SI1OR1 - Fundamentals of Computer Engineering 1
Course specification | ||||
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Course title | Fundamentals of Computer Engineering 1 | |||
Acronym | SI1OR1 | |||
Study programme | Software Engineering | |||
Module | ||||
Type of study | bachelor academic studies | |||
Lecturer (for classes) | ||||
Lecturer/Associate (for practice) | ||||
Lecturer/Associate (for OTC) | ||||
ESPB | 5.0 | Status | mandatory | |
Condition | ||||
The goal | Introduce Boolean algebra, switching functions, switching circuits, logical and memory elements, and combinational and sequential modules. | |||
The outcome | By the end of this course, students will be able to: understand the structure of switching circuits; carry out the analysis and synthesis of switching circuits; use combinational and sequential modules. | |||
Contents | ||||
Contents of lectures | Boolean algebra. Switching functions. Minimization of switching functions. Functions and structure of switching circuits. Logical elements. Memory elements. Structure, analysis and synthesis of combinational and sequential switching circuits. Standard combinational modules. Standard sequential modules. | |||
Contents of exercises | Examples of minimization of switching functions, analysis and synthesis of combinational and sequential circuits. Design of flip-flops. Circuit analysis combining with standard modules (multiplexer, demultiplexer, priority encoder, decoder, incrementer, decrementer, comparator, and an arithmetic logic unit, adder and substractor). Design of registers, counters and memory. | |||
Literature | ||||
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Number of hours per week during the semester/trimester/year | ||||
Lectures | Exercises | OTC | Study and Research | Other classes |
3 | 2 | |||
Methods of teaching | Lectures, auditory exercises. | |||
Knowledge score (maximum points 100) | ||||
Pre obligations | Points | Final exam | Points | |
Activites during lectures | 0 | Test paper | 40 | |
Practical lessons | 0 | Oral examination | 0 | |
Projects | 0 | |||
Colloquia | 60 | |||
Seminars | 0 |