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Arduino® UNO R4 WiFi – ABX00087

Original price was: ₹ 3,199.00.Current price is: ₹ 1,599.00.

The classic Arduino UNO, upgraded for modern projects. The Arduino UNO R4 WiFi combines a 48 MHz Renesas RA4M1 32-bit Arm® Cortex®-M4 microcontroller with an ESP32-S3 wireless module, built-in Wi-Fi® and Bluetooth® Low Energy, a programmable 12×8 LED matrix, USB-C®, CAN bus, RTC, DAC, and Qwiic connectivity—all in the familiar UNO form factor.

The UNO You Know. Built for What’s Next.

The Arduino® UNO R4 WiFi (ABX00087) brings a major performance and connectivity upgrade to the familiar Arduino UNO platform.

At its core is the Renesas RA4M1, a 32-bit Arm® Cortex®-M4 microcontroller running at 48 MHz, with 256 KB Flash memory, 32 KB SRAM, and 8 KB EEPROM. Alongside it, an ESP32-S3-MINI-1-N8 module provides Wi-Fi® and Bluetooth® Low Energy connectivity for wireless and IoT applications.

The UNO R4 WiFi keeps the familiar UNO form factor, pinout, and 5V operating voltage, making it a natural upgrade path for many existing UNO-based projects and shields, although individual shields and peripherals should always be checked for electrical and software compatibility.

What makes this board particularly useful for modern STEM and IoT development is the collection of built-in peripherals. You get a programmable 12×8 red LED matrix, Qwiic I²C connector, CAN bus, 12-bit DAC, Real-Time Clock, USB-C® connectivity, and wireless networking without requiring separate expansion boards for every function.

For educators, students, makers, and developers, this means more advanced projects can be developed while retaining the approachable Arduino ecosystem.

Perfect For

IoT development
Wireless sensor networks
Robotics
Smart-home prototypes
Environmental monitoring
Smart agriculture
Cloud-connected projects
Wearable and interactive electronics
Data-logging systems
CAN bus experiments
Human-machine interfaces
STEM and electronics education
Advanced Arduino projects
PM SHRI Lab projects
Engineering and college-level prototyping

Technical Specifications

Specification Details
Product Arduino® UNO R4 WiFi
SKU ABX00087
Main Microcontroller Renesas RA4M1
CPU Core 32-bit Arm® Cortex®-M4
Main Clock Speed 48 MHz
Flash Memory 256 KB
SRAM 32 KB
EEPROM 8 KB
Wireless MCU/Module ESP32-S3-MINI-1-N8
Wi-Fi® Supported
Bluetooth® Bluetooth® Low Energy
Operating Voltage 5V
VIN / DC Jack Input 6–24V
Digital I/O 14
Analog Input Pins 6
PWM Outputs 6
DAC 1 × 12-bit
ADC Up to 14-bit
USB USB-C®
I²C Supported
SPI Supported
UART 1
CAN 1 CAN interface; external transceiver required
LED Matrix 12×8 programmable red LED matrix
RTC Built-in Real-Time Clock
Qwiic 3.3V I²C Qwiic connector
HID USB mouse/keyboard emulation supported
Board Dimensions Approx. 68.85 × 53.34 mm

Key Features

32-Bit Cortex-M4 Processing

The RA4M1 brings significantly more processing capability than the classic UNO R3, with a 48 MHz Arm Cortex-M4 core, 256 KB Flash, and 32 KB SRAM.

Built-In Wi-Fi® & Bluetooth® Low Energy

The integrated ESP32-S3 module adds wireless connectivity, making the UNO R4 WiFi suitable for connected sensors, cloud dashboards, remote monitoring, and IoT prototypes.

Programmable 12×8 LED Matrix

The onboard 12×8 red LED matrix allows you to create animations, icons, scrolling text, indicators, and simple graphical displays without connecting a separate LED matrix.

Familiar UNO Form Factor

The board maintains the familiar UNO form factor, pinout, and 5V operating voltage, making it easier to transition existing UNO-based projects to the R4 generation.

Qwiic I²C Connectivity

The onboard Qwiic connector provides a convenient way to connect compatible 3.3V I²C peripherals with suitable Qwiic cables, reducing wiring complexity during prototyping.

CAN Bus

The board includes CAN functionality, making it suitable for learning and prototyping communication systems commonly used in automotive and industrial applications. An external CAN transceiver is required.

Built-In DAC

The UNO R4 WiFi includes a 12-bit Digital-to-Analog Converter, opening up applications involving analog signal generation, audio experiments, and other projects requiring a true analog output.

Real-Time Clock

The onboard RTC can be used for timekeeping, scheduling, timestamping, and data-logging applications. The board also provides VRTC and OFF functionality for battery-powered RTC applications.

