
Lecture on basic Electronic Terms such as Electricity, Circuit Symbols, and Electric Components
Understanding Resistors, Capacitors, Digital & Analog Multimeter, Voltage & Current, Close & Open Switch Configuration, Single & Dual Power Supplies, Reference Zero Voltages, AC/DC & Electrical Signals, Frequencies, Time Period, Sine, Square and Triangular Waves with Oscilloscope
Understanding Rectangular waves, Properties of Electrical Signals Amplitude, Peak to Peak Values, Resistor values and Color codes. Connecting Resistors in Parallel and Series, and Digital & Analog Multimeters. Measuring Current, Voltage, and Resistance. Quantities and units in Electronics along with verification of Ohm's Law
Introduction to Trainer/Console Electronic Parts on which the experiments will be performed.
Module # 1 Solar Cell
Module # 2 LDR
Module # 3 LAMPS
Module # 4 Seven Segment Display (SSD)
Module # 5 Resistors
Module # 6 LEDs
Module # 7 Buzzer
Module # 8 Moisture Sensor/Rain Detector
Module # 9 Thermistors NTC/PTC
Module # 10 Variable Resistor
Module # 11 Push Switches
Module # 12 Reed Switches
Module # 13 Logic Gates
Module # 14 Digital Multimeter
Module # 15 Windmill/Wind Turbine
Module # 16 Diode/Rectifier
Module # 17 Liver Switch
Module # 18 SPDT Switch
Module # 19 Heater Resistor
Module # 20 Variable DC & AC Power Source
Module # 21 Capacitor Charge & Discharge Network
Module # 22 Relay Operation
Measuring AC/DC Voltage & Resistance
Verification of Ohm's Law
Learn to measure current through a component
Measuring the output Voltage of Solar Cell
Measuring the DC output voltage and current of series combination of solar cells
Measuring the output DC voltage and current of parallel combination of solar cells
How the resistance of LDR (Light Dependant Resistor) varies with light and how parallel combination of LDRs become more sensitive to light
How to use lamps in parallel and series combinations, find voltage across and current through the circuit
How to measure Resistances
What kind of change occur during moisture in a moisture sensor / rain detector
How voltage divider networks are used with sensors and how VOUT is taken across the resistor
How voltage divider networks work with sensors when VOUT is taken across the sensors
How variable resistor is tested and how it is used with respect to a fixed common point (the center one)
How variable resistor is used with voltage divider network
Studying operation of a Reed Switch
Studying the behavior of Push Switches and make with them AND gate and OR gate
Studying behavior of Liver Switches
Studying power dissipation due to Heating of a resistor
Studying the behavior of SPDT switch
Studying properties of thermistors
How diode is used to convert AC current into DC and how we can test a diode
How to use LEDs (Light Emitting Diodes) and some of their applications
How SSD (Seven Segment Display) is used and how digits are formed
Demonstrating working principle of WIND MILL and DC Voltage generator
Learn the behavior of RELAY
Understanding Charging and Discharging of Capacitor
Learning Logic Gates
Designing a digital logic circuit for an Automobile Warning System
In today's world, almost every single gadget in our daily life contains electronic components and having understanding about how those components work can be pretty useful. Electronics has different branches such as Analog Electronics, Digital Electronics, Power Electronics, Communication Electronics and Instrumentation. It is used and implemented in almost every aspect of our life such as our homes, modes or transportation, communication, security, and in our healthcare. So, there is no denying in the importance of Electronics and this course has been made specifically to signify that importance as well as provide ample knowledge for a layman as well as an industrial electronic engineer.
There is an old saying "Learning By Doing" and this statement is true because a lot of times what you learn in simulated environment is completely different from actual physical work, and this course especially deals with such situation through physical experimentation on actual electronic components in real time.
Basic concepts are the building blocks for raising the structure of Electronics on it and this course will teach you many of the basic to advanced concepts along with their practical implementation.
This course equally facilitates students, hobbyist, technicians, engineers, and even non-technical personnel. In due course, a systematic learning procedure has been followed by firstly going through the book, then through demonstration on white paper, concept building on practical circuits, display and measurement on advanced test equipment, and then prototyping the layout on a training console. Through this systematic approach, each demonstration will facilitate the learning experience and significantly raise the knowledge intake along with a boost of confidence in the learner.
This course will also play a pivotal role for all the individuals working in the domain of troubleshooting, and maintenance of Electronic equipment related to automobile industry, domestic appliances, project designing, prototyping, electromedical, R&D, private/public sector, and universities.
Basic to advanced circuits are introduced in this course with maximum attention on different measurement techniques and physical testing so one can perform these experiments on their own.
What is different about this course?
Each lecture is taught in 4 steps
Reading through book
Explaining and solving the problem on a white paper
Using test equipment to verify the results such as demonstrating wave forms and wave shapes
Practical experimentation will be carried out on a trainer console where the results will be calculated and verified
Set of two readings material will be provided (Theory Book, Trainer Experiment Manual)
The theory book will provide you with complete knowledge about the theoretical concepts and formulation involved. The trainer experiment manual will provide you with the details regarding each individual experiment along with circuit diagrams and other necessary information.
30 detailed experiments are provided to completely understand the basic as well as advanced level of electronics for the first time.
LEARNING ELECTRONICS WASN'T THAT EASIER BEFORE !