Türkçe English Rapor to Course Content
COURSE SYLLABUS
NUMERICAL ELECTRONICS
1 Course Title: NUMERICAL ELECTRONICS
2 Course Code: EMEZ001
3 Type of Course: Compulsory
4 Level of Course: Short Cycle
5 Year of Study: 2
6 Semester: 3
7 ECTS Credits Allocated: 4
8 Theoretical (hour/week): 3
9 Practice (hour/week) : 0
10 Laboratory (hour/week) : 1
11 Prerequisites: -
12 Recommended optional programme components: None
13 Language: Turkish
14 Mode of Delivery: Face to face
15 Course Coordinator: Öğr.Gör. ÖZCAN TEMEL
16 Course Lecturers: Öğr.Gör. Ömer Eriş
17 Contactinformation of the Course Coordinator: hashan@uludag.edu.tr
Tel: 2942345
Adres: U.Ü Teknik Bilimler MYO Görükle
18 Website:
19 Objective of the Course: The main objectives of this course are to introduce basic logic circuits, logic circuit simplification methods, setting up logic circuits, electrical equivalents of logics and solution of application problems.
20 Contribution of the Course to Professional Development
21 Learning Outcomes:
1 Describes number systems.;
2 Describes the logical gate circuits.;
3 Set up circuits of logic functions.;
4 Able to do logic circuit simplification techniques.;
5 Solves problems of logic and implements logic circuits.;
6 Be able to design decoder and encoder circuits.;
7 Describes Mux and demux circuits.;
22 Course Content:
Week Theoretical Practical
1 Introduction. Problem solving.
2 Number Systems. Problem solving.
3 Number Systems. Use of logic gates.
4 The logical gate circuits. Use of logic gates.
5 Logical gate circuits, integrated circuit families and their technical characteristics. Realization of electrical equivalent of logic gates.
6 Circuit drawing of logic functions and finding out logic equation from a drawn circuit. Realization of electrical equivalent of logic gates.
7 Conversions between electrical circuits and logic circuits. Problem solving.
8 Midterm exam. Problem solving.
9 Boolean mathematics. A control circuit design.
10 Karnaugh map. Usage of 7-segment decoder driver drive.
11 Obtaining and simplification of the logic function of a problem Decoder design.
12 Installing and running the logic circuit of a problem. Mux and demux design.
13 The decoder, encoders. 7-segment decoders.
14 Multiplexer (mux) and demux.
23 Textbooks, References and/or Other Materials: Digital system and applications, Ronald J. Tocci
Mikroişlemçiler ve sayı sistemleri, Douglas V. Hall
Digital Electronics and Applications for Digital Design, Richard J Prestonik
Dijital Elektronik, Mustafa Yağımlı, Feyzi Akar
24 Assesment
TERM LEARNING ACTIVITIES NUMBER PERCENT
Midterm Exam 1 25
Quiz 0 0
Homeworks, Performances 1 25
Final Exam 1 50
Total 3 100
Contribution of Term (Year) Learning Activities to Success Grade 50
Contribution of Final Exam to Success Grade 50
Total 100
Measurement and Evaluation Techniques Used in the Course
Information
25 ECTS / WORK LOAD TABLE
Activites NUMBER TIME [Hour] Total WorkLoad [Hour]
Theoretical 14 2 28
Practicals/Labs 14 2 28
Self Study and Preparation 14 2 28
Homeworks, Performances 1 6 6
Projects 1 10 10
Field Studies 0 0 0
Midtermexams 1 10 10
Others 0 0 0
Final Exams 1 10 10
Total WorkLoad 120
Total workload/ 30 hr 4
ECTS Credit of the Course 4
26 CONTRIBUTION OF LEARNING OUTCOMES TO PROGRAMME QUALIFICATIONS
PQ1 PQ2 PQ3 PQ4 PQ5 PQ6 PQ7 PQ8 PQ9 PQ10 PQ11 PQ12
LO1 2 0 0 0 1 0 5 0 2 0 0 0
LO2 2 0 0 0 3 0 5 0 3 0 0 0
LO3 3 0 0 0 4 0 5 0 5 0 0 0
LO4 0 0 0 0 1 0 5 0 1 0 0 0
LO5 2 0 0 0 3 0 5 0 4 0 0 0
LO6 2 0 0 0 3 0 5 0 4 0 0 0
LO7 2 0 0 0 3 0 5 0 4 0 0 0
LO: Learning Objectives PQ: Program Qualifications
Contribution Level: 1 Very Low 2 Low 3 Medium 4 High 5 Very High
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