Instrumentation engineering (5 cr)
Code: TSAAA220-3003
General information
- Enrollment
-
01.11.2021 - 09.01.2022
Registration for the implementation has ended.
- Timing
-
01.01.2022 - 15.05.2022
Implementation has ended.
- Number of ECTS credits allocated
- 5 cr
- Local portion
- 3 cr
- Virtual portion
- 2 cr
- Mode of delivery
- Blended learning
- Unit
- School of Technology
- Campus
- Main Campus
- Teaching languages
- Finnish
- Seats
- 15 - 50
- Degree programmes
- Bachelor's Degree Programme in Electrical and Automation Engineering
- Teachers
- Vesa Hytönen
- Groups
-
TSA19SABachelor's Degree Programme in Electrical and Automation Engineering
- Course
- TSAAA220
Evaluation scale
0-5
Objective
The student knows the electrical design documents and is able to prepare them as part of the engineering design project. The student
is able to design electrical instrumentation documents during the engineering design project and is familiar with the main working methods and practices in the field of instrumentation engineering.
TSASO-Design competence
The student knows the methods and tools of hardware design in the field of electrical instrumentation engineering and is able to produce standardized documentation.
TSAPL-Competence in processes, machines and systems
The student is able to design measurement, control, valve and motor circuits and knows the HW design of instrumentation engineering from the definition to the implementation.
EA-EE: Engineering design
The student is able to apply knowledge and understanding to develop and realise designs to meet defined and specified requirements. The student knows design methods and is able to use them in the field of instrumentation engineering.
Content
Electrical design documentation and graphic symbols
Design of cabling systems
Design of connection box
Design of voltage distribution
Design of I/O and cross-connection
Design of circuit diagrams
Signal interference
Engineering design project
Materials
Kuphaldt, Tony R. 2019. Lessons In Industrial Instrumentation. Under the terms and conditions of the
Creative Commons Attribution 4.0 International Public License -verkkomateriaali. Referenced 29th April 2020. https://www.ibiblio.org/kuphaldt/socratic/sinst/book/liii.pdf
Hytönen, V. 2021. Teollisuuden instrumentointi. Moodle course material.
Teaching methods
Problem-based learning is used as a learning method. Learning takes place through independently performed and returned learning tasks. The project work is guided by video instructions and during contact lessons.
Exam schedules
Examination (spring 2022)
Resit 1 (spring 2022)
Resit 2 (spring 2022)
Student workload
Total 135 h
Assessment criteria, satisfactory (1)
Adequate (1): The student identifies the basic knowledge and terminology of electrical designing of instrumentation but in the interpreting of the engineering design project the skills are still inadequate.
Satisfactory (2): The student is familiar with the basic knowledge and terminology of electrical designing of instrumentation but in the application of the engineering design project the skills are still inadequate.
Assessment criteria, good (3)
Good (3): The student knows the issues to be taken into consideration in electrical designing of instrumentation and is able to desing documentation in an engineering design project.
Very good (4): The student masters the essential knowledge of electrical designing of instrumentation and can apply the knowledge to the project work.
Assessment criteria, excellent (5)
Excellent (5): The student masters the essential knowledge of electrical designing of instrumentation and can apply the knowledge to the project work acquired in a creative and innovative manner.
Qualifications
Basic knowledge of control engineering and basic CAD drafting skills
Further information
Self-assessments are mainly done through learning tasks. The assessment decision is based on the project work and the skills demonstrated in the exam.