CANKIRI KARATEKIN UNIVERSITY Bologna Information System


  • Course Information
  • Course Title Code Semester Laboratory+Practice (Hour) Pool Type ECTS
    Embedded Systems EEM518 FALL-SPRING 3+0 E 6
    Learning Outcomes
    1-Applies the working principles of embedded systems in projects
    2-Plans the design process of embedded systems
    3-Solves the problems faced during the embedded system design phase
    4-Develops software for embedded system design
  • ECTS / WORKLOAD
  • ActivityPercentage

    (100)

    NumberTime (Hours)Total Workload (hours)
    Course Duration (Weeks x Course Hours)14342
    Classroom study (Pre-study, practice)14456
    Assignments0000
    Short-Term Exams (exam + preparation) 0000
    Midterm exams (exam + preparation)2011010
    Project3015050
    Laboratory 0000
    Final exam (exam + preparation) 5011010
    0000
    Total Workload (hours)   168
    Total Workload (hours) / 30 (s)     5,6 ---- (6)
    ECTS Credit   6
  • Course Content
  • Week Topics Study Metarials
    1 Explanation of basic interface concepts related to embedded system R1-Chapter-1
    2 Methods of solving embedded system problems R1-Chapter-3
    3 Embedded System Development process R1-Chapter-7
    4 Use and application of digital input-output interfaces in embedded systems R1-Chapter-8
    5 Sample application and software development, project applications R1-Chapter-9
    6 Analog input / output applications in embedded systems R2-Chapter-2
    7 Serial communication applications in embedded systems R2-Chapter-4
    8 Memory usage applications in embedded systems R2-Chapter-5
    9 Designing systems pressure, temperature, humidity and power control in embedded systems. R2-Chapter-6
    10 Sample application and software development, project applications R2-Chapter-7
    11 Use of interrupt and timer concepts and creation of interrupt subprograms R2-Chapter-3
    12 Applications in servo motor and other motor control circuits R2-Chapter-3
    13 Memory usage applications in embedded systems R2-Chapter-6
    14 Sample application and software development, project applications R2-Chapter-7
    Prerequisites -
    Language of Instruction Turkish
    Responsible Asst. Prof. Dr. Mustafa TEKE
    Instructors -
    Assistants -
    Resources R1-Tammy Noergaard, 2005, Embedded Systems Architecture: A Comprehensive Guide for Engineers and Programmers (Embedded Technology), Newnes. R2-John B. PEATMAN, 2003, Embedded Design with the PIC18F452 Microcontroller, Prentice-Hall, New York
    Supplementary Book -
    Goals To provide knowledge about embedded system design and components and to teach preparing system programs.
    Content Explanation of basic interface concepts related to embedded system, Methods of solving embedded system problems Embedded System Development process Use and application of digital input-output interfaces in embedded systems, Sample application and software development, project applications Analog input / output applications in embedded systems Serial communication applications in embedded systems Memory usage applications in embedded systems Designing systems pressure, temperature, humidity and power control in embedded systems. Sample application and software development, project applications Use of interrupt and timer concepts and creation of interrupt subprograms. Applications in servo motor and other motor control circuits, Memory usage applications in embedded systems Sample application and software development, project applications
  • Program Learning Outcomes
  • Program Learning Outcomes Level of Contribution
    1 Acquires information by carrying out scientific research in the field of Electrical and Electronics Engineering, evaluates the findings and makes comments 3
    2 Complements the restricted or incomplete information and applies it, unifies the multidisciplinary information 4
    3 Designs and implements a system meeting the requirements in the field of Electrical and Electronics Engineering 5
    4 Makes an interpretation of a problem in the field of Electrical and Electronics Engineering, develops models for solutions and applies innovative methods in these solutions -
    5 Has comprehensive knowledge on the contemporary applied method and techniques used in the field of Electrical and Electronics Engineering and their limitations -
    6 Undertakes and implements analytic, simulation or experimental types of research and has the ability to solve the complex problems encountered there 5
    7 Can participate and assume responsibility in multidisciplinary task forces -
    8 Observes the scientific, professional and ethical rules during data collection, its introduction and interpretation 4
    9 Be aware of recent advances and developments in the field of Electrical and Electronics Engineering, learns, analyses and applies them wherever needed 4
    10 Publishes his/her research findings verbally and in written forms in national and international arena 5
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