Intelligent SystemsLaajuus (10 cr)
Code: 5G00EI62
Credits
10 op
Objectives
During the course, students will familiarize themselves with the basic electronics, programming and communication technologies through practice and theory.
After completing the course, the student
- Understand the basics of electrical engineering
- Know how to use basic measuring equipment
- Learn how to use intelligent development environments
Content
During the course, students will learn the basics of electrical phenomena, electrophysics, electronics connections and the operation of intelligent systems through theory and guided laboratory work. In addition, students will learn how to control the basic measurement equipment and get acquainted with the analyzers.
Interpretation and reporting of measurements (physics).
Assessment criteria, satisfactory (1-2)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming with guidance
- understands a simple data transfer solution with guidance
- knows different ways of measuring, programming methods and ways of building a telecommunication network, but can't justify their choices
- Performs tasks in a pre-learned way
- can work in a group and review and evaluate things from their own perspective
Assessment criteria, good (3-4)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and can justify their choices
-can choose the most appropriate procedure for the different options and justify their choice
- can work in a group and give and receive feedback actively and constructively
- reviews and evaluates.
Assessment criteria, excellent (5)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and can analyze the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment and is able to construct it
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and is able try out new operating models
-examines and evaluates himself and his team
Further information
Engineering physics have been integrated into the course.
Enrolment period
27.08.2024 - 13.10.2024
Timing
02.09.2024 - 22.12.2024
Credits
10 op
Mode of delivery
Contact teaching
Unit
ICT Engineering
Campus
TAMK Main Campus
Teaching languages
- Finnish
Degree programmes
- Degree Programme in ICT Engineering
Teachers
- Vihtori Virta
- Sanna Aalto
- Reijo Manninen
- Maria Valli
- Esa Kunnari
- Sonja Viinikainen
Person in charge
Vihtori Virta
Groups
-
24TIETOB
Objectives (course unit)
During the course, students will familiarize themselves with the basic electronics, programming and communication technologies through practice and theory.
After completing the course, the student
- Understand the basics of electrical engineering
- Know how to use basic measuring equipment
- Learn how to use intelligent development environments
Content (course unit)
During the course, students will learn the basics of electrical phenomena, electrophysics, electronics connections and the operation of intelligent systems through theory and guided laboratory work. In addition, students will learn how to control the basic measurement equipment and get acquainted with the analyzers.
Interpretation and reporting of measurements (physics).
Further information (course unit)
Engineering physics have been integrated into the course.
Assessment criteria, satisfactory (1-2) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming with guidance
- understands a simple data transfer solution with guidance
- knows different ways of measuring, programming methods and ways of building a telecommunication network, but can't justify their choices
- Performs tasks in a pre-learned way
- can work in a group and review and evaluate things from their own perspective
Assessment criteria, good (3-4) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and can justify their choices
-can choose the most appropriate procedure for the different options and justify their choice
- can work in a group and give and receive feedback actively and constructively
- reviews and evaluates.
Assessment criteria, excellent (5) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and can analyze the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment and is able to construct it
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and is able try out new operating models
-examines and evaluates himself and his team
Assessment scale
0-5
Enrolment period
27.08.2024 - 13.10.2024
Timing
26.08.2024 - 22.12.2024
Credits
10 op
Mode of delivery
Contact teaching
Unit
ICT Engineering
Campus
TAMK Main Campus
Teaching languages
- Finnish
Degree programmes
- Degree Programme in ICT Engineering
Teachers
- Vihtori Virta
- Sanna Aalto
- Reijo Manninen
- Maria Valli
- Esa Kunnari
- Sonja Viinikainen
Person in charge
Vihtori Virta
Groups
-
24TIETOA
Objectives (course unit)
During the course, students will familiarize themselves with the basic electronics, programming and communication technologies through practice and theory.
After completing the course, the student
- Understand the basics of electrical engineering
- Know how to use basic measuring equipment
- Learn how to use intelligent development environments
Content (course unit)
During the course, students will learn the basics of electrical phenomena, electrophysics, electronics connections and the operation of intelligent systems through theory and guided laboratory work. In addition, students will learn how to control the basic measurement equipment and get acquainted with the analyzers.
Interpretation and reporting of measurements (physics).
