
Explore how current flows through a circuit like water and how voltage pushes electrons to light a lamp, while noting conductors, insulators, and safety.
breadboards prototype circuits by connecting wires to metal strips, with side power rails and a middle section where power runs across, in a simulator that mirrors real life.
Build your first circuit in TinkerCAD, wiring a 5-volt Arduino supply to an LED with a resistor on a virtual breadboard. Learn polarity and current-limiting concepts through a live simulator.
Learn how resistance slows current in circuits, read color-coded resistors with bands, multiplier, and tolerance, and apply Ohm's law to calculate voltage, current, and resistance.
Explore Arduino interrupts by attaching an interrupt on pin 2 to a button, flipping a volatile state in an ISR and updating pin 13, including rising, falling, and change modes.
Explore how capacitors store electric charge like a mini battery, smooth current, and stabilize dc circuits, with polarized and non-polarized types and their polarity requirements.
learn to write to an lcd display with Arduino using the liquid crystal library, wiring rs, rw, enable, and data pins, then print Hello World on a 16-column lcd.
Explore how to use a multimeter to measure voltage, current, and resistance, connect the plus and negative terminals, and read values from circuits and a nine-volt battery.
Explore inductors, metal coils that store energy in magnetic fields and resist current changes, measured in henries. A battery–inductor–lcd simulation demonstrates dimming and brightening as energy is stored and released.
Find the game here: https://www.tinkercad.com/things/2wAlu0KeqFN
This lecture will show you how to install KiCad which is the software we will be using for creating schematics and PCB's
create a KiCad schematic, place symbols and footprints, simulate in a 3d viewer, and generate a pcb layout with annotations and resistor sizing using ohm's law.
Design a schematic and pcb for a whack a mole module in KiCad, wiring an lcd display, resistors, and push buttons to ground via nine pins. Generate drill files.
Explore a suite of courses including 32-bit assembly for Intel and AMD, kernel development, a from-scratch C compiler, and Arduino firmware programming with emulators like Chip-8.
In this course you will learn all about the Arduino board and how to program it. We go through various stages in this course and you are taught all about the basics of electronics and how to program Arduino firmware with Embedded C.
If you have never even picked up a wire in your life then this course is for you, by the end of this course you will have all the experience you need to get a good grade in a university module that's based on Arduino. You will have the experience required to further your education and you will know how to create some really fun little exercises in Arduino.
Not to mention you will also understand the basics of electronics at a fundamental level and have experience with various components such as resistors, LED's, diodes, capacitors and much more.
You are taught all about schematics and how to read and write them, as well as how to create printed circuit boards from these schematics so that you can have your very own circuit board shipped to your home based on your design!
This course also includes a Whack A Mole Game where you are taught how to create your very own little Arduino electronic game using LED's and push buttons
This course has a 30 day money back guarantee if you are not satisfied you can have your money back