
In this video students will be able to know what all be taught to them in this entire coursework.
In this video students will be able to know from where they need to download the software. A brief hint has also been provided on how the course will be taught.
In this video students will be able to understand the diodes, how to select the diode from the options.
They will be able to do the IV-analysis by the end of this lecture.
In this video students will learn how to draw the basic circuits using Diode.
In this lecture students will be able to learn about the BJT and its IV-Analysis.
Students will be able to learn the basic circuit design and analysis using BJT Circuit.
In this video students will be able to learn the technique to do the BJT - Analysis of a transistor in Multisim.
In this video circuit design of half wave rectifier has been shown. The description of the circuit and its characterisation has also been performed.
In this video lecture students have been informed about clipper and clamper circuits.
In this video lecture students will be able to learn RC Circuit simulation, its design and the analysis.
Students will be able to know understand the procedure that should be followed to simulate a single stage amplifier.
The analysis of the circuit and its basics has also been explained.
In this video slew rate analysis has been shown.
Slew rate calculation technique along with the analysis has also been explained.
From this video lecture students will be able to learn the basics of voltage regulator circuit. They will be able to understand operation, its simulation, design and analysis.
This video is the continuation of the voltage regulator circuit. From this video students will be able to understand why Zener diode is place at the output terminal. They will also be able to know the method and technique of placing a LED.
In this video, students will be able to gain a solid understanding on differential amplifier circuit design.
In this video lecture students will be able to learn inverting , summing and differential amplifier circuit design on Multisim .
In this video students will be able to learn the circuit design of Integrator and Differentiator in Multisim .
This video guides students in designing the RLC Circuit .
In this video students will be able to learn basic digital circuit design.
In this video students will be able to learn the method by which they can design amplifier circuit. They will also be able to learn how to connect potentiometer in the circuit to control the input voltage to the amplifier.
In this video students will be able to learn how to perform the IV-Analysis of CMOS.
In this video students will be able to learn the method by which they can implement CMOS based NOR Gate.
In this video students will be able to understand the methodology by which they can design the AND Gate in Multisim.
In this program, basic circuit with voltage and resistor has been shown.
Firstly, the program has been shown. Afterwards, the auto circuit design has been shown.
In this video, basic circuit with a little complication has been shown so as to increase the capability of students.
In this video implementation of AC voltage source has been shown. Firstly, the method in which the program has to be written is demonstrated and further the auto circuit designing has been shown.
In this video lecture, the main focus has been put on the BJT programming . Rest has been shown as per the above two programs of the Spice Modeling.
In this section students will learn how they can design LED Detector circuit using Multisim. This has slides on its operation as well.
In this video lecture all the circuit's simulation, its analysis has been revised.
This video is for the farewell.
This coursework is on Multisim. In this coursework students will get opportunities to simulate, design and analyse the analog and digital electronic circuits along with Spice Modeling.
Some of the circuits includes Slew Rate calculation circuit, RC Circuit, Voltage Regulator, Half wave rectifier, NOR Gate using CMOS, AND Gate etc.
In this coursework all the relevant materials related to Multisim has been included. Students will gain a comprehensive knowledge once they finish this coursework.
This coursework is two hours fifteen minutes long. So a serious engagement with this course will hardly take a day to have a firm grip on Multisim.
This course has been structured in the following ways :
1. Circuit design of Analog and Digital Circuits.
2. Circuit analysis .
3. Brief description of each circuit and its operational methodology.
4. Spice modeling .
Right from beginners to those who are interested in quick refresh of Multisim should take this course. This coursework has everything that a beginner wish i.e. circuit design, analysis, description of the circuit and spice modeling. For those who wish a quick refresher for them this coursework has been made as short as possible.
So, this coursework should be taken by all those who has a strong desire to understand electronics in details.