CANKIRI KARATEKIN UNIVERSITY Bologna Information System


  • Course Information
  • Course Title Code Semester Laboratory+Practice (Hour) Pool Type ECTS
    Amplifiers And Oscillators CET205 FALL 3+1 C 4
    Learning Outcomes
    1-Analyzes the signals on the resistor and capacitor with the super position theorem in a circuit with resistors and capacitors connected in series, formed by DC and AC sources. Recognizes coupling and decoupling (bypass) capacitors, calculates their approximate values, explains how many levels can be connected to each other in electronics (coupling types). Calculates the AC resistance of a diode, it says the resistance value depends on the current.
    2-Draws the equivalent model of a BJT. Draws the circuit of the Emitter, Generator and Collector common amplifiers, explains the operation, draws the phase relationship of the input-output signals, draws the AC equivalent, calculates the electrical quantities such as voltage gain, current gain, input impedance, output impedance and power gain.
    3-Draws a cascaded amplifier circuit, explains how to calculate the electrical quantities mentioned above.
    4-Draws the equivalent model of FET, draws the circuit of Source, Drain and Gate common amplifiers, explains its operation, draws the phase relationship of the input-output signals. Draws the AC equivalent of the input-output signals.
    5-Draws the AC equivalent of FET`s Source, Drain and Gate common amplifiers, calculates electrical magnitudes such as voltage gain, input impedance and output impedance, explains why there is no current gain in FETs.
    6-recognizes and applies transistor power amplifiers.
  • ECTS / WORKLOAD
  • ActivityPercentage

    (100)

    NumberTime (Hours)Total Workload (hours)
    Course Duration (Weeks x Course Hours)14456
    Classroom study (Pre-study, practice)14114
    Assignments0000
    Short-Term Exams (exam + preparation) 0000
    Midterm exams (exam + preparation)4013232
    Project0000
    Laboratory 0000
    Final exam (exam + preparation) 6013232
    0000
    Total Workload (hours)   134
    Total Workload (hours) / 30 (s)     4,47 ---- (4)
    ECTS Credit   4
  • Course Content
  • Week Topics Study Metarials
    1 Definitions K1-Chapter-1
    2 BJT small signal (voltage) amplifiers K1-Chapter-2
    3 BJT small signal (voltage) amplifiers K1-Chapter-2
    4 BJT small signal (voltage) amplifiers K1-Chapter-2
    5 BJT small signal (voltage) amplifiers K1-Chapter-2
    6 FET small signal (voltage) amplifiers K1-Chapter-3
    7 FET small signal (voltage) amplifiers K1-Chapter-3
    8 FET small signal (voltage) amplifiers K1-Chapter-3
    9 Large signal (power) amplifiers K1-Chapter-4
    10 Large signal (power) amplifiers K1-Chapter-4
    11 Large signal (power) amplifiers K1-Chapter-4
    12 Large signal (power) amplifiers K1-Chapter-4
    13 Oscilators K1-Chapter-5
    14 Oscilators K1-Chapter-5
    Prerequisites -
    Language of Instruction Turkish
    Responsible Dr. Öğr Üyesi Nurettin Gökşenli
    Instructors -
    Assistants -
    Resources K1. Lecture notes Dr. Öğr Üyesi Nurettin Gökşenli
    Supplementary Book YK1.Electronics Devices Thomas FLOYD YK2.Electronic principles Albert Paul MALVINO YK3.Electronic devices and circuits Robert L. BOYLESTAT Lois
    Goals 1-Extracts the equivalent circuits of BJT and FETs in ac operation. 2- Comprehend the types and operation of small signal amplifiers, apply circuit solution methods and theorems. 3- Comprehend the types and operation of big signal (power) amplifiers, apply circuit solution methods and theorems. 4-Recognizes the types of oscillator, understands its operation.
    Content Definitions, small-signal (voltage) amplifiers with BJTs, small-signal (voltage) amplifiers with FETs, large-signal (power) amplifiers, oscillators
  • Program Learning Outcomes
  • Program Learning Outcomes Level of Contribution
    1 Follows the developments in the profession. 3
    2 Uses computer in profession. -
    3 Reads the scheme, applies it to the circuit. 3
    4 Understands, interprets and transfers the job description from the top units to the sub units. -
    5 Makes work organization. -
    6 Makes applications requiring advanced technology and features, transfers to sub-units. -
    7 Knows the importance of teamwork. 3
    8 Takes responsibility and risk 4
    9 Communicates -
    10 Decides 5
    11 Makes needs analysis 4
    12 Solves the problem. 5
    13 Writes a report. -
    14 Can establish his own business. -
    15 Uses the equipment, makes maintenance and repair, keeps records. -
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