
Explore the Proteus environment to capture schematics, layout boards, and simulate circuits with AC/DC analysis, graphs, and diverse generators.
Design and simulate a Proteus rectifier circuit that selects negative or positive peak outputs using diodes, resistors, and a SPDT switch, with a sinusoidal input and oscilloscope observation.
Design and simulate a simple led charger circuit using a 5-volt dc source, a diode, and a capacitor in Proteus, then observe capacitor charging and voltage behavior.
Explore dc analysis and dc sweep, ac analysis and ac sweep, plus frequency and noise analyses in Proteus by simulating a common-emitter transistor amplifier, measuring voltages, currents, and gain.
Learn to perform ac analysis, dc sweep, and frequency and noise analyses in Proteus for electronic circuit simulations.
Simulate a digital circuit in Proteus to convert a b c d input into seven-segment outputs, using a not gate and an enable pin to drive the display.
Design and simulate a half-adder in proteus, configuring inputs with clock sources, and analyze sum and carry outputs using voltage probes and graphs.
Demonstrate a microcontroller based counter using ATmega16 in Proteus, with LCD display, pushbuttons for increasing, decreasing, and reset, and simulate timing and LCD output.
Simulate a motor controller circuit in Proteus using an ATmega microcontroller, wiring ground, DC voltage, and push buttons to observe motor operation and timing.
Learn to simplify circuit connections in Proteus by using terminal naming and bus wiring to replace confusing wires, comparing default input/output setups, and creating clear, labeled paths for components.
Learn to simplify schematics in Proteus by creating a two-input, two-output subcircuit for a repeated block, name its pins, and simulate multiple instances to verify circuit behavior.
Learn to modify schematic and PCB devices in Proteus by adding and reconfiguring pins, changing components like LCD and keypad, updating libraries, and saving new device designs.
Explore the Proteus pcb environment, design a pcb file from a differential amplifier circuit, learn to place components, connect with auto routing, and visualize a 3d board preview.
In this course,different simulation methods of digital and analogue as we all as circuit analysis method such as Ac,Ac Sweep, Dc,DC Sweep,Noise and Frequency will be taught.
And also, we taught how to simulate the AVR microcontroller with a few examples. And at the end, we look at the PCB designing capabilities of the software