Branch Details
Microelectronics and Technology
Original title in Czech: Mikroelektronika a technologieFEKTAbbreviation: PK-METAcad. year: 2010/2011
Programme: Electrical Engineering and Communication
Length of Study: 4 years
Profile
The doctor study programme is devoted to the preparation of the high quality scientific and research specialists in various branches of microelectronics and electrotechnology, namely in theory, design and test of integrated circuits and systems, in semiconductor devices and structures, in smart sensors, in optoelectronics in materials and fabrication processes for electrical engineering, and in sources of electric energy.
The aim is to provide the doctor education in all these particular branches to students educated in university magister study, to make deeper their theoretical knowledge, to give them also requisite special knowledge and practical skills and to teach them methods of scientific work.
Key learning outcomes
microelectronics and electrotechnology.
Occupational profiles of graduates with examples
The graduate of the doctoral study programme is able to solve scientific and complex engineering tasks in the field of microelectronics and technology for electrical engineering. The graduate has reached a high level of general theoretical knowledge in the branch and is further specialized in the area of his/her dissertation thesis.
Having broad theoretical knowledge, the PhD graduate is capable of meeting work requirements of both fundamental and applied research. The PhD graduates are sought out as specialists in all branches of microelectronics and technology. They are able to work as research workers, as members of management staff in fundamental or applied research, as design, construction or operation specialists in various research and development institutions, electronics manufacturing firms, and to work for various users of electronic systems and devices. They will be able to employ advanced technology everywhere in a creative way.
Guarantor
Issued topics of Doctoral Study Program
- Analytic method of photovoltaic modules
Development of new diagnostic method of photovoltaic modules
Supervisor: Vaněk Jiří, doc. Ing., Ph.D.
- Development and design of high-speed arithmetic operations for low-power VLSI digital integrated circuits
Development and design of high-speed arithmetic operations for low-power VLSI digital integrated circuits
Supervisor: Fujcik Lukáš, doc. Ing., Ph.D.
- Electrodes for lithium-ions accumulators with electrodeposited silicium
Electrodes for lithium-ions accumulators with electrodeposited silicium. Gel polymer electrolytes with low flammability ( wih silyl, sulfolane and the others).
Supervisor: Sedlaříková Marie, doc. Ing., CSc.
- Gel polymer electrolytes with low flammability
Gel polymer electrolytes with low flammability ( wih silyl, sulfolane and the others )
Supervisor: Sedlaříková Marie, doc. Ing., CSc.
- High Temperature Rapid Thermal Processes for Si Solar Cells Production
By Si solar cells are used various high temperature processes as difusion, oxidation, RTA etc. Aim of the work is to establish temperature profiles for repetable and efficience production which wll improve production yield.
Supervisor: Szendiuch Ivan, doc. Ing., CSc.
- Nanoparticles in solder pastes in electronic engineering
The aim of project is collecting everything about this problem, experiments to realized LF solder paste with low melting temperature.
Supervisor: Šandera Josef, doc. Ing., Ph.D.
- Reliability lead free solder joint in electronic and microelectronic
The aim of work is research thermomechanical reliability real solder connection for LF solders. Accelerated tests. To compare real and simulation results. For simulation use ANSYS with various mathematical models.
Supervisor: Šandera Josef, doc. Ing., Ph.D.
- 3D connection for LTCC ceramic
The aim of work is realization of multilayer structures. Realization the conductive connection in layers and interlayers. Investigation of reliability with various materials, technology, Realization of real structure.
Supervisor: Šandera Josef, doc. Ing., Ph.D.
Course structure diagram with ECTS credits
| Abbreviation | Title | L. | Cr. | Com. | Compl. | Hr. range | Gr. | Op. |
|---|---|---|---|---|---|---|---|---|
| DET1 | Electrotechnical materials, material systems and production processes | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DEE1 | Mathematical Modelling of Electrical Power Systems | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DME1 | Microelectronic Systems | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DTK1 | Modern network technologies | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DRE1 | Modern electronic circuit design | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DFY1 | Junctions and nanostructures | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DTE1 | Special Measuring Methods | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DAM1 | Selected chaps from automatic control | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DVE1 | Selected problems from power electronics and electrical drives | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DBM1 | Advanced methods of processing and analysis of signals and images | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DMA1 | Statistics, Stochastic Processes, Operations Research | cs | 4 | General knowledge | DrEx | S - 39 | yes |
| Abbreviation | Title | L. | Cr. | Com. | Compl. | Hr. range | Gr. | Op. |
|---|---|---|---|---|---|---|---|---|
| DTK2 | Applied cryptography | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DME2 | Microelectronic technologies | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DRE2 | Modern digital wireless communication | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DTE2 | Numerical Computations with Partial Differential Equations | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DFY2 | Spectroscopic methods for non-destructive diagnostics | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DET2 | Selected diagnostic methods, reliability and quality | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DAM2 | Selected chaps from measuring techniques | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DBM2 | Selected problems of biomedical engineering | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DEE2 | Selected problems of electricity production | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DVE2 | Topical Issues of Electrical Machines and Apparatus | cs | 4 | Optional specialized | DrEx | S - 39 | yes | |
| DMA2 | Discrete Processes in Electrical Engineering | cs | 4 | General knowledge | DrEx | S - 39 | yes |
| Abbreviation | Title | L. | Cr. | Com. | Compl. | Hr. range | Gr. | Op. |
|---|---|---|---|---|---|---|---|---|
| DQJA | English for the state doctoral exam | cs | 4 | Compulsory | DrEx | yes | ||
| DJA6 | English for post-graduates | cs | 4 | General knowledge | DrEx | Cj - 26 | yes |