Arish Undergraduate Programs

Mechatronics Engineering

Department Head's Message

My dear students of the Mechatronics Engineering Program, it is my pleasure to welcome you, both personally and on behalf of my colleagues on the faculty and staff of the Mechatronics Engineering program. I congratulate you on joining one of the most important engineering programs, which contributes to preparing qualified professionals capable of keeping pace with industrial and technological advancements.

The Mechatronics Engineering program provides a sophisticated academic environment that combines theoretical study with practical application, thus enabling graduates to compete in the local, regional, and international job markets.

I urge you to be diligent and hardworking, to strive to acquire knowledge and practical skills, and to participate in scientific and research activities. Your success is a success for the department, the college, and the university. We also call upon you to uphold the values ​​of teamwork, academic integrity, creativity, and innovation, as these are the foundations upon which a successful engineer is built.

In conclusion, I welcome you to the website of the Faculty of Engineering, Sinai University, and wish you a successful and distinguished academic journey. May you be excellent ambassadors for the Mechatronics Engineering program in your future careers.

Assoc. Prof. Tarek Mohamed Tawfik Bakhit

Program Mission
Program Aims
Quality Assurance Unit Files

The Mechatronics Engineering Program at the Faculty of Engineering – Sinai University is committed to preparing scientifically, professionally and ethically qualified engineers capable of competing in the local and regional labor market, through providing outstanding engineering education, supporting scientific research and innovation, contributing to community service, and achieving sustainable development in the fields of energy and mechanical systems.

  • To provide students with a solid foundation in mechatronics engineering principles by integrating mechanical design, electronic circuits, control systems, and embedded computing, with a focus on their complementary interaction to create intelligent systems.
  • To develop the ability to identify, analyze, and solve complex engineering problems creatively, with an emphasis on developing intelligent, automated, and practical solutions across various fields.
  • To prepare students for lifelong learning to keep pace with rapid technological advancements, including artificial intelligence, robotics, the Internet of Things, and cyber-physical systems in the field of mechatronics.
  • To equip students with the advanced technologies, skills, and modern engineering tools necessary to design, model, simulate, integrate, and maintain intelligent systems—including sensors, actuators, microcontrollers, embedded processors, robotic platforms, and industrial automation networks—while verifying their performance and addressing operational challenges.
  • To encourage collaboration across mechanical, electrical, computer, and software engineering disciplines, and to motivate students to work effectively within diverse and dynamic teams to solve integrated, system-level problems.
  • To instill a strong sense of professional integrity, ethical responsibility, and commitment to societal needs, sustainable automation, and the development of smart, energy-efficient, and environmentally friendly technologies.
  • To prepare graduates for research and development roles by equipping them with knowledge in advanced control theories, machine learning applications, cyber-physical systems security, and emerging mechatronics and robotics technologies.
  • To provide students with the skills necessary to succeed in diverse professional contexts, from advanced manufacturing and automotive electronics to the Fourth Industrial Revolution and technology startups, while fostering entrepreneurial thinking, rapid prototyping, and product lifecycle management.
  • To enable graduates to make valuable contributions to the advancement of science and technology through the innovative application of smart and integrated mechatronics systems that enhance automation, precision, and human-machine interaction.