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Course Unit Title Course Unit Code Type of Course Unit Level of Course Unit Year of Study Semester ECTS Credits
Logic Circuits TEM347 Elective Bachelor's degree 3 Fall 4

Name of Lecturer(s)

Associate Prof. Dr. Ayşe ERGÜN AMAÇ

Learning Outcomes of the Course Unit

1) Recognizes numerical systems and convert numeric systems one another.
2) Make calculations by binary systems.
3) Knows logic gates. Extract logic functions by using Boolean Algebra, simplify logic operations and design logic circuits.
4) Establishes accuracy tables of logic functions. Simplify logic functions by Karnaugh Maps Method.
5) Knows combinational logic circuit components.
6) Knows sequential logic circuit components.

Program Competencies-Learning Outcomes Relation

  Program Competencies
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30
Learning Outcomes
1 High No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation
2 High No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation
3 High No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation
4 High No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation
5 High No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation
6 High No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation No relation High No relation No relation No relation No relation No relation No relation

Mode of Delivery

Face to Face

Prerequisites and Co-Requisites

None

Recommended Optional Programme Components

Not Required

Course Contents

Analog and numerical terms; binary, octal, decimal, hexadecimal numeric systems and their conversions. Fundamental logic gates (AND, OR, NOT, NAND, NOR, XOR, XNOR) and their structures. Boolean Algebra, DeMorgan Rule. Extracting logical functions, explanations, and accuracy table. Extracting Karnaugh Maps, not count states, simplifying by Karnaugh, minterm-maxterm expansions and simplifications. Conversion of the gates one another, realization of logic functions by only NAND or only NOR gates. Adders, substractors, encoders, decoders, multiplexers and demultiplexers. Data storage components (latches), flip-flop terms and types. SR, JK, D, T flip-flops and latches.

Weekly Schedule

1) Introduction to the Course, References, Analog Systems, Digital Systems
2) Numeric Systems, Convertion of the Numeric Systems to Each Other
3) Calculations in Binary System
4) Encodes and Codes, Boolean Algebra, Logic Expressions, Logic Functions
5) Displaying Logic Functions, Logic Operation Tables, Logic Operations Accuracy Tables
6) Logic Gates and Logic Circuits, Integrated Circuits, Realization of Logic Functions with Logic Gates, Deasign of Logic Circuits
7) Realization of Logic Circuits by Complement, AND, OR Operations. Realization of Logic Circuits by NAND and NOR operations.
8) Reduction of Logic Functions, Finding of the Prime Factors, Karnaugh Maps
9) Midterm Exam
10) Finding the Cluster of Whole Prime Factors, Primary Dot and Needed Primer Factor
11) Simplification: Selecting of Suitable Primer Factors, Reduction of Selection Tables, Finding the Cluster of Whole Prime Factor by Table Method (Quine- Mccluskey)
12) Combinational Logic Circuits, Combinational Logic Circuit Components, Adders, Subtractors, Encoders, Decoders, Multiplexers, Demultiplexers
13) Timing Diagrams, Propagation Delay, Hazard, Prevention of Hazards, Sequential Logic Circuits
14) Data Storage Components (Latches), SR, D, JK latches
15) Flip-Flop Varieties, D, JK, T Flip Flops, State Transition Tables in Flip Flop.
16) Final Exam

Recommended or Required Reading

Planned Learning Activities and Teaching Methods

1) Lecture
2) Drill and Practice
3) Problem Solving
4) Project Based Learning


Assessment Methods and Criteria

Contribution of Project to Course Grade

40%

Contribution of Final Examination to Course Grade

60%

Total

100%

Language of Instruction

Turkish

Work Placement(s)

Not Required