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Basics of automation technology (5 cr)

Code: TS00CC35-3001

General information


Enrollment
01.08.2024 - 22.08.2024
Registration for the implementation has ended.
Timing
01.08.2024 - 31.12.2024
Implementation has ended.
Number of ECTS credits allocated
5 cr
Local portion
5 cr
Mode of delivery
Face-to-face
Unit
School of Technology
Campus
Lutakko Campus
Teaching languages
Finnish
Seats
20 - 35
Degree programmes
Bachelor's Degree Programme in Electrical and Automation Engineering
Bachelor's Degree Programme in Automation and Robotics
Teachers
Antti Parantainen
Markku Ström
Groups
TSA24SR1
Insinööri (AMK), sähkö- ja automaatiotekniikka, päivätoteutus
ZJATSA24S1
Avoin amk, Sähkö-ja automaatiotekniikka, Päivä
Course
TS00CC35

Realization has 19 reservations. Total duration of reservations is 38 h 30 min.

Time Topic Location
Mon 26.08.2024 time 11:30 - 13:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Tue 27.08.2024 time 09:45 - 11:15
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Mon 02.09.2024 time 11:30 - 13:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Tue 03.09.2024 time 09:45 - 11:15
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Mon 09.09.2024 time 11:30 - 13:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Tue 10.09.2024 time 09:45 - 11:15
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Mon 16.09.2024 time 11:30 - 13:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Tue 17.09.2024 time 09:45 - 11:15
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Mon 23.09.2024 time 11:30 - 13:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Tue 24.09.2024 time 12:30 - 14:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Mon 30.09.2024 time 11:30 - 13:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Tue 01.10.2024 time 12:30 - 14:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Mon 07.10.2024 time 11:30 - 13:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Tue 08.10.2024 time 12:30 - 14:00
(1 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP69 Automaatiolaboratorio PID
Mon 21.10.2024 time 11:30 - 15:00
(3 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP66A Automaatiolaboratorio OR - A-osa vesiprosessi
R35DP66B Automaatiolaboratorio OR - B-osa Muut laitteistot
R35DP72.robotics Robotics
Mon 28.10.2024 time 11:30 - 15:00
(3 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP66A Automaatiolaboratorio OR - A-osa vesiprosessi
R35DP66B Automaatiolaboratorio OR - B-osa Muut laitteistot
R35DP72.robotics Robotics
Mon 04.11.2024 time 11:30 - 15:00
(3 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP66A Automaatiolaboratorio OR - A-osa vesiprosessi
R35DP66B Automaatiolaboratorio OR - B-osa Muut laitteistot
R35DP72.robotics Robotics
Mon 11.11.2024 time 11:30 - 15:00
(3 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001
R35DP66A Automaatiolaboratorio OR - A-osa vesiprosessi
R35DP66B Automaatiolaboratorio OR - B-osa Muut laitteistot
R35DP72.robotics Robotics
Mon 09.12.2024 time 11:30 - 15:00
(3 h 30 min)
Automaatiotekniikan perusteet TS00CC35-3001 Tentti
R35DP69 Automaatiolaboratorio PID
Changes to reservations may be possible.

Evaluation scale

0-5

Objective

You understand the significance of automation for industry and know the various levels of automation applications in an industrial plant. You know the operating principles applied in control technology and can design and implement a simple control system utilizing typical hardware structures, connection and data transfer solutions, and programming tools.

EA-KW Knowledge and understanding
The learning process should enable Bachelor Degree graduates to demonstrate:
knowledge and understanding of mathematics and other basic sciences underlying
their engineering specialisation, at a level necessary to achieve the other programme
learning outcomes

EA-EC Engineering practice
ability to analyse complex engineering products, processes and systems, and to
correctly interpret the outcomes of such analyses, by being able to select and
having the practical skills to apply relevant established analytical, computational
and experimental techniques and methods

Content

In this course, you will learn basic automation solutions and learn to implement a simple automation system through hardware specification and programming. You will gain a comprehensive understanding of automation technology, providing a foundation for more in-depth studies in future courses. You will learn to select appropriate equipment solutions for simple automation tasks and create suitable control and regulation applications using programmable logic controllers. This course equips you with the essential knowledge and skills to succeed in automation technology studies.

Field devices
Programmable logics
Automation systems
Programming tools

Assessment criteria, satisfactory (1)

Adequate (1): You understand the basics and terminology, but you have shortcomings in perceiving the key issues. You can implement simple device controls with support.

Satisfactory (2): You understand the basics and terminology, but you have shortcomings in the application of key issues. However, you will be able to satisfactorily implement the basic controls of the automation circuits.

Assessment criteria, good (3)

Good (3): You know the basic components of automation technology and are able to make holistically justified choices between them. You understand very different connections of automation circuits. You know how to use the programming environment so well that you can make a working application and modify existing larger programs according to good practices. You know how to use tools well for monitoring and simulating a program and are able to locate simple faults in your system.

Very good (4): You master the key issues and are able to apply them in a variety of ways in the practical implementation of various automation circuits. Your view of systems is so strong that you can outline even alternative solutions.

Assessment criteria, excellent (5)

Excellent (5): You master key issues and are able to apply them creatively from system entities to the field device level. You can make a critical comparison between solution options.

Qualifications

Basics of digital technology (notations, Boolean algebra)

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