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Module-I (10 Hours)
DC biasing of BJTs: Load lines, Operating Point, Fixed bias and Voltage-divider bias. DC
voltage feedback, Bias stabilization, Design of bias.
Small Signals Modeling of BJT and their analysis: The r transistor model, Hybrid model,
determination of h-parameters, Low frequency small signal analysis of CE, CC and CB
Module-II (8 Hours)
DC Biasing of FETs: Fixed bias, Self bias and Voltage divider bias Configuration, Design
of bias. Small
Signal Modeling and Analysis of FETs: Small Signal Model, Analysis of JFET C-S and CD
System Approach-Effects of RS and RL: Two port system, Individual and combined effects
of RS and RL
on CE, Emitter follower and C-S networks.
Module-III (10 Hours)
BJT and JFET Frequency Response: General frequency considerations, Low frequency
analysis of R-C
combination in single stage BJT or FET amplifier- Bode Plot, Lower Cut off frequency for
the system, Low
frequency response of BJT and FET amplifiers, Miller Effect Capacitance, High frequency
modeling of BJT
and FET, High frequency analysis of BJT and FET amplifiers-Bode plot, Square Wave
testing of amplifiers.
Compound Configurations: Cascade, Cascode and Darlington connections, C-MOS
Module-IV (12 Hours)
Feedback and Oscillator Circuit: Feedback concept, Type of feedback circuits, Practical
circuit, Analysis of voltage series feedback type amplifier, Effects of negative feedback,
Barkhausen Criterion of oscillation, Oscillator operation, R-C phase shift oscillator, Wien
Crystal Oscillator, Hartley & Collpit circuits.
Operational Amplifiers: Equivalent Circuit of OP-AMP circuits, Input impedance, OPAMP
Specifications, DC offset parameters, frequency parameters, Gain-bandwidth, Differential
and Common mode
operation, op. amp. Applications: Constant gain multiplier, Voltage summing, Integrator,
Power Amplifiers: Definition of A, B and C types, Conversion efficiency, Distortion
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