Course Information


Course Information
Course Title Code Semester L+U Hour Credits ECTS
BASIC AND DIGITAL ELECTRONICS UEBT109 1. Semester 3 + 0 3.0 4.0

Prerequisites None

Language of Instruction Turkish
Course Level Associate's Degree
Course Type Compulsory
Mode of delivery
Course Coordinator
Instructors
Assistants
Goals Bu ders, Boole cebirini ve mantık devreleri için temel analiz ve sentez yöntemlerini proje tabanlı bir bağlamda tanıtmayı amaçlamaktadır. Hem kombinezonsal hem de ardışıl devreler çeşitli tasarım örneklerinde ele alınmıştır.
Course Content Sayı sistemleri; Boole cebri; mantık ağları ve indirgenmesi; kapılar ve MSI yongaları ile mantıksal tasarım teknikleri; kombinezonsal devreler; temel ardışıl devreler; D/A ve A/D dönüşümü; tasarım örnekleri.
Learning Outcomes 1) 1- Sık kullanılan sayısal elektronik devre elemanlarının çalışma prensiplerini kavrama
2) 2- Temel sayısal elektronik devre analiz yöntemlerini uygulayabilme,
3) 3- Bu elemanları kullanarak, basit elektronik devrelerini analiz edip tasarlayabilme ve gerçekleyebilme; bu amaç için gerekli temel ölçü aletleri ve gereçleri kullanabilme

Weekly Topics (Content)
Week Topics Teaching and Learning Methods and Techniques Study Materials
1. Week Number Systems Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
2. Week Conversion in Number Systems Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
3. Week Boolean rules Lecture; Question Answer; Problem Solving
Brainstorming
Project Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
4. Week logic circuits Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
5. Week Circuit Design with Logic Gates Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
6. Week Comparison and Arithmetic Operations with Logic Circuits Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
7. Week Karnough Maps Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
8. Week midterm exam

9. Week Risistors Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
10. Week Diodes and Capacitors Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
11. Week transistors Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
12. Week Semiconductor Switching Elements Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
13. Week Rectification Circuits Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)
14. Week Filter and Regulating Circuits Lecture; Question Answer; Problem Solving
Brainstorming
Problem Based Learning; Brain Based Learning
Presentation (Including Preparation Time)

Sources Used in This Course
Recommended Sources
Mano, M. M., Digital Design, Prentice-Hall: New Jersey.

Relations with Education Attainment Program Course Competencies
Program RequirementsContribution LevelDK1DK2DK3
PY15000
PY25000
PY35000
PY45000

*DK = Course's Contrubution.
0 1 2 3 4 5
Level of contribution None Very Low Low Fair High Very High
.

ECTS credits and course workload
Event Quantity Duration (Hour) Total Workload (Hour)
Course Duration (Total weeks*Hours per week) 14 3
Work Hour outside Classroom (Preparation, strengthening) 14 3
Midterm Exam 1 2
Time to prepare for Midterm Exam 1 10
Final Exam 1 2
Time to prepare for Final Exam 1 10
Total Workload
Total Workload / 30 (s)
ECTS Credit of the Course
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Course Information