Further information (course unit)
Engineering physics have been integrated into the course.
Assessment criteria, satisfactory (1-2) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming with guidance
- understands a simple data transfer solution with guidance
- knows different ways of measuring, programming methods and ways of building a telecommunication network, but can't justify their choices
- Performs tasks in a pre-learned way
- can work in a group and review and evaluate things from their own perspective
Assessment criteria, good (3-4) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and can justify their choices
-can choose the most appropriate procedure for the different options and justify their choice
- can work in a group and give and receive feedback actively and constructively
- reviews and evaluates.
Assessment criteria, excellent (5) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and can analyze the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment and is able to construct it
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and is able try out new operating models
-examines and evaluates himself and his team
Assessment scale
0-5
Enrolment period
15.07.2023 - 04.09.2023
Timing
28.08.2023 - 22.12.2023
Credits
10 op
Mode of delivery
Contact teaching
Unit
ICT Engineering
Campus
TAMK Main Campus
Teaching languages
- Finnish
Seats
0 - 50
Degree programmes
- Degree Programme in ICT Engineering
Teachers
- Reijo Manninen
- Vihtori Virta
- Jaana Hännikäinen
- Tomi Salminen
- Esa Kunnari
- Sonja Viinikainen
Person in charge
Esa Kunnari
Groups
-
23TIETOA
Objectives (course unit)
During the course, students will familiarize themselves with the basic electronics, programming and communication technologies through practice and theory.
After completing the course, the student
- Understand the basics of electrical engineering
- Know how to use basic measuring equipment
- Learn how to use intelligent development environments
Content (course unit)
During the course, students will learn the basics of electrical phenomena, electrophysics, electronics connections and the operation of intelligent systems through theory and guided laboratory work. In addition, students will learn how to control the basic measurement equipment and get acquainted with the analyzers.
Interpretation and reporting of measurements (physics).
Further information (course unit)
Engineering physics have been integrated into the course.
Assessment criteria, satisfactory (1-2) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming with guidance
- understands a simple data transfer solution with guidance
- knows different ways of measuring, programming methods and ways of building a telecommunication network, but can't justify their choices
- Performs tasks in a pre-learned way
- can work in a group and review and evaluate things from their own perspective
Assessment criteria, good (3-4) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and can justify their choices
-can choose the most appropriate procedure for the different options and justify their choice
- can work in a group and give and receive feedback actively and constructively
- reviews and evaluates.
Assessment criteria, excellent (5) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and can analyze the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment and is able to construct it
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and is able try out new operating models
-examines and evaluates himself and his team
Assessment scale
0-5
Enrolment period
15.07.2023 - 04.09.2023
Timing
28.08.2023 - 22.12.2023
Credits
10 op
Mode of delivery
Contact teaching
Unit
ICT Engineering
Campus
TAMK Main Campus
Teaching languages
- Finnish
Seats
0 - 50
Degree programmes
- Degree Programme in ICT Engineering
Teachers
- Reijo Manninen
- Vihtori Virta
- Jaana Hännikäinen
- Tomi Salminen
- Esa Kunnari
- Sonja Viinikainen
Person in charge
Esa Kunnari
Groups
-
23TIETOB
Objectives (course unit)
During the course, students will familiarize themselves with the basic electronics, programming and communication technologies through practice and theory.
After completing the course, the student
- Understand the basics of electrical engineering
- Know how to use basic measuring equipment
- Learn how to use intelligent development environments
Content (course unit)
During the course, students will learn the basics of electrical phenomena, electrophysics, electronics connections and the operation of intelligent systems through theory and guided laboratory work. In addition, students will learn how to control the basic measurement equipment and get acquainted with the analyzers.
Interpretation and reporting of measurements (physics).
Further information (course unit)
Engineering physics have been integrated into the course.
Assessment criteria, satisfactory (1-2) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming with guidance
- understands a simple data transfer solution with guidance
- knows different ways of measuring, programming methods and ways of building a telecommunication network, but can't justify their choices
- Performs tasks in a pre-learned way
- can work in a group and review and evaluate things from their own perspective
Assessment criteria, good (3-4) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and can justify their choices
-can choose the most appropriate procedure for the different options and justify their choice
- can work in a group and give and receive feedback actively and constructively
- reviews and evaluates.
