
Master the Peace Prize (PSpice) for circuit design, simulation, and advanced analysis, navigate its environment, integrate with other design tools, and apply skills to a final design project with quizzes.
Explore the overview of PSpice software, its capabilities for analog, digital, and mixed-signal circuit simulation, analysis, and optimization, including HDL AMS, component libraries, and CAD integration.
Download and install the PSpice student version 9.1, configure the schematic capture, and navigate the PSpice environment; explore essential tools, hotkeys, and the OrCAD demo to begin circuit simulations.
Navigate the PSpice environment to create, save, and export schematics, manage libraries and symbols, and set up simulations with netlists, electrical checks, grid, and zoom views.
Explore basic electrical components, including resistors, capacitors, inductors, DC and AC sources, switches, and transformers. Learn schematic capture and library components to draw, edit, and generate DC/AC waveforms in circuits.
Explore schematic capture in the PSpice environment, building RL and RLC circuits with DC and AC sources, switches, and library components for accurate spice simulation.
Set up and run DC, AC, and transient simulations in PSpice; interpret output files and waveforms and explore advanced techniques for reliability, such as temperature and Monte Carlo analysis.
Learn to build and analyze an RC circuit in PSpice, placing components, wiring the schematic, and performing transient and ac sweep analyses to study Vin, Vout, and gain.
Assemble an RC circuit in PSpice, set Vin and Vout, run transient and ac sweep analyses, view and customize waveforms, and analyze gain.
explore advanced spice simulations with parameter sweeps, temperature analysis, and Monte Carlo reliability studies, linking theory to practical RC, RLC and transistor circuits for robust design.
Build a BJT circuit in PSpice, run a dc sweep and temperature analysis, observe waveforms, customize traces, and paste the plots into a Word document.
Explore digital components and circuits, including logic gates, flip flops, and counters, and learn to set up mixed signal simulations with optimization and troubleshooting of digital analog integration.
Explore designing and simulating digital circuits in PSpice, including logic gates, flip flops, and 74-series chips, with digital waveforms, mixed signal analysis, and universal nand/nor gate techniques.
Explore advanced mixed signal analysis, covering complex digital analog interactions, troubleshooting methods, and optimization of adc, dac, mcus, pwm, and signal integrity in integrated systems.
Place the JK flip-flop and digital stimuli in the schematic, connect the clock, and perform mixed-signal analysis to generate and view the Q and Q-bar waveforms via transient simulation.
Design a four-bit synchronous up counter using the 74193, a four-bit binary up-down counter. Initialize with preset or clear and connect the separate up clock inputs to the 7474.
Explore sensitivity and optimization analyses in PSpice, assessing component tolerance with Monte Carlo and parameter sweeps to optimize gain, bandwidth, power, and signal integrity.
Build a sensitivity analysis circuit in PSpice and run DC and Monte Carlo analyses. Adjust resistors, capacitors, and tolerances, then review current, voltage, power, and temperature results.
Explore custom components, behavioral modeling, and advanced device models in PSpice to tailor circuit behavior and enhance simulation accuracy across semiconductor and RF designs.
Learn practical PSpice circuit design using behavioral modeling and E value components to build integrators, differentiators, and filters, then perform rectification and transient and AC analyses.
Design rlc circuit with 5% resistor and 10% capacitor/inductor tolerances, perform sensitivity analysis in pspice, and optimize a transistor amplifier (no op amp) for gain and bandwidth via piecewise optimization.
Explore real-world case studies of power supplies, amplifiers, and filters, detailing design, analysis, and simulation workflows. Learn troubleshooting strategies and Spice tools for reliable, efficient circuits.
design and simulate op-amp circuits, including non-inverting, inverting, adder, and subtractor configurations, using pspice to place components, set sources, and perform transient and ac analyses.
Learn troubleshooting and debugging techniques for PSpice circuit simulations, diagnosing convergence and stability issues, using measurement tools and datasheets, and applying step-by-step verification with ideal then real models.
Learn to design power supplies, amplifiers, and filters in PSpice, meeting 12 v input, 5 v output at 1 a, a 1 khz sinusoidal amplifier with gain 10, and simulate.
Integrate PSpice with KiCad to design and simulate pcb layouts, routing, and footprints, using open-source cad tools to generate gerber files for manufacturing.
Design and simulate a full wave rectifier by building its schematic and PCB in KiCad, adjust components, run transient analysis, and generate Gerber and BOM files for manufacturing.
Master the Peace Prize from basics to advanced features, and apply simulations in real world scenarios with a final project.
Become a PSpice professional and learn one of employer's most requested skills nowadays.
This comprehensive course is designed so that Electrical and Electronics Engineers, Technical Instructors and Trainers, Project Managers in Electronics, Engineering Students, Researchers... can learn PSpice from scratch to use it in a practical and professional way. Never mind if you have no experience in the topic, you will be equally capable of understanding everything and you will finish the course with total mastery of the subject.
After several years working as an Engineers, we have realized that nowadays mastering PSpice is very necessary to simulate, analyze, and validate circuit designs before physically building them. Knowing how to use this tool can give you many job opportunities and many economic benefits, especially in the world of Electronics.
The big problem has always been the complexity to perfectly understand PSpice requires, since its absolute mastery is not easy. In this course we try to facilitate this entire learning and improvement process, so that you will be able to carry out and understand your own projects in a short time, thanks to the step-by-step, detailed and hands-on examples of every concept.
With 9 exclusive hours of video, this comprehensive course leaves no stone unturned! It includes both practical exercises and theoretical examples to master PSpice. The course will teach you how to design, simulate, analyze, and optimize electronic circuits using PSpice for real-world applications in a practical way, from scratch, and step by step.
We will start with the installation and setup of the needed work environment on your computer, regardless of your operating system and computer.
Then, we'll cover a wide variety of topics, including-
Introduction to PSpice and course dynamics
Install, configure, and explore the PSpice environment
Learn essential components and circuit design
Run basic and advanced circuit simulations
Design and analyze digital and mixed-signal circuits
Perform sensitivity, optimization, and advanced modeling
Work on practical designs and troubleshooting
Integration with KiCad
Mastery and application of absolutely ALL the functionalities of PSpice
Quizzes, Practical exercises, complete projects and much more!
In other words, what we want is to contribute our grain of sand and teach you all those things that we would have liked to know in our beginnings and that nobody explained to us. In this way, you can learn to build and manage a wide variety of projects and make versatile and complete use of PSpice. And if that were not enough, you will get lifetime access to any class and we will be at your disposal to answer all the questions you want in the shortest possible time.
Learning PSpice has never been easier. What are you waiting to join?