COURSE OUTCOME:
CO1: Students will be able to construct half wave, full wave and bridge rectifier circuits and voltage
regulator circuit.
CO2: Students will be able to design transistor based single stage R-C coupled voltage amplifier,
differential amplifier and different classes of power amplifier circuit with given specification.
CO3: Students will be able to design transistor-based RC oscillator (Wien bridge and RC phase shift
oscillator) circuit.
CO4: Students will be able to construct astable and mono-stable mode timer circuit using IC 555.
CO5: Students will be able to design Integrator, differentiator and low pass & high pass active filter circuit using Op-Amp (I.C-741)
Prerequisites: A basic course in Electronics and Communication engineering Progresses from the fundamentals of electricity, active and passive components, basic electronics laws like Ohm’s law, Ampere’s law.
List of Experiment as per Autonomy Syllabus
Any 8 Experiments has to be done
1. Design of RC coupled amplifier in CE mode & study of it’s frequency response using BJT.
2. Design of RC Phase shift oscillator using OpAmp and measurement of its output frequency.
3. Design of Wien bridge oscillator using BJT and measurement of its output frequency.
4. Design of class A & class B push-pull power amplifiers and measurement of its power conversion efficiency.
5. Design of single stage voltage amplifier & study of it’s frequency response using JFET.
6. Design of differential amplifier & study of it’s frequency response using BJT.
7. Design of practical Integrator using OPAMP (IC-741) and study of its frequency response.
8. Design of practical Differentiator using OPAMP (IC-741) and study of its frequency response.
9. Design of low pass and high pass active filter using OPAMP (IC-741) and study of its frequency response.
10. Design of band-pass active filter using OPAMP (IC-741) and study of its frequency response.
11. Design of Schmitt trigger circuit using OPAMP (IC-741) and study of its voltage transfer characteristic.
12. Design of astable and monostable multivibrator using timer (IC-555) and measurement of its duty cycle.
13.Innovative Experiment
Beyond Syllabus
1. Design & implementation of diode clipping circuits.
2. Design & implementation of diode clamping circuits