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| Year/Semester of Study | 2 / Spring Semester | ||||
| Level of Course | Short Cycle Degree Programme | ||||
| Type of Course | Optional | ||||
| Department | COMPUTER PROGRAMMING | ||||
| Pre-requisities and Co-requisites | None | ||||
| Mode of Delivery | Face to Face | ||||
| Teaching Period | 14 Weeks | ||||
| Name of Lecturer | KADİR ABA (aba@nevsehir.edu.tr) | ||||
| Name of Lecturer(s) | |||||
| Language of Instruction | Turkish | ||||
| Work Placement(s) | None | ||||
| Objectives of the Course | |||||
| To make the students understanding the hardware and software features of the embedded systems. Understand the usage of the embedded system design tools Have a firsthand experience about the embedded system designs through laboratory experiments and semester projects. | |||||
| Learning Outcomes | PO | MME | |
| The students who succeeded in this course: | |||
| LO-1 | Students are able to understand features of the embedded systems. |
PO-1 Has basic, current, and practical knowledge related to his/her profession PO-3 Follows current developments and practices for his/her profession and uses them effectively PO-4 Uses information technologies related to his/her profession (software, programs, animations, etc.) effectively PO-5 Has the ability to independently evaluate professional problems and issues with an analytical and critical approach and to propose solutions |
Examination |
| LO-2 | Students are able to design embedded systems. |
PO-1 Has basic, current, and practical knowledge related to his/her profession PO-3 Follows current developments and practices for his/her profession and uses them effectively PO-4 Uses information technologies related to his/her profession (software, programs, animations, etc.) effectively PO-5 Has the ability to independently evaluate professional problems and issues with an analytical and critical approach and to propose solutions |
Examination |
| LO-3 | Students are able to use software and hardware tools of the embedded systems. |
PO-1 Has basic, current, and practical knowledge related to his/her profession PO-3 Follows current developments and practices for his/her profession and uses them effectively PO-4 Uses information technologies related to his/her profession (software, programs, animations, etc.) effectively PO-5 Has the ability to independently evaluate professional problems and issues with an analytical and critical approach and to propose solutions |
Examination |
| LO-4 | Students are able to perform embedded system applications |
PO-1 Has basic, current, and practical knowledge related to his/her profession PO-3 Follows current developments and practices for his/her profession and uses them effectively PO-4 Uses information technologies related to his/her profession (software, programs, animations, etc.) effectively PO-5 Has the ability to independently evaluate professional problems and issues with an analytical and critical approach and to propose solutions |
Examination |
| PO: Programme Outcomes MME:Method of measurement & Evaluation |
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| Course Contents | ||
| Overview of the embedded systems. Embedded system components and tools. The hardware and software features of the embedded systems. 32-bits ARM processors. Programming tools and developing programs. Embedded peripherals. Applications. | ||
| Weekly Course Content | ||
| Week | Subject | Learning Activities and Teaching Methods |
| 1 | Overview of the embedded systems | Expression / Question-Answer, Solving Problem, Practice |
| 2 | Embedded system components | Expression / Question-Answer, Solving Problem, Practice |
| 3 | 32-bits processors | Expression / Question-Answer, Solving Problem, Practice |
| 4 | ARM architectures | Expression / Question-Answer, Solving Problem, Practice |
| 5 | Hardware features | Expression / Question-Answer, Solving Problem, Practice |
| 6 | Software features | Expression / Question-Answer, Solving Problem, Practice |
| 7 | ARM instruction set | Expression / Question-Answer, Solving Problem, Practice |
| 8 | mid-term exam | |
| 9 | Embedded system programming in C | Expression / Question-Answer, Solving Problem, Practice |
| 10 | Embedded operating systems | Expression / Question-Answer, Solving Problem, Practice |
| 11 | Input-output units | Expression / Question-Answer, Solving Problem, Practice |
| 12 | Embedded peripherals and programming (ADC, DAC) | Expression / Question-Answer, Solving Problem, Practice |
| 13 | Embedded peripherals and programming (USART,I2C, I2S) | Expression / Question-Answer, Solving Problem, Practice |
| 14 | Embedded peripherals and programming (CAN, USB, ETHERNET) | Expression / Question-Answer, Solving Problem, Practice |
| 15 | Applications | Practice |
| 16 | final exam | |
| Recommend Course Book / Supplementary Book/Reading | ||
| 1 | Muhammed Ö., (2015), RFID - Gömülü Sistemler ile RFID Mimarisi - Programlama Oku, İzle, Dinle, Öğren!, Kodlab | |
| 2 | Aykut T. (2010), NET ile Mobil ve Gömülü Sistemler, Pusula Yayıncılık | |
| Required Course instruments and materials | ||
| Course Book, Lecture notes, Projection,Computer | ||
| Assessment Methods | |||
| Type of Assessment | Week | Hours | Weight(%) |
| mid-term exam | 8 | 1 | 40 |
| Other assessment methods | |||
| 1.Oral Examination | |||
| 2.Quiz | |||
| 3.Laboratory exam | |||
| 4.Presentation | |||
| 5.Report | |||
| 6.Workshop | |||
| 7.Performance Project | |||
| 8.Term Paper | |||
| 9.Project | |||
| final exam | 16 | " | 60 |
| Student Work Load | |||
| Type of Work | Weekly Hours | Number of Weeks | Work Load |
| Weekly Course Hours (Theoretical+Practice) | 2 | 14 | 28 |
| Outside Class | |||
| a) Reading | 0 | ||
| b) Search in internet/Library | 2 | 8 | 16 |
| c) Performance Project | 0 | ||
| d) Prepare a workshop/Presentation/Report | 1 | 8 | 8 |
| e) Term paper/Project | 3 | 8 | 24 |
| Oral Examination | 0 | ||
| Quiz | 0 | ||
| Laboratory exam | 0 | ||
| Own study for mid-term exam | 6 | 1 | 6 |
| mid-term exam | 1 | 1 | 1 |
| Own study for final exam | 6 | 1 | 6 |
| final exam | 1 | 1 | 1 |
| 0 | |||
| 0 | |||
| Total work load; | 90 | ||