Course syllabus

010153104-68 อิเล็กทรอนิกส์ (Electronics)

Course Syllabus

Data entry : Asst.Prof. Dr.Sukritta Paripurana
1. Course number and name

010153104-68 อิเล็กทรอนิกส์ (Electronics)

2. Credits and contact hours

3(3-0-6)

3. Instructor’s or course coordinator’s name

Asst.Prof. Dr.Sukritta Paripurana
Asst.Prof.Khatathap Swatdipisal
Dr.Bancha Janthong

4. Text book, title, author, and year

  1. Donald A. Neamen, Microelectronics: Circuit Analysis and Design, 4th Edition, McGraw-Hill Education, 2009

5. Specific course information

  1. brief description of the content of the course (catalog description)
    Semiconductor devices; current-voltage relationships and frequency characteristics of electronic devices; analysis and design of diode circuits; analysis and design of BJT, MOS, CMOS, and BiCMOS transistor circuits; operational amplifier and applications; amplifiers; oscillators; power supplies; power electronic devices.
  2. prerequisites or co-requisites
    010153102-68 Electric Circuit Theory
  3. indicate whether a required, elective, or selected elective (as per Table 5-1) course in the program
    Required :

6. Specific goals for the course

  1. specific outcomes of instruction (e.g. The student will be able to explain the significance of current research about a particular topic.)
    1. CLO1 Understand the characteristics and property of semiconductor material and basic electronic devices.
    2. CLO2 Identify the physical structure, characteristics and operations of basic electronic devices such as diodes, transistor, MOSFET and Op-Amp.
    3. CLO3 Identify the nonlinear characteristics of basic electronic devices such as diodes, transistor, MOSFET and Op-Amp.
    4. CLO4 Discuss the general frequency response characteristics of amplifiers.
    5. CLO5 Examine DC analysis techniques for basic electronic devices such as diode, transistor, MOSFET and Op-Amp.
    6. CLO6 Analyze the characteristics of the electronic circuits implemented with diode, transistor, MOSFET and Op-Amp.
    7. CLO7 Derive the system transfer functions of basic electronic devices such as diode, transistor, MOSFET and Op-Amp.
    8. CLO8 Develop an equivalent circuit for basic electronic devices such as diode, transistor, MOSFET and Op-Amp under small-signal constraints.
    9. CLO9 Implement the nonlinear characteristics of diodes to create the electronic circuits, including voltage rectifier, voltage regulator circuit, wave shaping circuits and AC to DC Converter.
    10. CLO10 Develop the Bode diagrams of the transfer functions of basic electronic devices such as diode, transistor, MOSFET and Op-Amp.
  2. explicitly indicate which of the student outcomes listed in Criterion 3 or any other outcomes are addressed by the course.
    ABET Student Outcome (SO) Listed in Criterion 3 Course learning outcome (CLO)
    SO1 an ability to identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics.
    • CLO1 Understand the characteristics and property of semiconductor material and basic electronic devices.
    • CLO2 Identify the physical structure, characteristics and operations of basic electronic devices such as diodes, transistor, MOSFET and Op-Amp.
    • CLO3 Identify the nonlinear characteristics of basic electronic devices such as diodes, transistor, MOSFET and Op-Amp.
    • CLO4 Discuss the general frequency response characteristics of amplifiers.
    • CLO5 Examine DC analysis techniques for basic electronic devices such as diode, transistor, MOSFET and Op-Amp.
    • CLO6 Analyze the characteristics of the electronic circuits implemented with diode, transistor, MOSFET and Op-Amp.
    • CLO7 Derive the system transfer functions of basic electronic devices such as diode, transistor, MOSFET and Op-Amp.
    • CLO8 Develop an equivalent circuit for basic electronic devices such as diode, transistor, MOSFET and Op-Amp under small-signal constraints.
    • CLO9 Implement the nonlinear characteristics of diodes to create the electronic circuits, including voltage rectifier, voltage regulator circuit, wave shaping circuits and AC to DC Converter.
    • CLO10 Develop the Bode diagrams of the transfer functions of basic electronic devices such as diode, transistor, MOSFET and Op-Amp.
    SO2 an ability to apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors.
    • CLO8 Develop an equivalent circuit for basic electronic devices such as diode, transistor, MOSFET and Op-Amp under small-signal constraints.
    • CLO9 Implement the nonlinear characteristics of diodes to create the electronic circuits, including voltage rectifier, voltage regulator circuit, wave shaping circuits and AC to DC Converter.

7. Brief list of topics to be covered
  • Semiconductor materials and Diodes
  • Diode Circuits and Application
  • Bipolar Junction Transistor (BJT)
  • BJT Amplifiers
  • Field Effect Transistor (FET)
  • FET Amplifiers
  • Frequency Response
  • Op-Amp Applications and circuits design
  • Filter and Oscillators
8. Course Assessment
Course assessment Weight score (%) Assessment tools Date
Examination 1 30 midterm examination
Examination 2 30 midterm examination
Final Examination 30 final examination
Projects and Assignments 10 assignment
The grading table
Grading Rank
>= 80% A
74% - 79% B+
67% - 73% B
59% - 66% C+
52% - 58% C
46% - 51% D+
40% - 45% D
0% - 39% F

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