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MA/MS in Innovative Electrical and Automation Systems

Klaipėda University

Klaipėda, Klaipėda, Lithuania•World Rank #3,598

At Klaipėda University in Klaipėda, Lithuania, MA/MS in Innovative Electrical and Automation Systems is offered as a master's degree programme. The programme runs for 2 years, delivered on campus.

At a glance

Degree: Master's Degree
Duration: 2 years
Delivery: On Campus

We have no tuition fees or an application deadline on record for this programme yet. — it helps other students.

Information for the 2027/28 academic year · Last reviewed May 2026 ·

Program details

Overview

General Description: Objective(s) of a study programme: The aim of Electronics Engineering programme is to prepare highly qualified electronics engineering professionals and scientists to be able to perform intellectual and creative activities; to ensure education, based on research and corresponding high level of technology required for the global engineering market activities, understanding the importance of engineering solutions. To develop high creative and critical thinking electronic engineering specialists who are able to apply innovative methods when solving non-standard and technically uncertain issues and ensuring that all they will have a degree sufficient capacity, skills and motivation to continue their studies and / or be able to maintain their professional competence throughout their lives. Learning outcomes: Knowledge and understanding: 1.Thoroughgoing knowledge and understanding of technology in the field of science in electronics and electrical engineering. 2.Critically perceive technology in the field of science in electrical engineering from the direction of the essence. Engineering analysis: 1. Ability to solve unknown, not fully defined problems and challenges of using well known methods. 2. Ability to formulate and solve new and emerging areas of specialization problems adapting their knowledge and understanding. 3. Ability to apply their knowledge and understanding of conceptualizing electronics and electrical engineering models, systems and processes. 4. Ability to dealing in electronics and electrical engineering problems to use innovative methods. Engineering design: 1. Ability to apply the acquired electronic engineering knowledge and understanding when dealing with unfamiliar problems, possibly related to other disciplines. 2. Ability to develop new and original ideas and methods in electronics engineering direction. 3. The capability of using electronics and electrical engineering knowledge and judgment to work with complex, technical uncertainty and incomplete information. Research: 1. Ability to define, identify and obtain the necessary data. 2. Ability to plan and carry out the necessary analytical, modeling and experimental research in electronics engineering direction. 3. Ability to critically evaluate data and to draw conclusions. 4. Ability to explore how to adapt new and emerging technologies in the field of science in electronics engineering. Engineering activities: 1. Ability to merge into a single whole different fields and to manage complexity. 2. Deep understanding of methods and techniques in electronics engineering direction and their limitations. 3. Knows the ethical, environmental and commercial engineering operational limitations. Personal / transferable skills: 1. Ability to be a team, which may include a variety of disciplines and levels of representatives of the leader. 2. Meets the first cycle of electronic engineering graduates for the requirements of post-graduate level. 3. The effective work and commu-nication skills in national and international level. Activities of teaching and learning: - Lectures - Practice - Seminars - Labs - Case studies - Individual consultations - Scientific practice Methods of assessment of learning achievements: The University applies cumulative grading in order to ensure objective evaluation, active students’ participation during the semester and their ability to apply theoretical knowledge in practice. Cumulative grading final evaluation consists of interim course assignments (test, individual work, paper, laboratory work defense, etc.) and final exam grades. If the student fails the interim course assignments and does not make to transition grade − minimal grade of determined interim course assessments − he is not allowed to take the final exam. Each study program is completed by defending final thesis (project). A ten-point grading system is used at the University. Framework: Study subjects (modules), practical training: Research and Innovation Modern electromagnetic pollution minimization techniques Companies electrical equipment and networks Coastal and Marine alternative energy systems Control systems for synthesis and simulation Electrical equipment diagnostics Autonomous robotic systems Experiment planning theory and project management Master's thesis Scientific practice Specialisations: Optional courses: - Technical Systems Reliability - Special electrical machines - Maritime development problems and research directions - Modern power electronics systems modeling - Sea and shore power system smart network - Embedded green and blue energy flow management system - Port infrastructure design and development - Ship servicing and coastal installations in power electronics systems Distinctive features of a study programme: Master in Electronic Engineering has a grasp of the essential principles of electronic engineering, the ability to apply innovative engineering principles and analytical techniques to not clear defined problem formulation and solution, understanding of the innovative engineering design process, at the conceptual level, a familiarity with the key factors in the business environment such as marketing skills, financial awareness and investment appraisal and a range of transferable skills including communication, project management and team working. Access to professional activity or further study: Access to professional activity: Having acquired Master's qualification in Electronic Engineering graduates can work in various companies and organizations as engineers-designers, technical consultants, engineers, industry or unit managers, project managers in commercial companies, executives and other electronics and electrical engineering specialists. Access to further study: After the Electronic Engineering master's degree program, graduates can continue to study in technological or social sciences doctoral programs.

About Klaipėda University

Type: University
Control: Public
Students: 2,500
World rank: #3,598
Programs: 57
Location: Klaipėda, Klaipėda, Lithuania
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Frequently asked questions

What degree does MA/MS in Innovative Electrical and Automation Systems award?

Klaipėda University awards a Master's Degree on completion of this programme.

How long does MA/MS in Innovative Electrical and Automation Systems take?

The programme runs for 2 years.

Can MA/MS in Innovative Electrical and Automation Systems be studied online?

No — the programme is taught on campus at Klaipėda University.

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