Lesson Plan

Session No.TopicsMapped  CO
 Overview of the course, Discussion on Course Policy, Course Website and Blog, Importance of the course, Evaluation, Linkages of the course with other course/’s and Professional relevance 
 Introduction to Transistor Biasing and Common Emitter Amplifier1,2
 Schokley’s Equation, Concept of dc and ac resistance, transistor model using diode, basic modes of transistor operation1
 Common emitter amplifier design using dual supply1,2
 Common emitter amplifier design using single supply1,2
 Introduction to re model of transistor, re model of all types of biasing circuits and calculation of voltage gain, current gain, input impedance and output impedance1
 Differential Amplifier and Introduction to Operational Amplifiers1,3
 Evolution of differential amplifier1
 Differential amplifier circuit configurations, dc and ac analysis of dual input balanced output differential amplifier1
 Differential amplifier with swamping resistor, constant current bias, current mirror and level translator circuits1,3
 Equivalent circuit of op – amp, the ideal operational amplifier, concept of open – loop configuration and feedback and virtual short1,3
 Concept of negative feedback and comparison with positive feedback, Voltage series feedback amplifier & its analysis1,3
 Voltage shunt feedback amplifier & its analysis, frequency response of op-amp and its interpretation, concept of circuit bandwidth and slew rate1,3
 Op-amp Applications1,2,3
 I to V converter, current amplifier, summing amplifier, difference amplifier, DC and AC voltmeter using op-amp2,3
 Op-amp as intergrator its gain, frequency response and design, Op-amp as differentiator its gain, frequency response and design1,2,3
 Basic comparator, zero crossing detectors, inverting and non-inverting Schmitt trigger1,2,3
 Precision half-wave and full wave rectifiers, clipper and clamper using op-amps2,3
 Application of op-amp to interface 4-20 mA current source, bootstrap circuit, phase shifter2,3
 Timer Circuits and Signal Generators1,3
 IC 555 timer block diagram and its working1
 Astable, monostable, bistable multivibrators and voltage controlled oscillator using 555 timer1,3
 IC 565 Phased locked loop block diagram and its working1
 Various Applications of IC 5651,3
 IC 9400 block diagram and its working1
 IC 9400 as voltage to frequency converter1,3
 IC 9400 as frequency to voltage converter1,3
 Karnaugh Map and Design of Combinational Circuits 
 Expressions of Boolean function in SOP & POS forms, Merging & minimization of SOP and POS forms3
 Problems based on Karnaugh Map, Don’t care combinations3
 Design of half and full adder, the half & full subtractor2,3
 BCD adders, code converters2,3
 Parity bit generators and checkers, Multiplexers, Demultiplexers2,3
 Demultiplexers and their applications, Decoders, Encoders 2,3
 Flip Flops & Design of Sequential Circuits2,3
 S-R latch, gated latches, edge triggered S-R flip flop, JK flip flop, D flip flop, T flip flop.1,3
 Flip flop operating characteristics3
 Shift registers, controlled buffer register, Data transmission in shift register1,3
 serial in serial out; & parallel in parallel out shift register, serial in parallel out, parallel in serial out shift register1,3
 Asynchronous counters and their design1,3
 Synchronous counters and their design1,3
 Analog to Digital & Digital to Analog Converters1,3
 Digital to analog conversion, R-2R ladder type DAC, weighted resistor type DAC.1,3
 Weighted resistor type DAC.1,3
 Switched current source type ADC, Analog to Digital Conversion: Counter type A/D converter1,3
 successive approximation type ADC, Flash type ADC1,3
 Memories and programmable logic devices 
 Overview of different logic families and IC design technologies, Role of memory in computer system3
 memory types & terminology, types of RAM,3
 semiconductor RAM, memory expansion, sequential memories,3
 programmable logic devices and programmable logic array3
 Logic Families 
 Overview of different logic families and IC design technologies1,2
 RTL, I2L, ECL TTL1,2
 CMOS open collector gates.1,2

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