USB-C® & HID Support

USB-C® provides the main computer connection for programming and communication. The board also supports USB HID functionality, allowing compatible projects to emulate devices such as a mouse or keyboard.

Power Options

The UNO R4 WiFi can be powered through:

USB-C®

The USB-C connector provides a 5V supply for normal USB-powered operation.

VIN / DC Barrel Jack

The recommended input range through VIN or the DC barrel jack is 6V to 24V.

Important: Do not apply 24V through the USB-C connector. The 6–24V specification applies to the VIN/DC-jack input path.

Compatibility

The UNO R4 WiFi maintains the classic UNO form factor and 5V logic environment, making it suitable for many existing UNO projects and shields.

However, compatibility should not be assumed for every legacy module or shield. Check the electrical requirements, voltage levels, libraries, pin assignments, and software support of individual peripherals before connecting them.

Communication Interfaces

The board provides several communication options:

UART
I²C
SPI
CAN
USB
Wi-Fi®
Bluetooth® Low Energy

This makes the UNO R4 WiFi suitable for projects ranging from simple sensor experiments to connected robotics and distributed IoT systems.

Example Projects

IoT Weather Station

Collect temperature, humidity, pressure, and other environmental data and transmit readings wirelessly to an online dashboard.

Smart Agriculture System

Connect environmental and soil sensors and build automated monitoring or irrigation prototypes.

Wireless Robotics

Use wireless communication for remote monitoring, control, telemetry, or robot-to-device communication.

Smart Home Prototype

Build connected lighting, environmental monitoring, access-control, or automation demonstrations.

Cloud Data Logger

Collect sensor data and send it to a cloud platform for remote monitoring and visualization.

LED Matrix Projects

Create scrolling messages, icons, animations, sensor indicators, timers, and interactive visual displays.

CAN Bus Learning Platform

Experiment with CAN-based communication and learn concepts used in automotive and industrial systems.

Educational Applications

The UNO R4 WiFi is particularly suitable for advanced STEM and engineering education covering:

Microcontroller programming
C/C++ embedded programming
IoT
Wireless communication
Robotics
Sensor integration
Data acquisition
Cloud connectivity
CAN bus
I²C and SPI communication
USB HID
Real-time systems
Digital and analog electronics
Embedded-system development

Why Choose the UNO R4 WiFi?

Modern 32-Bit Architecture
Move beyond the classic 8-bit UNO platform with the 48 MHz RA4M1 Cortex-M4 microcontroller.

Wireless Connectivity Built In
Wi-Fi® and Bluetooth® Low Energy are integrated through the ESP32-S3 module.

Classic UNO Experience
Retains the familiar UNO form factor, pinout, and 5V operating environment.

Built-In LED Matrix
Create visual feedback without adding a separate display.

More Advanced Peripherals
CAN, DAC, RTC, Qwiic, USB HID, and additional processing capability expand the range of projects you can build.

Excellent for IoT & Robotics
A strong platform for connected sensors, automation, robotics, cloud applications, and advanced STEM learning.

Important Compatibility Information

The UNO R4 WiFi contains both 5V and 3.3V domains. The main RA4M1 operates at 5V, while the ESP32-S3 operates at 3.3V internally. The board incorporates appropriate interfacing between these domains.

The Qwiic connector is intended for 3.3V I²C peripherals, so do not connect arbitrary 5V I²C devices to the Qwiic connector without verifying compatibility.

Individual shields, sensors, motors, displays, and other peripherals should always be checked for:

Operating voltage
Logic levels
Current requirements
Pin conflicts
Library support
Mechanical compatibility

Official Product Identification

Manufacturer: Arduino S.r.l.
Product: Arduino® UNO R4 WiFi
SKU: ABX00087

The official Arduino product page currently lists the product barcode as 7630049204591.

Package Contents

1 × Arduino® UNO R4 WiFi (ABX00087)

Unless specifically stated on your product page, the package does not include:

USB-C cable
Breadboard
Jumper wires
Sensors
Power adapter
Arduino shields
Other accessories

Safety & Handling

Use an appropriate power source within the specified input range.
Do not apply 24V through the USB-C connector.
Check the voltage requirements of external sensors and shields before connection.
Do not exceed the specified current limits of GPIO pins.
Disconnect power before modifying wiring.
Keep the board away from conductive surfaces that may cause short circuits.
Use appropriate external drivers for motors, pumps, relays, and other high-current loads.

Ideal For

Students, Teachers, Makers, Arduino Developers, IoT Developers, Robotics Enthusiasts, STEM Labs, Engineering Students, Embedded-System Developers, Educational Institutions, Professional Prototyping

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