You have a 3.3 volts regulator and a 5 volt regulator and a USB input there’s a reset switch that allows you to reset the microcontroller to start your program all over again. That allows you to access the information and respond to that information to the outside world. You know your imagination, how you want this microcontroller to react to the outside world, whatever you’re measuring and whatever you’re controlling, so you’ve got the microcontroller chip, and then you have the basic support circuitry for that chip. You don’t have to know complicated, C or assembling language, and you write programs and you use the microcontroller as the brains of the operation and teach it or tell it to read signals from the outside world and respond to those signals to paint on. So this is a microcontroller development platform and you use this board, along with the Arduino IDE, integrated development environment, software, to write programs that are sort of intuitive. I believe it operates it as a clock of 16 megahertz. Now, at the heart of this board, is the Atmel microcontroller chip it’s, the largest chip on the board for the oh? No, it is the atmega 328p, and that has 32 kilobytes of memory. This is the box then initially is in and there’s the Arduino. Take a quick look at the Arduino Uno board that came with the Arduino starter kit that I purchased.
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