Electronic Device and Circuits
Past examination question papers and complete curriculum syllabus for Electronic Device and Circuits (ENEX 151), Bachelor in Electrical Engineering Semester 2 under Institute of Engineering (IOE), Tribhuvan University.
Past Question Papers (PDF)
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IOE Past Examination Paper
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Most Frequently Asked Questions
Top recurring IOE board exam questions for Electronic Device and Circuits with verified mark schemes, formula notation, and recurrence frequency.
The Bipolar Junction Transistor (BJT)
4 QuestionsField-Effect Transistor
5 QuestionsOperational Amplifier Circuits and Oscillator
8 QuestionsOutput Stages and Power Amplifiers
5 QuestionsPower Supplies, Breakdown Diodes, and Voltage Reference
8 QuestionsCurriculum Syllabus & Course Topics
Sourced from TU curriculum portalChapter-wise Units & Micro-Syllabus Topics (5 Units)
1. The Bipolar Junction Transistor (BJT)
- 1.1Review of operation of the npn transistor in the active mode
- 1.2Review of graphical representation of transistor characteristics
- 1.3Analysis of transistor circuits at DC
- 1.4Graphical DC load line analysis
- 1.5Transistor as an amplifier ( r , r g ) e, m
- 1.6Biasing BJT for discrete-circuit design
- 1.7Small signal equivalent circuit models ( and T)
- 1.8Basic single-stage BJT amplifier configuration (C-B, C-E, C-C)
- 1.9Small signal analysis of amplifier
- 1.10Transistor as a switch – cutoff and saturation
- 1.11A general large-signal model of the BJT: The Ebers-Moll model
2. Field-Effect Transistor
- 2.1Structure and physical operation of the junction field-effect transistor
- 2.2Structure and physical operation of enhancement-type MOSFET
- 2.3Current-voltage characteristic of enhancement-type MOSFET
- 2.4The depletion-type MOSFET
- 2.5Biasing in MOS amplifier circuits
- 2.6MOSFET circuits at DC
- 2.7MOSFET as an amplifier (Common source)
- 2.8MOSFET and CMOS as logic circuits
3. Operational Amplifier Circuits and Oscillator
- 3.1Review of basic principles of sinusoidal oscillator
- 3.2Review of Op-Amp square and triangular, RC oscillator circuits
- 3.3LC and crystal oscillators
- 3.4Integrated circuit timers
- 3.5Precision rectifier circuits
- 3.6Bias circuits suitable for IC design
- 3.7The Widlar current source
- 3.8The differential amplifier
- 3.9Active loads
- 3.10Output stages
4. Output Stages and Power Amplifiers
- 4.1Classification of output stages
- 4.2Class A output stage
- 4.3Class B output stage
- 4.4Class AB output stage
- 4.5Biasing of class AB output stage
- 4.6Power BJT’s
- 4.7Transformer-coupled push-pull stage
- 4.8Tuned amplifiers
5. Power Supplies, Breakdown Diodes, and Voltage Reference
- 5.1Unregulated power supply
- 5.2Zener regulated power supply
- 5.3Zener diodes, bandgap voltage reference, constant current diodes
- 5.4Transistor shunt/series voltage regulator
- 5.5Improving voltage regulator performance with feedback
- 5.6IC voltage regulator
Examination Scheme & Marks Distribution
Evaluation Structure
- Final Board Theory Exam: 60 Marks (Pass mark: 24)
- Internal Assessment: 40 Marks (Pass mark: 16)
- Practical / Lab Exam: 25 or 50 Marks (Continuous lab evaluation + viva, where applicable)
* This is the general current IOE 60/40 scheme; verify course-specific details in the syllabus above.
Exam Preparation Guidelines
- Review the available past examination paper to understand question styling, typical derivation topics, and marks allocation.
- Practice drawing labeled circuit schematics, deriving transfer functions, and showing systematic mathematical steps.
- Structure answers with labeled diagrams, concise bullet points, and highlight final answers in numerical solutions.
Frequently Asked Questions (Electronic Device and Circuits)
Q: How can I download Electronic Device and Circuits past question papers?
You can preview or download the Electronic Device and Circuits question papers (PDF) directly using the built-in viewer on this page with zero redirects or paywalls.
Q: What is the pass mark for Electronic Device and Circuits?
The general current scheme is a 60-mark final theory exam and a 40-mark internal assessment, with pass marks of 24 and 16. Verify the course-specific syllabus above.
Q: Where can I find the complete syllabus for this subject?
The available chapter-wise syllabus and topic breakdown is indexed in the Syllabus section above, with links to the curriculum PDF source.