ECTS
6 credits
Training Structure
College of Sciences
Description
- This course complements the foundational training in analog electronics with in-depth knowledge of signal filtering, amplification, and modulation. This knowledge is essential for understanding and designing analog electronic systems in all fields of engineering.
- Instruction is organized in the form of lectures, tutorials, and lab sessions, which provide opportunities for mini-projects.
Objectives
Learn how to design systems whose performance is independent of the components used.
Link the performance of AOPs to their conditions of use.
Define the layout of the filter stage and select the type and technology of the filter components.
Understand the principle of PLLs.
Have a basic understanding of analog modulation and demodulation (amplitude and phase modulation).
Understand the principles of frequency conversion and analog mixers; be familiar with the various practical implementation options.
Learn how to analyze the operation of a complex linear circuit.
By the end of this course, students will be able to understand and design both a data transmission system and a complex analog electronic circuit.
Mandatory Prerequisites
- Bachelor's-level proficiency in analog electronics.
Course Outline
Program
- Amplification, Passive Filters, and Analog Active Filters.
Real amplifiers, ideal negative feedback, non-ideal negative feedback.
Transfer Function Synthesis, Block Diagram of a Real Low-Pass, High-Pass, Band-Pass, and Band-Reject Filter.
Actual filter response. Examples of transfer function synthesis.
Active filters, operational amplifiers, filter synthesis, and filter cascading.
- PLL
Modeling of the Analog PLL.
Voltage-controlled oscillator. Phase comparator.
- Modulations, communication system
Amplitude Modulation and Demodulation: Applications.
Frequency Modulation and Demodulation and Their Applications.
The Effect of Noise on Demodulation.
Frequency Shift and Frame Rate.
Additional Information
CM: 36H
TD: 6H
Practical Training: 12 hours