Lecturer(s)
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Zamazal Daniel, Ing. Ph.D.
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Varga Jiří, prof. Ing. CSc.
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Course content
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1. Signals in digital systems. Signal parameters. Logic devices CMOS - principles, properties. Static and dynamic parameters. 2. Dynamic logic devices. Tristate- and open collector devices. Buses. 3. Combinational circuits - description by logic expressions, truth tables, maps. Minimization. 4. Basic combinational building blocks. Comb. circuits - dynamic parameters, hazards. 5. Flip-flops and latches - function, timing, metastability. 6. Sequential circuits - description, properties. Synchronous and asynchronous sekv. circuits. 7. Timing in sequential circuits. Unused states. 8. Large-scale systems. Clock domains, Handshake, pipelines, paralelism. 9. Counters - binary, modulo, Gray, reversible. Application of counters. 10. Timers. Principles of asyncronous and synchronous tiners. Edge detectors. 11. Memories - SRAM, DRAM and SDRAM, EEPROM, FLASH. Special types - LIFO, FIFO, double-port. 12. Programmable logic circuits. FPGA. 13. Reserve - selected topics.
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Learning activities and teaching methods
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- Preparation for an examination (30-60)
- 41 hours per semester
- Preparation for formative assessments (2-20)
- 9 hours per semester
- Preparation for laboratory testing; outcome analysis (1-8)
- 18 hours per semester
- unspecified
- 45 hours per semester
- Contact hours
- 39 hours per semester
- Practical training (number of hours)
- 26 hours per semester
- Contact hours
- 20 hours per semester
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prerequisite |
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Knowledge |
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describe basic properties of electronic devices (diode, transistor, operation amplifier...) |
explain function of basic electronic circuits |
Skills |
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measure static and dynamic parameters of logic devices |
design simple digital circuit |
Competences |
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N/A |
N/A |
N/A |
N/A |
learning outcomes |
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Knowledge |
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describe the behavior and properties of combination systems |
describe the behavior and properties of sequential systems |
explain the principle of registers and counters |
Skills |
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design basic digital circuits |
to adapt basic digital circuits |
to analyze complex digital systems |
Competences |
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N/A |
N/A |
teaching methods |
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Knowledge |
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Lecture supplemented with a discussion |
Laboratory work |
Skills |
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Practicum |
Competences |
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Practicum |
assessment methods |
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Knowledge |
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Oral exam |
Written exam |
Test |
Skills |
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Test |
Skills demonstration during practicum |
Competences |
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Oral exam |
Recommended literature
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Podklady v courseware.zcu.cz.
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Harris David. Digital Design and Computer Architecture - Arm Edition. 2015. ISBN 0128000562.
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Pinker, Jiří; Poupa, Martin. Číslicové systémy a jazyk VHDL. Praha : BEN - technická literatura, 2006. ISBN 80-7300-198-5.
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