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Arduino Alvik

SKU AKX00066 Barcode 7630049204959 Show more
Original price €0
Original price €159,90 - Original price €159,90
Original price
Current price €159,90
€159,90 - €159,90
Current price €159,90
VAT included

With Arduino Alvik, innovators, students, and educators can step into the world of programming and robotics at any level - helping you go further with every move.

Overview

Alvik simplifies coding and complex robot projects, enabling users of all levels to immerse themselves in the exciting world of programming and robotics. It’s also a cross-discipline tool that bridges the gap between education and the future of robotics with CSTA and NGSS-Aligned free courses. This innovative and versatile robot makes learning and creating more accessible and fun than ever before.

Key benefits include:

  • Start programming in no time: Powered by the versatile Nano ESP32, Alvik streamlines the learning curve in robotics with its comprehensive programming suite that includes block-based coding for primary school students, MicroPython and Arduino language for K12 and learner with different levels who are ready to explore the world of coding and robotics.
  • Unlock robotic potential with multiple integrated sensors: Alvik’s Time of Flight, RGB color and line-following array sensors, along with its 6-axis gyroscope and accelerometer, allow users to tackle a range of innovative, real-world projects. From an obstacle avoidance robot to a smart warehouse automation robot car, the possibilities are endless!
  • Design your own experience by expanding Alvik’s capabilities: Alvik comes equipped with LEGO® Technic™ connectors, allowing users to personalize the robot and expand its capabilities. Additionally, it features M3 screw connectors for custom 3D or laser-cutter designs.
  • Amplify Alvik’s flexibility for dynamic movement: The Servo, I2C Grove, and I2C Qwiic connectors allow users to expand Alvik’s potential and take robotics projects to a whole new level. Add motors for controlling movement and robotic arms, or integrate extra sensors for data collection and analysis – the choice is yours. 

Other Features

Its small yet mighty design allows learners to bring imaginative ideas into reality, starting from your first ever line of code to the most complex technological developments. Alvik’s pocket-size build makes it an ideal companion for various learning environments, whether that’s in a classroom, makerspace, home, or even in your garage.
Alvik’s rechargeable and easy-to-replace battery ensures continuous learning sessions and uninterrupted creation experience. Replaceable batteries can also extend the overall lifespan of the robot, reducing the need to replace the entire unit when the original batteries degrade over time and saving costs.

CSTA and NGSS-Aligned Curriculum

Alvik comes with 2 project-based learning lessons and activities with both block-based coding and MicroPython language which encourage students and innovators to explore technology through hands-on collaboration, preparing them for real-world challenges. 
The content includes getting started, hardware, software, and real-life use activities. The content includes getting started, hardware, software, and real-life use activities. These activities are designed to build learners' critical thinking, problem-solving, and teamwork skills.

Primary school: Block-based coding & Robotics


Secondary and High School: Explore Robotics and MicroPython

Need help?

Check the Arduino Forum for questions about the Arduino Language, or how to make your own Projects with Arduino. You can also find out more about Arduino Cloud for Schools here.
If you need any help with your product, please get in touch with the official Arduino User Support as explained in our Contact Us page.
 


Tech specs

Alvik main controller Arduino Nano ESP32:
  • 8 MB of RAM
  • u-blox® NORA-W106 (ESP32-S3)
  • Processor up to 240 MHz
  • ROM 384 kB + SRAM 512 kB 
  • 16 MB External FLASH
Alvik on-board Core STM32 Arm® Cortex®-M4 32 Bit
Power supply Nano ESP-32 USB-C® rechargeable and replaceable 18650 Li-Ion battery (included)
Programming language MicroPython, Arduino & *block-based programming
Connectivity Wi-Fi®, Bluetooth® LE
Inputs Time of Flight Distance Sensor - up to 350 cm
RGB Color Sensor
6-axis Gyroscope-Accelerometer
Line follower Array (x3)
Touchable Buttons (x7)
Outputs 2x RGB LEDs
6V Motors - No- load speed 96 rpm, No- load current 70 mA
Extensions LEGO® Technic™ connectors (x4)
M3 screw connectors (x8)
Servo motor
I2C Grove
I2C Qwiic

*block-based programming will be supported soon.

Conformities

The following Declarations of Conformities have been granted for this board:
UKCA
CE
RoHS
For any further information about our certifications please visit docs.arduino.cc/certifications

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, 20900
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, 20900
Phone: +39 0113157477
Email: support@arduino.cc

 

Documentation

Get Inspired

PROJECT HUB
Create a Human-Machine Interface (HMI) with Arduino
Create a Human-Machine Interface (HMI) with Arduino
Project Tutorial by sabas1080

Learn how to build a complete HMI with Arduino that will allow you to interact with your projects in an intuitive and visual way.

read more
BLOG
Machine-to-machine communication is easier than ever: Opta now supports OPC UA
Machine-to-machine communication is easier than ever: Opta now supports OPC UA
November 5, 2024

OPC Unified Architecture – OPC UA in short – is a cross-platform, open-source machine-to-machine communication protocol for industrial automation. It was developed by the Open Platform Communications (OPC) Foundation and is defined in detail in the IEC 62541 standard. With the release of the Arduino_OPC_UA library we enable users to convert any product from our Arduino Opta range into an OPC UA-enabled device. Step-by-step guide to setting up OPC UA on Arduino Opta It’s as simple as uploading a single sketch onto your Opta and connecting it to an Ethernet network. Once uploaded, the OPC UA firmware exposes the Arduino Opta’s analog and digital inputs, the user button and LED (only Arduino Opta WiFi), as well as its relay outputs as properties that can be read from or written to using OPC UA. OPC UA communication is performed using OPC UA binary encoding via TCP sockets. Arduino_OPC_UA is a port of the Fraunhofer open62541 library implementing IEC 62541 in highly portable C99 for both Windows and Linux targets. One serious challenge during the porting of open62541 was to decide on sensible tradeoffs concerning RAM consumption, as using OPC UAs full namespace zero (NS0) requires up to 8 MB of RAM while the STM32H747 powering the Arduino Opta has a total of 1 MB of SRAM to offer – some of which already allocated by the the Arduino framework for the Arduino Opta. Expand functionality with Arduino Opta Modules and OPC UA integration Additionally, Arduino_OPC_UA supports the automatic discovery, configuration and exposure as OPC UA objects of the recently released Arduino Opta expansion modules. Currently three different expansion modules exist: Arduino Opta Analog Expansion (A0602), Arduino Opta Digital Expansion with electro-mechanical relay outputs (D1608E), and with solid-state relay outputs (DS1608S). During system start-up, the Arduino Opta’s expansion bus is queried for connected expansion modules and automatically configures them and

read more

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