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Arduino Certification Bundle: Kit & Exam

SKU AKX00020 Barcode 7630049201873 Show more
SKU AKX01020 Barcode 7630049202399 Show more
SKU AKX03020 Barcode 7630049201927 Show more
SKU AKX04020 Barcode 7630049202580 Show more
Original price €0
Original price €132,20 - Original price €132,20
Original price
Current price €132,20
€132,20 - €132,20
Current price €132,20
VAT included

Officially certify your knowledge of Arduino in the field of programming and electronics by taking the Arduino Certification exam.

Overview

The Arduino Certification exam + kit bundle includes an Arduino Starter Kit and access to the certification exam.
Developed in consultation with interaction designers and electronic engineering professionals as well as in regards to leading technology curriculum, the Arduino Certification exam assesses skills based upon exercises comprised of practical tasks from the Arduino Starter Kit.
To obtain the certificate, you will be requested to answer 36 questions over a period of 75 minutes.

Purchasing the bundle will grant you the Arduino Starter Kit and an activation code, which can be used to unlock 1 attempt at the Arduino Certification exam.

Purchasing the exam alone costs $30, and grants 1 attempt at the Arduino Certification

Once the code has been redeemed, you have one year to activate the exam, otherwise the code will become invalid.

The exam is available in English. Spanish, Italian, German and Chinese.
You can try the demo to have a closer look at how the exam will be.
To learn more about the certification process, download now the user guide
To learn more about the Arduino Starter Kit, click here

 


Tech specs

EXAM SUBJECT AREAS

You will encounter questions that test your knowledge in relation to the following 8 main categories:

  1. Electricity. Understanding the concepts such as resistance, voltage, power and capacitance,and able to measure and calculate them.
  2. Reading circuits and schematics. Understanding how electronics are represented visually, and the ability to read and analyze electronic circuits.
  3. Arduino IDE. Understanding the functionality of the Arduino development environment, serial communication, libraries and errors.
  4. Arduino Boards. Understanding the constitution and capabilities of an Arduino board and the functions of its different parts.
  5. Frequency and Duty cycle. Understanding the concepts of Pulse Width Modulation (PWM) and frequency, and being able to calculate duty cycle.
  6. Electronic components. Understanding how various electronic components such as LEDs, sensors, buttons and motors work, and how to use them in a circuit.
  7. Programming syntax and semantics. Understanding the building blocks of the Arduino programming language such as functions, arguments, variables and loops.
  8. Programming logic. Ability to program various electronic components, read, analyze and troubleshoot Arduino code.

For further questions, contact support here.

Resources for Safety and Products

Manufacturer Information

The production information includes the address and related details of the product manufacturer.

Arduino s.r.l.
Via Andrea Appiani, 25
Monza, MB, IT, 20121
https://www.arduino.cc/ 

Responsible Person in the EU

An EU-based economic operator who ensures the product's compliance with the required regulations.

Arduino s.r.l.
Via Andrea Appiani, 25
Monza, MB, IT, 20121
Phone: +39 0113157477
Email: support@arduino.cc

 

Get Inspired

PROJECT HUB
Claw prosthesis controlled by myoelectric sensor
Claw prosthesis controlled by myoelectric sensor
Project Tutorial by luiz_coppini

Print a claw on your 3D printer and use a myoelectric sensor to control it.

read more
BLOG
Your Arduino Nano ESP32 can run Doom
Your Arduino Nano ESP32 can run Doom
September 12, 2023

"But can it run Doom?" is more than just a joke in the tech world. It is also a decent litmus test for the computing power of hardware. That test isn't very relevant for modern computers, but it is still worth asking when discussing microcontrollers. Microcontrollers vary in dramatically in processing power and memory, with models to suit every application. But if you have an Arduino Nano ESP32 board, you can run Doom as Naveen Kumar has proven. The Nano ESP32 is a small IoT development board for the ESP32-S3 microcontroller, featuring Wi-Fi® and Bluetooth® connectivity. It also has a relatively high clock speed and quite a lot of memory: 240MHz and 512kB SRAM, respectively. That still isn't enough to meet the requirements of the original Doom release, which needed a lot more RAM. But Kumar demonstrates the use of an MCU-friendly port that runs well on this more limited hardware. Want to give it a try yourself? You'll need the Nano ESP32, an Adafruit 2.8" TFT LCD shield, an M5Stack joystick, a Seeed Studio Grove dual button module, a breadboard, and some jumper wires to create a simple handheld console. You'll have to compile and flash the Retro-Go firmware, which was designed specifically for running games like Doom on ESP32-based devices. You can then load the specialized WAD (Where's All the Data) files. Kumar reports an average frame rate at a 320×240 resolution, which is very playable.

read more

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