Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Vocational School Of Information Technologies
  • Department of Computer Technologies
  • Computer Programming
  • Course Structure Diagram with Credits
  • Digital Electronics
  • Learning Outcomes
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications

  • explains digital concepts ,systems and logic circuits
  • explains positive and negative logic statements, the characteristics of TTL ,MOS and CMOS integrated circuits
  • converts decimal systems to binary systems ,binary to decimal, binary systems to hexadecimal systems, hexadecimal to binary and does arithmetic operations and explains the relations between BCD and binary / hexadecimal systems.
  • explains the functions of logical Gates which are AND,OR ,NOT, NAND,NOR ,XOR and XNOR.
  • explains the functions of THREE-STATE-BUFFER and input-output relations of these functions and the symbols of logic Gates , truth tables of these functions.
  • forms circuits that have following functions : AND,OR,NOT,NAND,NOR,XOR XNOR gates by only using NAND Gates.
  • shows the simplification of logical statements.
  • explains the simplification of boolean statements by using boolean rules and theorems which are adding , subtracting, combining, complementing and cancellation
  • writes the boolean equation of a truth table and shows its logical circuit.
  • writes the boolean equation of a logical circuit and forms its truth table.
  • describes the simplification methods by using 2 ,3,4,5 th Karnaugh maps
  • identifies compositional circuits.
  • explains how decoder, encoder and 7 segment decoder work.
  • recognizes 7 segment displays, Alpha numeric displays, LCD displays.
  • explains how logical problems can be solved by using multiplexer, demultiplexer , comparator.
  • uses half adder, full adder and substractor.
  • indicates the applications of compositional circuits
  • uses circuits of Flip-Flop.
  • recognizes different types of flip flops that are falling edges, rising edges and surface trigger.
  • prepares time tables, logical symbols and truth tables of RS flip-flop, JK flip-flop, D flip-flop and T flip-flop.
  • indicates the applications of flip-flop circuits.
  • recognizes and uses FPLA.
  • recognizes and uses the characteristics of binary and BCD counters.
  • recognizes and uses the characteristics of programmable counters.
  • recognizes and uses the characteristics of ring counters.
  • recognizes and uses the characteristics of Johnson counters.
  • indicates the applications of counters.
  • explains registers and latches.
  • explains serial in/out registers and serial in/parallel out registers.
  • explains parallel in/out registers and parallel in/serial out registers.
  • explains shift registers.
  • explains the use of registers as a ring counter.
  • shows the applications about registers and latches.
  • explains memory units and algorithmic state machines
  • recognizes RAM,ROM, PROM ,EPROM, EEPROM, FLASH, etc.
  • shows the applications of memory units.
  • defines the scheme of algorithmic state.
  • recognizes and uses Programmable Logic Array (PLA).
  • Recognizes and uses FPLA
  • explainS converters and digital modulation.
  • describes the types and working principles of digital/analog converters (DAC) and Analog/Digital converters (ADC).
  • uses integrated circuits (IC) of DAC and ADC.
  • explains the modulations of PAM and PWM by drawing their block schemes and graphics.
  • explains the modulations of Delta , PPM and PCM by drawing their block schemes and graphics.
  • shows digital modulation by using a sample circuit.

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  • ECTS Credit Allocation
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  • Doctorate Degree / Proficieny in Arts
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