Analog Electronics and Linear Integrated Circuit Lab
Course Code 1BECL306
Scheme 2025
Type of Course PCCL
Semester III
Teaching Hours/Week (L:T:P) 0:0:2
CIE Marks 50
Total Hours of Pedagogy (L:T:P:SL&TW) 0:0:28:2
SEE Marks 50
Credits 1
Total Marks 100
Examination type (SEE) Practical
Exam Hours 3
PART – A
FIXED SET OF EXPERIMENTS
1. Design and Set-up the BJT Common Emitter Voltage Amplifier with and Without Feedback and Determine the Gain, Bandwidth, Input and Output Impedance.
2. Design and Set-up BJT/ FET Based I) Colpitts Oscillator, II) Crystal Oscillator
3. Realize BJT Darlington Emitter Follower and Determine Gain, Input and Output Impedances.
4. Design 4-Bit R - 2R OP-Amp Digital to Analog Converter: I) For A 4-Bit Binary Input Using Toggle Switches, II) By Generating Digital Inputs Using Mod-16
5. Design and Test the Second Order Active Filters and Plot the Frequency Response: I) Low Pass Filter, II) High Pass Filter
6. Design and Testing of Precision Rectifiers: I) Half-Wave Precision Rectifier, II) Full-Wave Precision Rectifier
7. Design and Test Monostable and Astable Multivibrator Using 555 Timer.
8. Design and Test a Regulated Power Supply Using IC 7805 And IC 7905.
PART – B
OPEN ENDED EXPERIMENTS
Open-ended experiments are a type of laboratory activity where the outcome is not predetermined and students are given the freedom to explore, design, and conduct the experiment based on the problem statements as per the concepts defined by the course coordinator. It encourages creativity, critical thinking, and inquiry-based learning.
1. Concept 1 Design a FET Voltage Series Feedback Amplifier and Determine the Gain, Input and Output Impedances.
2. Concept 2 Design and Experimental Study of a Class-C Tuned Amplifier
3. Concept 3 Design of a Schmitt Trigger for Given UTP And LTP.
4. Concept 4 Design and Testing of a Sample and Hold Circuit.
Suggested Learning Resources:
Text books:
1. Electronic Devices and Circuits, David A Bell, 5th Edition, Oxford, 2018.
2. Op-amps and Linear Integrated Circuits, Ramakanth A Gayakwad, Pearson Education, 4th Edition.
3. Basic electronics, D.P Kothari and I J Nagrath, McGraw Hill Education Pvt ltd, 2015.
4. Robert L. Boylestad, Louis Nashelsky, “Electronic Devices and Circuit Theory", 11th Edition, PHI, 2016.

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