Real-time Embedded Systems (4cr)
Code: KL00CT75-3003
General information
- Enrollment
- 22.04.2025 - 08.10.2025
- Registration for the implementation has ended.
- Timing
- 20.10.2025 - 14.12.2025
- Implementation is running.
- Number of ECTS credits allocated
- 4 cr
- Local portion
- 4 cr
- Mode of delivery
- Contact learning
- Unit
- SeAMK Automation Engineering and Information Technology
- Campus
- SeAMK Seinäjoki, Frami
- Teaching languages
- Finnish
- Degree programmes
- Bachelor of Engineering, Information Technology
- Teachers
- Marko Hietamäki
- Groups
- 
                        TITE23Bachelor of Engineering, Information Technology
- Course
- KL00CT75
Evaluation scale
1-5
                    
Objective
Student knows the basics of real-time operating systems. Student understands the principle of multitasking that is important in implementing embedded and real-time systems. Student can use services of the real-time operating system and design a real-time application which consists of several processes and communications between them.
                    
Content
- Device-oriented C programming 
- Real-time system concepts 
- Kernel structure 
- Task management and concurrency
- Change of state and state diagrams
- Timetables 
- Mutexes and semaphores 
- Problems of simultaneity 
- Interrupt management
                    
Materials
Teacher's lecture materials.
                    
Teaching methods
Lähiopetus
                    
Student workload
Lähiopetus 40h. Itsenäinen opiskelu 40h
                    
Assessment criteria, satisfactory (1)
Student knows the basics of real-time operating systems. Student can design a simple real-time application.
                    
Assessment criteria, good (3)
Student knows the basics of real-time operating systems. Student understands the principle of multitasking that is important in implementing embedded and real-time systems. Student can use services of the real-time operating system and design a real-time application which consists of several processes and communications between them.
                    
Assessment criteria, excellent (5)
Student knows the principles of real-time operating systems well. Student understands the principle of multitasking that is important in implementing embedded and real-time systems. Student can use services of the real-time operating system and design a complex real-time application which consists of several processes and communications between them.
                    
