Electronic Circuits: Laboratory course

Course Information
TitleΕΡΓΑΣΤΗΡΙΟ ΗΛΕΚΤΡΟΝΙΚΩΝ ΚΥΚΛΩΜΑΤΩΝ / Electronic Circuits: Laboratory course
CodeΗΤΕ501
FacultySciences
SchoolPhysics
Cycle / Level1st / Undergraduate
Teaching PeriodSpring
CoordinatorSpyridon Nikolaidis
CommonNo
StatusActive
Course ID40003082

Programme of Study: PROGRAMMA SPOUDŌN 2022

Registered students: 9
OrientationAttendance TypeSemesterYearECTS
KORMOSElective Courses845

Class Information
Academic Year2025 – 2026
Class PeriodSpring
Faculty Instructors
Class ID
600285162
Type Of Offer
  • Disciplinary Course
Course Type 2021
Specialization / Direction
Course Type 2016-2020
  • Scientific Area
Course Type 2011-2015
Specific Foundation / Core
Mode of Delivery
  • Face to face
Digital Course Content
Language of Instruction
  • Greek (Instruction, Examination)
Prerequisites
Required Courses
  • ΗΤΥ502 Electronics Laboratory
General Prerequisites
The laboratory includes the implementation of advanced electronic circuits, thus the experience of instrument usage, and the methodology of study, implementation and measurement based evaluation of the basic circuits of the "Electronics Laboratory" is considered necessary for the successful attendance of the course.
Learning Outcomes
With the successful completion of the course, students will: - Deepen their understanding of the operation of basic electronic components such as diodes, transistors, and operational amplifiers. - Understand the design and laboratory implementation of electronic circuits, such as power supplies, oscillators, signal generators, amplifiers, digital circuits, and microprocessors. - Gain experience in making measurements on electronic circuits.
General Competences
  • Apply knowledge in practice
  • Retrieve, analyse and synthesise data and information, with the use of necessary technologies
  • Adapt to new situations
  • Make decisions
  • Work autonomously
  • Be critical and self-critical
  • Advance free, creative and causative thinking
Course Content (Syllabus)
- Constant voltage power supply circuits (voltage rectifier and stabilizer using circuits with zener, bipolar transistors and special ICs), - Push-pull Power Amplifier, - Waveform generators with operational amplifiers, - Active Filters and other Circuits with Operational Amplifiers, - Digital circuits, - Introduction to microcontroller based circuits / systems (Arduino, applications), - Implementation of an electronic system (project).
Keywords
Voltage rectifier, Power amplifiers, Oscillators, Waveform generators, Digital circuits, Arduino
Educational Material Types
  • Notes
  • Book
Use of Information and Communication Technologies
Use of ICT
  • Use of ICT in Course Teaching
  • Use of ICT in Laboratory Teaching
  • Use of ICT in Communication with Students
Description
Use of simulator for circuit analysis. Use of slides and projector. Communication with students using elearning.
Course Organization
ActivitiesWorkloadECTSIndividualTeamworkErasmus
Lectures100.3
Laboratory Work521.7
Project321.1
Written assigments250.8
Exams10.0
Total1204
Student Assessment
Description
- Evaluation of the laboratory work - Evaluation of the written assignments
Student Assessment methods
  • Written Assignment (Summative)
  • Oral Exams (Formative)
  • Performance / Staging (Formative)
  • Labortatory Assignment (Formative)
Bibliography
Course Bibliography (Eudoxus)
Ανάπτυξη εφαρμογών με το Arduino, 3η έκδοση, Παπάζογλου Παναγιώτης, Λιωνής Σπύρος-Πολυχρόνης, 2021, Εκδόσεις: ΤΖΙΟΛΑ, ISBN: 9789604189373
Last Update
24-07-2025