EE435 Microprocessors-I

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Course Code Course Title Weekly Hours* ECTS Weekly Class Schedule
T P
EE435 Microprocessors-I 3 1 6 Wed 14:00 -16:50
Prerequisite It is a prerequisite to
Lecturer Office Hours / Room / Phone

Currently not available

E-mail
Assistant Sevkuthan Kurak Assistant E-mail sevkuthan@student.ius.edu.ba
Course Objectives "The course aims to provide students with: 1. Understanding of basic computer organization and microprocessor architecture. 2. Introduction to assembly language programming 3. Knowledge of various interfacing of devices and ports with microprocessor and microcontrollers"
Textbook "The 80x86 IBM PC and Compatible Computers, Assembly Language, Design, and Interfacing M.A. Mazidi and J.G. Mazidi, 4th edition, Prentice Hall, 2003"
Learning Outcomes After successful  completion of the course, the student will be able to:
  1. Explain the main components and working principals of the Intel 80x86 microprocessor
  2. Program and debug in assembly language
  3. Program and debug of a microcontroller in C language
  4. Use the hardware and software interrupts in applications
  5. Use microprocessor and microcontroller for small demonstration projects
Teaching Methods
WEEK TOPIC REFERENCE
Week 1 Introduction Ch0, Ch1
Week 2 Assembly language and addressing modes Ch1, Ch2
Week 3 Assembly language and addressing modes Ch3
Week 4 Bios and DOS programming in Assembly Ch4
Week 5 Input output devices interface Sections of Ch11. Ch12
Week 6 Interrupts Ch14
Week 7 Ports (parallel and serial) Ch17
Week 8 MID-term
Week 9 Microcontrollers, DSP cards, term project introduction Class note (Texas instruments)
Week 10 Microcontrollers, DSP cards Class note (Texas instruments)
Week 11 Microcontrollers, DSP cards Class note (Texas instruments)
Week 12 Microcontrollers, DSP cards Class note (Texas instruments)
Week 13 Microcontrollers, DSP cards Class note (Texas instruments)
Week 14 Microcontrollers, DSP cards Class note (Texas instruments)
Week 15 Microcontrollers, DSP cards Class note (Texas instruments)
Assessment Methods and Criteria Evaluation Tool Quantity Weight Alignment with LOs
Final Exam 1 40 1,2,3,4
Semester Evaluation Compenents
Quizes (Tests) 5 15 1,2,3
Midterm Exam 1 20 1,2,3,4
Simulation HWs 5 15 4,5
Term Project 1 10 4,5
***     ECTS Credit Calculation     ***
 Activity Hours Weeks Student Workload Hours Activity Hours Weeks Student Workload Hours
Lecture Hours 3 14 42 Home Study 3 14 42
Simulation HWs 2 5 10 Simulation HWs 2 5 10
Active Tutorials 1 10 10 Final Exam 10 2 20
Home Study 3 14 42 Home Study 3 14 42
        Total Workload Hours = 150
*T= Teaching, P= Practice ECTS Credit = 6
Course Academic Quality Assurance: Semester Student Survey Last Update Date: 19/03/2020
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