Category | Theoretical-methodological |
Scientific or art field | Electronics |
ECTS | 6 |
Acquiring of specialized knowledge in the field of computer-aided design of microelectronic circuits. Acquiring knowledge in the field of design of digital, analog and mixed-signal integrated circuits. Teaching students to combine theoretical knowledge and concepts of designing analog integrated circuits during the design of an operational amplifier.
- ability to design application-specific integrated circuits (ASIC) - ability to design layout of complex integrated circuits in the Cadence software package - ability to design various topologies of operational amplifiers and to optimize their performance with respect to different constraints
Operational amplifiers (performance parameters and basic principles). Frequency response. Parasitic capacitances in transistors. I and II operational amplifier model. Unity frequency / gain-bandwidth product. Stability, gain and phase margin. Slew rate in operation amplifiers. Feedback concepts. Compensation of operational amplifiers with feedback, pole splitting and lead compensation. Analysis of general-purpose single and multi-stage operational amplifiers: two-stage operational amplifier, transceiver operation amplifier, folded-cascode operational amplifier. Gain boosting technique. Common-mode feedback. Power mode rejection ratio.
Lectures. Laboratory practice. Computer practice. Consultations.
Authors | Title | Year | Publisher | Language |
---|---|---|---|---|
2003 | English | |||
2012 | English | |||
2011 | English | |||
2001 | English |
Course activity | Pre-examination | Obligations | Number of points |
---|---|---|---|
Computer exercise attendance | Yes | Yes | 5.00 |
Final exam - part one | No | Yes | 45.00 |
Test | Yes | Yes | 40.00 |
Project | Yes | Yes | 10.00 |
Full Professor
Associate Professor
Associate Professor
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© 2024. Faculty of Technical Sciences.