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Multisim GUI Training
Rating: 4.4 out of 5(2 ratings)
3,783 students

Multisim GUI Training

Circuit designing, simulations and performance analysis on the circuits using MultiSim Software
Last updated 1/2024
English
English [Auto],

What you'll learn

  • How to use Multisim software to design and simulate differential amplifier circuits.
  • The difference between ideal and non-ideal differential amplifiers and how to incorporate these differences in circuit design.
  • How to apply the concepts and skills learned in this course to real-world circuit design problems.
  • How to incorporate feedback into differential amplifier circuits to improve their performance.

Course content

1 section15 lectures3h 11m total length
  • Introductions to Menus GUI and Toolbars12:44

    Explore the Multisim gui, including menus, toolbars, and the design toolbox for schematics and pcb design. Place components, edit circuits, run analog simulations, and view waveforms with probes and oscilloscopes.

  • Create a New Hierarchical Block12:48

    Create and connect a new hierarchical block and subcircuit in Multisim, annotate with graphics, run mixed-mode simulations with instruments, and transfer designs to Ultiboard.

  • Understanding Design Toolbox14:51

    Explore the Multisim GUI, learning to use the design toolbox, place components, run simulations, and manage templates, toolbars, and instrument panels to create and analyze circuits.

  • Working with and Understanding the File Menu11:12

    Navigate the file, edit, and view menus to open and save new designs, work with samples and projects, and run simulations with spice netlists in Multisim GUI training.

  • Working and Understanding Edit Menu12:05

    navigate the multisim edit and view menus, use zoom and grid options, inspect spice netlists and pin connections, set circuit parameters, explore measurement tools, and work with graph view.

  • Working and Understanding View Menu7:07

    Build a simple transistor circuit in the Multisim GUI by placing components and wiring with Vcc and ground, using file view menus. Save the project and inspect the spice netlist.

  • Placing Different Types of Components on the Design Page12:11

    Place diverse components on the design page via the place menu or right-click. Explore the master database to select diodes, transistors, TTL/CMOS, and connect them with buses, texts, and graphics.

  • Connecting the Components Using Bus15:44

    Learn to place components, wires, and probes in Multisim GUI, use input and hierarchical connectors, and create sub circuits and sub sheets for diode bridge and resistor examples.

  • Help Menu18:37

    Explore how to create and manage circuits in Multisim, including subcircuits and ladder diagrams, and use the help and window menus to access components, comments, and analysis and reports.

  • Run Different Instruments7:47

    Explore running circuit simulations with different instruments in Multisim, learn to use the convergence assistant, and generate reports such as schematic statistics, net list, component detail, and bill of materials.

  • Identifying Simulation Error Using Log Trails10:45

    Identify simulation errors in Multisim by running netlist electrical checks, connecting probes, and inspecting measurements from a multimeter and distortion analyzer for total harmonic distortion.

  • Loading and Saving Simulation Setting15:25

    Connect instruments, run spectrum analyzer and distortion analysis, observe the dc operating point, adjust settings, and save or load simulation configurations for future runs.

  • Working with Component and Circuit Wizards17:37

    Learn the Multisim GUI basics by using component and circuit wizards, Spice netlist viewer, and electrical rules checks to design and verify circuits.

  • Working with Spice Netlist Viewer11:52

    Explore breadboard design in multisim, placing components with footprints, wiring circuits, and validating prototypes on breadboard before printed circuit board production, using spice netlist viewer checks and global options.

  • Working with Electric Rules Check10:40

    Run electric rules check and DRC markers in Multisim, connect instruments like oscilloscope and multimeter, and analyze schematic statistics and netlists to validate circuits before transient simulation.

Requirements

  • Students should have a basic understanding of electronic circuits, including basic circuit analysis techniques and circuit elements such as resistors, capacitors, and transistors. Familiarity with Multisim software is helpful but not required.

Description

This Multisim training course covers a basic understanding of User Interface, schematic capture and UI and complete circuits containing both analog and digital components. The topic covers the design process, placing and wiring components, learning about organized menus, toolbox design and accessing toolbars (creation, adding/remove, display). The course covers the basics of learning programs on schematic capture followed by simulation, virtual instruments, and analyses & graphs finally results and post-processing.

You will learn how to create a circuit button using RF Filter by placing components like capacitors, AC voltage. Setting your parameters to achieve filtering and viewing simulation.

In this Multisim training course, you will learn about schematic drawings with components and wiring. You will learn global preferences, sheet properties and inserting title block & adding subcircuits. You will also walk through learning drawing Schematic sheet and power supply.

This Multisim course works through a basic introduction to Microprocessor units. Here students were taught the use of each element of the software tool. You will be trained on Microcontrollers such as 8051 a and 8052 and PIC 16F84 to program in assembly code, designing advanced peripherals like ROM, RAM chips, LCD and others and designing Motherboards. This Multisim training course covers the performance analysis of Multisim. The course goes with an introduction to multi sim schematics, circuit voltages for variables.

Who this course is for:

  • Electronics enthusiasts looking to deepen their understanding of differential amplifiers and their applications.
  • Professionals working in the electronics industry who need to design or analyze differential amplifier circuits.