|
|
|||||||||||||||||
SMG-8046 RF-electronics preparatory I, 5 cr |
Saku Suuriniemi
| Lecture times and places | Target group recommended to | |
| Implementation 1 |
|
DI-Opiskelijat
KV-opiskelijat |
Exam and two computer labs.
-
Preparation for major studies in RF-electronics. The students refresh prior knowledge and fill possible gaps.
| Content | Core content | Complementary knowledge | Specialist knowledge |
| 1. | Vectors, vector spaces, linearity, and applications. Vector valued and linear maps. Linear systems of equations, resistive circuits. Visualization and calculations with Matlab. | ||
| 2. | Multivariable analysis and its applications in circuit theory. Optimality, solution of nonlinear systems and essentials of Fourier techniques. | ||
| 3. | Ordinary differential equations and their application in time-dependent system analysis. Analytical solution techniques, transformation to first order system. | ||
| 4. | Time-harmonic system analysis. Transient and steady state. Impedance, transfer function. Complex Fourier techniques. | ||
| 5. | First order passive electronic filters. |
| Type | Name | Author | ISBN | URL | Edition, availability, ... | Examination material | Language |
| Lecture slides | Available from the course homepage | English |
| Course | Corresponds course | Description |
|
|
|
Primarily intended for students of RF-electronics masters programme, with some prior familiarity with the contents. Students without such familiarity can take it as an intensive course.
| Description | Methods of instruction | Implementation | |
| Implementation 1 | Lectures Excercises Laboratory assignments |
Contact teaching: 0 % Distance learning: 0 % Self-directed learning: 0 % |