Skip to main content

Basics of Process Automation (15 cr)

Code: TX00DT03-3005

General information


Enrollment
01.05.2023 - 31.05.2023
Registration for the implementation has ended.
Timing
21.08.2023 - 15.12.2023
Implementation has ended.
Number of ECTS credits allocated
15 cr
Local portion
15 cr
Mode of delivery
On-campus
Unit
(2019-2024) School of Smart and Clean Solutions
Campus
Leiritie 1
Teaching languages
Finnish
Seats
0 - 30
Degree programmes
Electrical and Automation Engineering

Implementation has 31 reservations. Total duration of reservations is 94 h 45 min.

Time Topic Location
Wed 23.08.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Thu 24.08.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Wed 30.08.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC245 Oppimistila
Thu 31.08.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Wed 06.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Thu 07.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Wed 13.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC245 Oppimistila
Thu 14.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Tue 19.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Wed 20.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Tue 26.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Wed 27.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC245 Oppimistila
Thu 28.09.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC376.2 Automaatiolaboratorio 2, Automaatioprosessit
Tue 03.10.2023 time 17:00 - 19:30
(2 h 30 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Wed 04.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Tue 10.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Wed 11.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC344.1 Elektroniikan laboratorio 1
MMC344.2 Elektroniikan laboratorio 2
Tue 17.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Tue 24.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Wed 25.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC136 Sähkökonelaboratorio
Thu 26.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC376.2 Automaatiolaboratorio 2, Automaatioprosessit
Tue 31.10.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Tue 07.11.2023 time 18:00 - 19:30
(1 h 30 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Wed 08.11.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC136 Sähkökonelaboratorio
Tue 14.11.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Tue 21.11.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Wed 22.11.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
MMC136 Sähkökonelaboratorio
Tue 28.11.2023 time 18:00 - 19:30
(1 h 30 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Tue 05.12.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Tue 12.12.2023 time 17:00 - 20:15
(3 h 15 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005/3006
Online
Fri 15.12.2023 time 18:00 - 19:30
(1 h 30 min)
Prosessien sähkö- ja automaatiotekniikka TX00DT03-3005
Online
Changes to reservations may be possible.

Objective

After completing this course, students are familiar with electrical drives and basics of the motion control systems.
The student is able to perform basic dimensioning of electrical drive components in both technical and economical aspects.
The student is able to both start up and operate frequency converters and is also able to check and change different parameters. The student can connect different sensors to the drive as well as can control it by using field buses or PLC’s.
The student is familiar with the basics of meteorology and sensor physics, and is able to choose suitable measurement systems according the needs of production and automation.
The student is familiar with the distributed process control systems.
The student is familiar with commonly used basic control structures of process industry.
The student is familiar with the basics of control theory.

Content

1. Dimensioning of electrical drive components
2. Basics of meteorology and sensor physics
3. Distributed process control systems
4. Process control structures
5. Basics of control theory
6. Maintenance

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

The student has achieved the course objectives fairly. The student will be able to identify, define and use the course subject area’s concepts and models. The student understands the criteria and principles of the expertise development. The student has completed the required learning exercises in minimum requirement level. His/her competences have developed in a way that he/she may complete the remaining studies in electrical engineering and automation technology and finally work in a suitable job position related to this field.

Assessment criteria, good (3)

The student has achieved the course objectives well, even though the knowledge and skills need improvement on some areas. The student has completed the required learning exercises in good or satisfactory level. The student is able to define the course concepts and models and is able to justify the analysis. The student is able to apply their knowledge in study and work situations. The student understands the importance of expertise in the field of electrical engineering and automation technology and is able to analyze his/her own expertise.

Assessment criteria, excellent (5)

The student has achieved the objectives of the course with excellent marks. The student master commendably the course subject area’s concepts and models. The student has completed the required learning exercises in good or excellent level. The student is able to make justified and fluent analysis and to present concrete development measures. The student is well prepared to apply their knowledge study and work situations. Students are able to analyze the expertise in electrical engineering and automation technology and the evolvement of their own expertise.

Assessment criteria, approved/failed

The student has achieved the course objectives fairly. The student will be able to identify, define and use the course subject area’s concepts and models. The student understands the criteria and principles of the expertise development. The student has completed the required learning exercises in minimum requirement level. His/her competences have developed in a way that he/she may complete the remaining studies in electrical engineering and automation technology and finally work in a suitable job position related to this field.

Go back to top of page