13M071PMF - Microwave Filter Design
Course specification | ||||
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Course title | Microwave Filter Design | |||
Acronym | 13M071PMF | |||
Study programme | Electrical Engineering and Computing | |||
Module | ||||
Type of study | master academic studies | |||
Lecturer (for classes) |
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Lecturer/Associate (for practice) | ||||
Lecturer/Associate (for OTC) | ||||
ESPB | 6.0 | Status | elective | |
Condition | None. | |||
The goal | Cover the fundamentals of microwave filter design. Introduce electric network synthesis. Provide essentials for designing standard microwave filters, such as stepped-impedance, commensurate, end-coupled, parallel-coupled, interdigital, comb-line, and hairpin-line filters. | |||
The outcome | Understand basic filter concepts and design stages. Identify filter specifications and technological requirements. Design standard microwave filters by synthesis, tuning and optimization. Verify the filter design by a circuit-level filter simulation. | |||
Contents | ||||
Contents of lectures | Fundamental quantities, concepts and stages in microwave filter design. Specification, Approximation, Realization, Implementation, Study of imperfection and yield analysis, Tuning, Optimization. LC filter synthesis. Cauer, Foster and Darlington procedures. Immittance inverters, Richards transformation, Kuroda identities. Stepped-impedance and Commensurate filters. Coupled resonator filters. | |||
Contents of exercises | Computer simulations. Fabrication of a filter. | |||
Literature | ||||
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Number of hours per week during the semester/trimester/year | ||||
Lectures | Exercises | OTC | Study and Research | Other classes |
2 | 2 | |||
Methods of teaching | Lectures, problem-solving classes. | |||
Knowledge score (maximum points 100) | ||||
Pre obligations | Points | Final exam | Points | |
Activites during lectures | 0 | Test paper | 0 | |
Practical lessons | 0 | Oral examination | 50 | |
Projects | ||||
Colloquia | 0 | |||
Seminars | 50 |