, electric actuators, microcontrollers, and Programmable Logic Controllers (PLCs).

Interpreting the results of laboratory measurements and tests, diagnosing faults in smart and robotic systems, and evaluating the performance of control and automation systems in accordance with approved engineering standards.

Developing skills in designing and programming smart systems and industrial robots using modern engineering software, with the capability to integrate mechanical and electronic components into a unified system.

Interpreting the design and development steps of mechatronic systems, and analyzing the efficiency of proposed engineering solutions in terms of performance, accuracy, power consumption, and reliability.

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