{"id":null,"code":"KTEK0053","name":{"valueFi":"Mechatronics","valueEn":"Mechatronics","valueSv":"Mechatronics"},"credits":5.0,"minCredits":5,"maxCredits":5,"tags":[],"createdAt":1790537243524,"contentList":[{"title":{"valueFi":"Osaamistavoitteet","valueEn":"Learning outcomes","valueSv":""},"content":{"valueFi":"2027: After completing this course, the student will be able to: design mechatronic systems integrated into\r\nmechanical machines; analyse and select sensors and actuators based on mechanical performance\r\nrequirements (force, torque, vibration, temperature, wear); model mechanical-electromechanical\r\ninteractions in real systems; apply measurement techniques for mechanical systems (strain,\r\nvibration, displacement, thermal effects); evaluate system performance, reliability, and\r\nmaintainability in industrial machinery; interpret measurement data to support condition monitoring\r\nand fault diagnosis of mechanical systems.\r\n\r\n2026: After this course student will be able to identify various mechatronic components and interconnections; divide a system/device/machine into individual mechatronic components and their connections and asses each component based on its features. Student will also be able to apply basic mechatronic principles, theories, and calculations.","valueEn":"2027: After completing this course, the student will be able to: design mechatronic systems integrated into\r\nmechanical machines; analyse and select sensors and actuators based on mechanical performance\r\nrequirements (force, torque, vibration, temperature, wear); model mechanical-electromechanical\r\ninteractions in real systems; apply measurement techniques for mechanical systems (strain,\r\nvibration, displacement, thermal effects); evaluate system performance, reliability, and\r\nmaintainability in industrial machinery; interpret measurement data to support condition monitoring\r\nand fault diagnosis of mechanical systems.\r\n\r\n2026: After this course student will be able to identify various mechatronic components and interconnections; divide a system/device/machine into individual mechatronic components and their connections and asses each component based on its features. Student will also be able to apply basic mechatronic principles, theories, and calculations.","valueSv":"2027: After completing this course, the student will be able to: design mechatronic systems integrated into\r\nmechanical machines; analyse and select sensors and actuators based on mechanical performance\r\nrequirements (force, torque, vibration, temperature, wear); model mechanical-electromechanical\r\ninteractions in real systems; apply measurement techniques for mechanical systems (strain,\r\nvibration, displacement, thermal effects); evaluate system performance, reliability, and\r\nmaintainability in industrial machinery; interpret measurement data to support condition monitoring\r\nand fault diagnosis of mechanical systems.\r\n\r\n2026: After this course student will be able to identify various mechatronic components and interconnections; divide a system/device/machine into individual mechatronic components and their connections and asses each component based on its features. Student will also be able to apply basic mechatronic principles, theories, and calculations."}},{"title":{"valueFi":"Sisältö","valueEn":"Content","valueSv":""},"content":{"valueFi":"2027: Mechatronic and Measurement systems analysis and design for Mechanical Engineers; introduction\r\nto mechatronics systems (definitions, principles and applications) and modelling; applied concepts of\r\nsensors and actuators for systems' design; condition monitoring, data acquisition and signal\r\nconditioning; control in real-time mechatronic systems; data communication; introduction to block\r\nprogramming in LabVIEW; design of a mechatronic system.\r\n\r\n2026: Introduction to mechatronics: definitions, principles, and examples of mechatronics systems. Tools used in mechatronics. Motion control basics, Actuators, Sensors, controller equipment, Real-time control, Industrial automation, and communication, Power supply and transfer, wired and wireless connectivity. Basics of Electro Magnetic Interference within mechatronic components.","valueEn":"2027: Mechatronic and Measurement systems analysis and design for Mechanical Engineers; introduction\r\nto mechatronics systems (definitions, principles and applications) and modelling; applied concepts of\r\nsensors and actuators for systems' design; condition monitoring, data acquisition and signal\r\nconditioning; control in real-time mechatronic systems; data communication; introduction to block\r\nprogramming in LabVIEW; design of a mechatronic system.