Assessment criteria, excellent (5) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and can analyze the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment and is able to construct it
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and is able try out new operating models
-examines and evaluates himself and his team
Assessment scale
0-5
Enrolment period
23.07.2022 - 28.08.2022
Timing
28.08.2022 - 16.12.2022
Credits
10 op
Mode of delivery
Contact teaching
Unit
ICT Engineering
Campus
TAMK Main Campus
Teaching languages
- Finnish
Degree programmes
- Degree Programme in ICT Engineering
Teachers
- Vihtori Virta
- Reijo Manninen
- Saija Raassina
- Jaana Hännikäinen
- Esa Kunnari
Person in charge
Esa Kunnari
Groups
-
22TIETOB
Objectives (course unit)
During the course, students will familiarize themselves with the basic electronics, programming and communication technologies through practice and theory.
After completing the course, the student
- Understand the basics of electrical engineering
- Know how to use basic measuring equipment
- Learn how to use intelligent development environments
Content (course unit)
During the course, students will learn the basics of electrical phenomena, electrophysics, electronics connections and the operation of intelligent systems through theory and guided laboratory work. In addition, students will learn how to control the basic measurement equipment and get acquainted with the analyzers.
Interpretation and reporting of measurements (physics).
Further information (course unit)
Engineering physics have been integrated into the course.
Assessment criteria, satisfactory (1-2) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming with guidance
- understands a simple data transfer solution with guidance
- knows different ways of measuring, programming methods and ways of building a telecommunication network, but can't justify their choices
- Performs tasks in a pre-learned way
- can work in a group and review and evaluate things from their own perspective
Assessment criteria, good (3-4) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and can justify their choices
-can choose the most appropriate procedure for the different options and justify their choice
- can work in a group and give and receive feedback actively and constructively
- reviews and evaluates.
Assessment criteria, excellent (5) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and can analyze the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment and is able to construct it
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and is able try out new operating models
-examines and evaluates himself and his team
Assessment scale
0-5
Enrolment period
23.07.2022 - 28.08.2022
Timing
22.08.2022 - 16.12.2022
Credits
10 op
Mode of delivery
Contact teaching
Unit
ICT Engineering
Campus
TAMK Main Campus
Teaching languages
- Finnish
Degree programmes
- Degree Programme in ICT Engineering
Teachers
- Reijo Manninen
- Vihtori Virta
- Jaana Hännikäinen
- Esa Kunnari
- Satu Laulainen
Person in charge
Esa Kunnari
Groups
-
22TIETOA
Objectives (course unit)
During the course, students will familiarize themselves with the basic electronics, programming and communication technologies through practice and theory.
After completing the course, the student
- Understand the basics of electrical engineering
- Know how to use basic measuring equipment
- Learn how to use intelligent development environments
Content (course unit)
During the course, students will learn the basics of electrical phenomena, electrophysics, electronics connections and the operation of intelligent systems through theory and guided laboratory work. In addition, students will learn how to control the basic measurement equipment and get acquainted with the analyzers.
Interpretation and reporting of measurements (physics).
Further information (course unit)
Engineering physics have been integrated into the course.
Assessment criteria, satisfactory (1-2) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming with guidance
- understands a simple data transfer solution with guidance
- knows different ways of measuring, programming methods and ways of building a telecommunication network, but can't justify their choices
- Performs tasks in a pre-learned way
- can work in a group and review and evaluate things from their own perspective
Assessment criteria, good (3-4) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and understands the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and can justify their choices
-can choose the most appropriate procedure for the different options and justify their choice
- can work in a group and give and receive feedback actively and constructively
- reviews and evaluates.
Assessment criteria, excellent (5) (course unit)
Student:
- understands basic electronics connections
-understands the principles of circuit analysis in the DC plane
-is able to choose the right measuring device to measure the desired value and can analyze the measurement results
-is able to design a simple circuit using basic electronic components and using a simulated environment and is able to construct it
- Understand the basic principles of programming
- understands a simple data transfer solution
- knows different ways of measuring, programming methods and ways of building a telecommunication network, and is able try out new operating models
-examines and evaluates himself and his team
Assessment scale
0-5