Basic Electronics

Lesson Plan
Name of the Faculty : Ms. SHASHEE LATA
Discipline : CE
Semester : 3rd
Subject : Basic Electronics
Lesson Plan Duration : July-dec 2018
Week Theory Practical
Lecture Day Topic Practical Day Topic
1st 1 Diodes and Applications covering, Semiconductor Diode - Ideal versus Practical 1 To  study   and  demonstrate  basic   electronic  components,  Diode,  Transistor, Resistance, Inductor and capacitor.
2 Resistance Levels, Diode Equivalent Circuits, Load Line Analysis
3 Diode as a Switch, Diode
as a Rectifier, Half Wave and Full Wave Rectifiers with and without Filters
4 Breakdown
Mechanisms, Zener Diode – Operation and Applications
2nd 5 Opto-Electronic Devices – LEDs,
Photo Diode and Applications
2 To  study  and  demonstrate  resistance  color  coding,  measurement  using  color code  and multimeter and error calculation considering tolerance of resistance.
6 Silicon Controlled Rectifier (SCR) – Operation, Construction,
Characteristics, Ratings, Applications
To  study  and  demonstrate  Multimeter  and  CRO-front  panel  controls,  description  of  block diagram of CRT and block diagram of CRO
7 Transistor Characteristics covering
8 Bipolar Junction Transistor (BJT) –
Construction, Operation, Amplifying Action
3rd 9 Common Emitter 3 To study and demonstrate Vp(peak voltage),Vpp(peak to peak voltage), Time, frequency and  phase using CRO
10 Common Base and Common
Collector Configurations
11 Operating Point, Voltage Divider Bias Configuration
12 Field Effect
Transistor (FET) – Construction, Characteristics of Junction FET
4th 13 Depletion and
Enhancement type Metal Oxide Semiconductor (MOS) FETs
4 Introduction  to  function  generator.  Functions  of  front panel  controls  and  measurement  of different functions on CRO
14 Introduction to CMOS circuits
15 Transistor Amplifiers and Oscillators covering, Classification
16 Small Signal
Amplifiers – Basic Features, Common Emitter Amplifier
5th 17 Coupling and Bypass Capacitors 5 Testing of components using multimeter and CRO like diode, transistor, resistance capacitor, Zener diode and LED.
18 Distortion, AC Equivalent Circuit
19 Feedback Amplifiers – Principle, Advantages of Negative
Feedback
20 Topologies
6th 21 Current Series and Voltage Series Feedback Amplifiers 6 To study and demonstrate rectification, half wave, Full wave and bridge rectifier. Fabrication, assembly and waveform observation
22 Oscillators –
Classification, RC Phase Shift
23 Wien Bridge, High Frequency LC
24 Non-Sinusoidal type
Oscillators
7th 25 Operational Amplifiers and Applications covering 7 To  study  and  demonstrate  variable  DC  regulated power  supply,  function  of  controls  and  DC measurement using multimeter and CRO
26 Introduction to Op-Amp
27 Differential Amplifier Configurations, CMRR, PSRR, Slew Rate; Block Diagram, Pin
Configuration of 741 Op-Amp
28 Characteristics of Ideal OpAmp, Concept of Virtual Ground