\r\n\r\n2026: Introduction to mechatronics: definitions, principles, and examples of mechatronics systems. Tools used in mechatronics. Motion control basics, Actuators, Sensors, controller equipment, Real-time control, Industrial automation, and communication, Power supply and transfer, wired and wireless connectivity. Basics of Electro Magnetic Interference within mechatronic components.","valueSv":"2027: Mechatronic and Measurement systems analysis and design for Mechanical Engineers; introduction\r\nto mechatronics systems (definitions, principles and applications) and modelling; applied concepts of\r\nsensors and actuators for systems' design; condition monitoring, data acquisition and signal\r\nconditioning; control in real-time mechatronic systems; data communication; introduction to block\r\nprogramming in LabVIEW; design of a mechatronic system.\r\n\r\n2026: Introduction to mechatronics: definitions, principles, and examples of mechatronics systems. Tools used in mechatronics. Motion control basics, Actuators, Sensors, controller equipment, Real-time control, Industrial automation, and communication, Power supply and transfer, wired and wireless connectivity. Basics of Electro Magnetic Interference within mechatronic components."}},{"title":{"valueFi":"Suoritustavat","valueEn":"Study methods","valueSv":""},"content":{"valueFi":"2027: Exams, Assignments and/or project work. \r\n\r\n2026: Exam","valueEn":"2027: Exams, Assignments and/or project work.\r\n\r\n2026: Exam","valueSv":""}},{"title":{"valueFi":"Toteutustavat","valueEn":"Course unit methods","valueSv":""},"content":{"valueFi":"Lectures, online materials, other events","valueEn":"Lectures, online materials, other events","valueSv":""}},{"title":{"valueFi":"Oppimateriaalit","valueEn":"Learning material","valueSv":""},"content":{"valueFi":"2027: Material provided by the lecturer, Scientific articles, and books.\r\nAlciatore, D. G. (2019). Introduction to mechatronics and measurement systems (5th ed.). McGrawHill Education.\r\nBolton, W. (2015). Mechatronics: Electronics, control systems in mechanical and electrical\r\nengineering (7th ed.). Pearson Education.\r\nde Silva, C. W. (2010). Mechatronics: A foundation course. CRC Press.\r\n\r\n2026:Scientific articles \r\nMaterial provided by the teacher","valueEn":"2027: Material provided by the lecturer, Scientific articles, and books.\r\nAlciatore, D. G. (2019). Introduction to mechatronics and measurement systems (5th ed.). McGrawHill Education.\r\nBolton, W. (2015). Mechatronics: Electronics, control systems in mechanical and electrical\r\nengineering (7th ed.). Pearson Education.\r\nde Silva, C. W. (2010). Mechatronics: A foundation course. CRC Press.\r\n\r\n2026:Scientific articles \r\nMaterial provided by the teacher","valueSv":""}},{"title":{"valueFi":"Lisätiedot","valueEn":"Further information","valueSv":""},"content":{"valueFi":"Check Moodle","valueEn":"Check Moodle","valueSv":""}},{"title":{"valueFi":"Kurssikirjallisuus","valueEn":"Literature","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Esitietovaatimukset","valueEn":"Qualifications","valueSv":""},"content":{"valueFi":"BSc in Mechanical Engineering or similar, for Smart System major/minor students.","valueEn":"BSc in Mechanical Engineering or similar, for Smart System major/minor students.","valueSv":""}},{"title":{"valueFi":"Arviointiasteikko","valueEn":"Assessment scale","valueSv":""},"content":{"valueFi":"0-5","valueEn":"0-5","valueSv":"0-5"}},{"title":{"valueFi":"Arviointikriteerit","valueEn":"Assessment criteria","valueSv":""},"content":{"valueFi":"2027: 20% quizzes, 30% assignments, 50% project work\r\n\r\n2026: 100% exam","valueEn":"2027: 20% quizzes, 30% assignments, 50% project work\r\n\r\n2026: 100% exam","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 2","valueEn":"Assessment criteria 2","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 3","valueEn":"Assessment criteria 3","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 4","valueEn":"Assessment criteria 4","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Kielet","valueEn":"Languages","valueSv":""},"content":{"valueFi":"englanti","valueEn":"English","valueSv":"engelska"}},{"title":{"valueFi":"Taso","valueEn":"Level","valueSv":""},"content":{"valueFi":"Syventävät opinnot","valueEn":"Advanced Studies","valueSv":""}},{"title":{"valueFi":"Oppiaine","valueEn":"Subject","valueSv":""},"content":{"valueFi":"Konetekniikka","valueEn":"Mechanical Engineering","valueSv":"Mechanical Engineering"}},{"title":{"valueFi":"Vastuuhenkilöt","valueEn":"Person in charge","valueSv":""},"content":{"valueFi":"Kandice Barros Ribeiro","valueEn":"Kandice Barros Ribeiro","valueSv":"Kandice Barros Ribeiro"}},{"title":{"valueFi":"Luokittelu","valueEn":"Classification","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Linkit","valueEn":"Links","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}}]}