Basic information
Study programme | Smart Electronic Systems |
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Higher Education Institution | Riga Technical University |
Study field | Information Technology, Computer Hardware, Electronics, Telecommunications, Computer Management, and Computer Science |
All data
Code of the study programme in accordance with the Latvian Education Classification | 47523 |
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EQF/LQF Level | 7 |
Study Programme Type | Otrā cikla augstākās izglītības programma maģistra grāda un septītā līmeņa profesionālās kvalifikācijas ieguvei, īstenojama pēc pirmā cikla augstākās izglītības ieguves |
Study programme (short name) | Second-cycle (professional master's) study programme |
Thematic group | Elektronika un automātika |
ISCED code | 0714 |
ISCED | Elektronika un automātika |
Credit points | 120; 90 |
Degree to be acquired | Professional Master's Degree in Electronics |
Qualification to be obtained | Lead Electronics Engineer |
Study type and form | Full time studies |
Study lenght | 2 years; 1 years, 6 months |
Language | latvian; english |
Licence information
Licence number | 04051-145 |
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Licence date | 17.12.2009 |
Licenced till |
Accreditation information
Accreditation page number | Netiek izsniegta |
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Accreditation date | 29.11.2023 |
Accreditation duration (in years) | 6 |
Accreditation till | 30.11.2029 |
Results
Graduate of the study programme:
• is able to develop circuit diagrams of electronic equipment and systems, make prototypes, perform their testing, analysis and improvement, observing the binding, industry-specific requirements of regulatory enactments and standards applicable to systems, processes and products;
• is able to determine production technological processes, manage the production of electronic equipment and systems in accordance with technical documentation, standards and quality management system;
• is able to conduct research with scientific value in the field of smart electronic systems, professionally systematize information, summarize, interpret and analyze research results, prepare summary reports and publications;
• is able to apply current technologies and software in the design and production process of electronic equipment and systems;
• is able to design electronic equipment and systems, perform their operation modeling, management software development;
• is able to develop printed circuit boards, develop the corresponding technical documentation;
• is able to evaluate human resources and create a project working group, delegate work tasks and control their execution, present the progress and results of the project;
• knows at the level of understanding: current electronic equipment production technologies, electronics industry standards and technical norms;
• knows electrodynamics, electromagnetic compatibility and antenna theory at the application level;
• is familiar with analog and digital circuitry at the application level;
• knows at the application level the theory of signal processing, the construction and design of transmission and reception equipment, as well as data transmission networks, sensors and actuators;
• knows the programming of microcontrollers, signal processors, programmable logic circuits in a high-level language at the application level.
• is able to develop circuit diagrams of electronic equipment and systems, make prototypes, perform their testing, analysis and improvement, observing the binding, industry-specific requirements of regulatory enactments and standards applicable to systems, processes and products;
• is able to determine production technological processes, manage the production of electronic equipment and systems in accordance with technical documentation, standards and quality management system;
• is able to conduct research with scientific value in the field of smart electronic systems, professionally systematize information, summarize, interpret and analyze research results, prepare summary reports and publications;
• is able to apply current technologies and software in the design and production process of electronic equipment and systems;
• is able to design electronic equipment and systems, perform their operation modeling, management software development;
• is able to develop printed circuit boards, develop the corresponding technical documentation;
• is able to evaluate human resources and create a project working group, delegate work tasks and control their execution, present the progress and results of the project;
• knows at the level of understanding: current electronic equipment production technologies, electronics industry standards and technical norms;
• knows electrodynamics, electromagnetic compatibility and antenna theory at the application level;
• is familiar with analog and digital circuitry at the application level;
• knows at the application level the theory of signal processing, the construction and design of transmission and reception equipment, as well as data transmission networks, sensors and actuators;
• knows the programming of microcontrollers, signal processors, programmable logic circuits in a high-level language at the application level.
Documents
Document | Document type | Language |
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Expert / Experts joint report | Expert / Experts joint report | english |
Self-evaluation report | Self-evaluation report | english |
Self-evaluation report | Self-evaluation report | latvian |
Expert / Experts joint report (10.07.2018) | Expert / Experts joint report | latvian |
Expert / Experts joint report (02.09.2021) | Expert / Experts joint report | latvian |
Commission decision (29.01.2025) | Commission decision | latvian |
History of study programme
Date | Information | Decision |
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23.07.2018 |