Program | IULI - Universitas Lintas Internasional Indonesia
International University Liaison Indonesia - IULI

Study Programs · Universitas Lintas Internasional Indonesia

Bachelor Of Electrical Engineering (Biomedical Eng/Mechatronics Eng)

Level Bachelor
Graduation Title S.T.
Accreditation Very well
Study Duration 4 years / 8 semesters
The IULI Undergraduate Electrical Engineering Program is designed to produce graduates competent in electrical technology, automation, control systems, electronics, energy, IoT, and digital technologies, and able to adapt to developments in Industry 4.0. With a socio-technopreneurship approach, students are equipped not only with technical skills but also with innovation, creativity, entrepreneurship, problem-solving skills, and a concern for community needs. The learning process is supported by practical activities, research, applied projects, and collaborations with national and international industries and institutions. This study program prepares graduates to become engineers, innovators, researchers, and technopreneurs capable of creating innovative, adaptive, sustainable, and globally competitive technological solutions.
Vision
To become an Electrical Engineering Undergraduate Study Program that excels in producing innovative, adaptive, and globally competitive socio-technopreneurs.
Mission
  1. Provide excellent, innovative, and adaptive Electrical Engineering education with a focus on socio-technopreneurship.
  2. Conduct innovative and applied research and development in the field of Electrical Engineering to address the needs of industry and society.
  3. Carry out community service through the application of electrical engineering technologies that provide innovative and sustainable solutions for society.
  4. Develop strategic partnerships with educational institutions, industry, government, and international partners to enhance the quality of education, research, and technology development.
  5. Develop professional and adaptive governance of the Electrical Engineering Study Program, with a focus on continuous quality improvement in response to technological developments and global needs.
  • Graduates of the Bachelor of Dental Surgery program earn the Bachelor of Dental Surgery (S.K.G.) degree. The Bachelor stage is the academic phase in the dental education journey.
  • To obtain the Dentist (drg.) title and practice professionally, graduates must continue to the Dental Profession Program and meet all applicable educational and regulatory requirements.
  • During the Bachelor phase, students build a strong foundation in biomedical and dental sciences, case analysis skills, preclinical techniques, research, communication, ethics, and professionalism to prepare for professional education.

Electrical Engineering has 2 Concentrations, namely Mechatronics Engineering and Biomedical Engineering.

  • Mechatronics Learning Area
    Students follow an integrated curriculum covering the main fields of mechatronics comprehensively:
    • Mechanical Systems and Design
    • Electronics and Electrical Engineering
    • Robotics and Automation
    • Control Systems
    • Computer Programming and Software
    • Sensors and Instrumentation
    • Internet of Things (IoT) and Smart Technology
    • Artificial Intelligence and Machine Learning
    • Manufacturing and Industry 4.0
  • Biomedical Engineering Learning Area:
    • Biomedical Instrumentation – medical measurement tools and systems
    • Medical Imaging – imaging technologies such as X-ray, CT, and MRI
    • Biomedical Robotics – robotics for medical needs
    • AI & Digital Health – AI, data, and digital health technology
    • Electronics & Biosignal Processing – electronics and biological signal processing
    • Biomechanics & Rehabilitation – biomechanics, prosthetics, and rehabilitation technology
    • Biomaterials & Tissue Engineering – materials and technology for the human body
    • Healthcare Technology – application of technology to improve healthcare services
  • Mechatronics Career Opportunities
  • Mechatronics Engineer
    Design and develop integrated mechanical-electronic systems.
  • Automation Engineer
    Develop automation systems to enhance industrial efficiency and productivity.
  • Robotics Engineer
    Design, program, and develop robots for various industrial needs.
  • Control Systems Engineer
    Develop control systems for machinery, robotics, and industrial processes.
  • PLC Engineer / Programmer
    Create programs and develop PLC-based control systems for industrial machinery.
  • Smart Manufacturing Engineer
    Develop smart production systems using IoT, data, AI, and automation.
  • Industrial Engineer
    Optimize production processes, quality, and resource utilization.
  • EV / Automotive Engineer
    Work on electric vehicles, battery systems, electric motors, vehicle control, and automotive automation.
  • IoT Engineer
    Develop devices and systems connected through the Internet of Things.
  • AI & Robotics Engineer
    Integrate artificial intelligence with robotics and automated systems.
  • Maintenance / Reliability Engineer
    Ensure machinery and automated systems operate optimally and reliably.
  • R&D Engineer
    Conduct research and develop new technologies or products.
  • Biomedical Technology Engineer
    Develop technology and equipment for the healthcare and medical fields.
  • Aerospace / Drone Engineer
    Develop control systems, sensors, and automation for drones.
  • Entrepreneur / Technology Startup Founder
    Build businesses based on technology and engineering.
  • Biomedical Engineering Career Paths
  • Biomedical Engineer
    Develop and manage medical technology.
  • Medical Device Engineer
    Design and develop healthcare devices.
  • Healthcare Robotics Engineer
    Develop robotics for medical applications.
  • AI & Medical Technology Engineer
    Apply AI to healthcare technologies.
  • R&D Engineer (Biomedical)
    Conduct research and develop healthcare products.
  • Clinical Engineer
    Ensure medical equipment is safe and operating optimally.
  • Biotechnology Engineer
    Develop technologies for biomedical and biotechnology sectors.
  • Health-Tech Entrepreneur
    Build healthcare technology businesses and startups.
  • Basic Electronics Laboratory
  • Basic Physics Laboratory
  • Computer and Simulation Laboratory
  • Electrical Engineering Project Laboratory
  • Instrumentation and Measurement Laboratory
  • Control Systems and Robotics Laboratory
  • Library and Access to Digital Learning Resources
  • Collaborative Learning Facilities
  • Industry Partners and Field Practice Facilities
  • Combining Technology & Healthcare
    Study engineering, electronics, AI, and medical technology to create innovative healthcare solutions.
  • Learn Future-Oriented Technology
    Explore medical devices, biomedical instrumentation, robotics, IoT, and AI applied in the health sector.
  • Practice & Innovation Oriented
    Hands-on learning through practical labs, projects, research, and real-world problem-solving.
  • International Perspective
    An international learning environment with opportunities for collaboration with global institutions and industries.
  • Broad Career Prospects
    Abundant career opportunities in medical devices, hospitals, healthcare technology, biotechnology, R&D, and health-tech companies.
  • Become a Socio-Technopreneur
    Empowering students to develop innovative, adaptive healthcare technologies that benefit society.

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