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Elektroniikka (5 op)

Toteutuksen tunnus: R504D129-3002

Toteutuksen perustiedot


Ilmoittautumisaika
24.03.2025 - 19.10.2025
Ilmoittautuminen toteutukselle on käynnissä.
Ajoitus
20.10.2025 - 23.11.2025
Toteutus ei ole vielä alkanut.
Opintopistemäärä
5 op
Lähiosuus
4 op
Virtuaaliosuus
1 op
Toteutustapa
Monimuoto-opetus
Yksikkö
Insinöörikoulutus, tieto- ja viestintätekniikka
Opetuskielet
englanti
Paikat
0 - 30
Koulutus
Machine Learning and Data Engineering
Opettajat
Tauno Tepsa
Vastuuopettaja
Tauno Tepsa
Ryhmät
R54D24S
Bachelor of Engineering, Machine Learning and Data Engineering (full time studies), 2024
Opintojakso
R504D129

Arviointiasteikko

H-5

Sisällön jaksotus

A list of topics and techniques covered during the Course:

Labs on-site (from week 37 to week 43)

1. wk.
- Intro to the Course.
- Components in Electronics
- Soldering in Electronics. (week assignment #1, 10 pts max.)

2. wk.
- Electrical Safety (week assignment #2, 10 pts max.)

3. wk.
- Basics Measurements in Electronics (week assignment #3, 10 pts max.)

4. wk.
- Computer Aided Engineering (CAE) in Electronics (week assignment #4, 10 pts max.)

5. wk.
- AC and distortion analysis exercise. (week assignment #5, 10 pts max.)

Tavoitteet

This course orientates students to electronics lab work. The course introduces students to electronic components, test setups, the basics of device construction and the use of measuring equipment as part of electronics analysis and design. The course is intended for computer science students whose studies do not actually aim at electronics design. The course also introduces microcontrollers (Micro Controller Unit, MCU) and their use in sensor data acquisition and actuator control.

Sisältö

1. Intro to the Course
2. Electrical Safety
3. Basics of Electric Circuits
4. Components in Electronics
5. Signals in Electronics
6. Soldering in Electronics
7. Soldering exercises
8. Measurements in Practice
9. Electronics measurements in practice exercise
10. Computer Aided Engineering (CAE) in electronics
11. Microcontrollers & Sensors in IoT

Aika ja paikka

The introductory lectures of the course will be held on week 36. The course includes (4 x 8 + 4) hours of lessons per week, in addition to self-study. There will be no lessons held during the weeks 37, 41. and 42. and the course ends on week 50. The teacher will grade the course by December the 31st at the latest. The Lectures and labs will be held from week 36 to week 43.

Oppimateriaalit

All study material needed for the study course is offered in the study course's workspace.


Opetusmenetelmät

The course consists of classroom lessons and laboratory work. The course involves independent work and reporting.

Tenttien ajankohdat ja uusintamahdollisuudet

The course is completed with exercises and reports that are scored. The course does not include an exam, except in specially agreed special cases.

Toteutuksen valinnaiset suoritustavat

For justified reasons, the course can be completed with a closed exam, the content of which is agreed with the individual lecturer.

Opiskelijan ajankäyttö ja kuormitus

The scope of the course is 5 ECTS, which means about 130 hours of work for the student. There are 5 x 8 hours = 40 hours of laboratory exercises done as face-to-face teaching, and 3 x 8 hours are workshop days related to the seasonal project.

Arviointikriteerit, tyydyttävä (1)

The student is able to analyze the basic currents, voltages and powers of an electronic circuit. The student masters the properties of electronic components such as passive components and semiconductors. The student recognizes electronic components such as diodes and transistors as well as integrated circuits such as operational amplifiers and is able to analyze their basic connections.

Arviointikriteerit, hyvä (3)

In addition to basic analyzes such as current voltages and powers, the student is able to perform frequency level analyzes. The student masters the basics of the analysis of dynamic properties such as delays and responses.

Arviointikriteerit, kiitettävä (5)

The student is able to choose the connection of analog electronics and analyze its suitability for the current design problem. The student’s design and analysis skills are sufficient to apply the connections.

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