![]() Similarly, you can add AVR-C code directly into your Arduino programs if you want to. The language can be expanded through C libraries, and people wanting to understand the technical details can make the leap from Arduino to the AVR C programming language on which it's based. Open source and extensible software - The Arduino software is published as open source tools, available for extension by experienced programmers. For teachers, it's conveniently based on the Processing programming environment, so students learning to program in that environment will be familiar with how the Arduino IDE works. Simple, clear programming environment - The Arduino Software (IDE) is easy-to-use for beginners, yet flexible enough for advanced users to take advantage of as well. Most microcontroller systems are limited to Windows. The least expensive version of the Arduino module can be assembled by hand, and even the pre-assembled Arduino modules cost less than \$50Ĭross-platform - The Arduino Software (IDE) runs on Windows, Macintosh OSX, and Linux operating systems. Inexpensive - Arduino boards are relatively inexpensive compared to other microcontroller platforms. Arduino also simplifies the process of working with microcontrollers, but it offers some advantage for teachers, students, and interested amateurs over other systems: All of these tools take the messy details of microcontroller programming and wrap it up in an easy-to-use package. Parallax Basic Stamp, Netmedia's BX-24, Phidgets, MIT's Handyboard, and many others offer similar functionality. There are many other microcontrollers and microcontroller platforms available for physical computing. Anyone - children, hobbyists, artists, programmers - can start tinkering just following the step by step instructions of a kit, or sharing ideas online with other members of the Arduino community. Makers, of course, use it to build many of the projects exhibited at the Maker Faire, for example.Īrduino is a key tool to learn new things. Designers and architects build interactive prototypes, musicians and artists use it for installations and to experiment with new musical instruments. Teachers and students use it to build low cost scientific instruments, to prove chemistry and physics principles, or to get started with programming and robotics. ![]() ![]() The Arduino software is easy-to-use for beginners, yet flexible enough for advanced users. Thanks to its simple and accessible user experience, Arduino has been used in thousands of different projects and applications. As soon as it reached a wider community, the Arduino board started changing to adapt to new needs and challenges, differentiating its offer from simple 8-bit boards to products for IoT applications, wearable, 3D printing, and embedded environments. A worldwide community of makers - students, hobbyists, artists, programmers, and professionals - has gathered around this open-source platform, their contributions have added up to an incredible amount of accessible knowledge that can be of great help to novices and experts alike.Īrduino was born at the Ivrea Interaction Design Institute as an easy tool for fast prototyping, aimed at students without a background in electronics and programming. Over the years Arduino has been the brain of thousands of projects, from everyday objects to complex scientific instruments. To do so you use the Arduino programming language (based on Wiring), and the Arduino Software (IDE), based on Processing. You can tell your board what to do by sending a set of instructions to the microcontroller on the board. Arduino is an open-source electronics platform based on easy-to-use hardware and software.Īrduino boards are able to read inputs - light on a sensor, a finger on a button, or a Twitter message - and turn it into an output - activating a motor, turning on an LED, publishing something online.
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