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Electronics Practice
Microelectronics Practice
Sensors, Actuators, and Data Acquisition Practice in Agroindustry
Biomedical Electronics Practice
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Control Systems and Robotics Laboratory
Laboratory Profile
Vision: To become a center of excellence in research and development of control systems and robotics to support innovation in various industrial sectors and advance scientific knowledge in automation technology.
Mission:
Conduct research and development on intelligent and innovative control systems for applications across various industries.
Provide an outstanding laboratory environment to support learning and experimentation in control systems and robotics.
Integrate robotic technology to enhance production processes and services in industrial sectors.
Collaborate with industry, academia, and government on research projects related to the development of control systems and robotics.
Provide training and skills enhancement for students, researchers, and professionals interested in control systems and robotics.
Laboratory Facilities
The laboratory is equipped with tools and hardware for research in the development of adaptive, predictive, and fuzzy control systems.
There is a dedicated area for the development, testing, and experimentation of industrial robotics, including manipulator and collaborative robots.
The facility includes simulation tools to test and validate control system models before implementing them on hardware.
Practical Courses
Signals and Systems Practice
Control Systems Practice
Industrial Electronics and Automation Practice
Agroindustrial Robotics Practice
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The Telecommunications and Multimedia Laboratory is a dedicated facility equipped with up-to-date hardware and software for experimentation and development in the fields of telecommunications and multimedia. Students can study concepts such as modulation, signal encoding, and multimedia application development through experiment modules. This laboratory supports the development of innovative projects in information and communication technology, preparing students for the challenges in the ever-evolving telecommunications industry.
Practical Courses
Basic Telecommunications Systems Practice
Algorithms and Programming Practice
Cellular Communication Networks Practice
Antennas and EM Wave Applications in Agroindustry Practice
Data Security and Communication Systems Practice
Digital Image Processing and Multimedia for Agroindustry Practice
Optical Fiber Communication Systems Practice
Traffic Engineering, Networks, and Internet Practice
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The Power Systems and Energy Conversion Laboratory is a research and learning facility that provides an environment for exploring power systems and energy conversion concepts. Equipped with advanced tools such as generators, electric motors, and a variety of experimental modules, students can understand and test fundamental principles in this field. The facility supports case studies on power generation, renewable energy, and system efficiency, preparing students to design and manage efficient and sustainable power systems. This laboratory is key to supporting education and research in energy engineering, providing students with a solid foundation to tackle future challenges and innovations.
Practical Courses
Basic Electrical Power Systems Practice
Electrical Machines Practice
Power Generation Practice
Renewable Energy Practice in Agroindustry
Power Systems Analysis Practice
Power Distribution Systems and SCADA Practice
Electrical Power Installation Design Practice
Power Electronics Practice