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The Adafruit RP2040 CAN Bus Feather combines the powerful RP2040 microcontroller with an MCP25625 CAN controller and transceiver, giving you a ready-to-go CA...

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The Adafruit RP2040 CAN Bus Feather combines the powerful RP2040 microcontroller with an MCP25625 CAN controller and transceiver, giving you a ready-to-go CAN Bus interface in the compact Feather form factor. No soldering is needed to get started — just connect your CAN Bus lines to the included terminal block and start sending and receiving messages.

CAN Bus is a robust two-wire differential networking standard originally designed for automotive applications but now widely used in robotics, industrial automation, and sensor networks. It offers better range and noise immunity than I2C, with automatic collision detection and retransmission at up to 1 Mbps.

Key Features

  • RP2040 Processor – Dual-core Cortex M0+ at 133 MHz with 264 KB RAM and 8 MB QSPI flash
  • MCP25625 CAN Controller – MCP2515-compatible with built-in transceiver, supporting standard and extended frames at up to 1 Mbps
  • 5 V Charge-Pump – Generates clean 5 V for the CAN transceiver from the 3.3 V Feather power rail
  • 3.5 mm Terminal Block – Solderless connection to CAN High, CAN Low, and ground
  • 120 Ω Termination Resistor – On-board with a cuttable jumper to remove when not at the end of the bus
  • 21 GPIO Pins – Including 4× 12-bit ADC, 2× I2C, 2× SPI, 2× UART, 16× PWM
  • STEMMA QT Connector – Plug-and-play I2C for sensors and peripherals
  • USB Type C – For programming, serial debugging, and power
  • LiPo Battery Support – Built-in 200 mA+ charger with status LED and automatic USB/battery switching
  • NeoPixel + Red LEDRGB NeoPixel for status indication plus pin 13 red LED

Also Consider

Ideal For

  • Automotive diagnostics and OBD-II projects
  • Robotics and motor controller networks
  • Industrial sensor networks and automation
  • Multi-node embedded communication systems

Package Contents

  • 1× Adafruit RP2040 CAN Bus Feather (assembled and tested)
  • 1× Header strip (soldering required for FeatherWing stacking)

Resources

Jargon buster

Plain-language definitions for the technical terms used above.

ADC
An analogue-to-digital converter reads a changing voltage and turns it into a number the microcontroller can use. It matters when connecting analogue sensors such as light, sound, or variable-resistor sensors.
CAN bus
CAN bus is a reliable two-wire communication network originally designed for vehicles and now common in machinery and robotics. It matters when you need multiple controllers or devices to share status and control messages in a noisy electrical environment.
FeatherWing
A FeatherWing is an add-on board made to plug into the Feather microcontroller board layout. Knowing a product is a FeatherWing helps you check whether it will physically and electrically fit your Feather-style mainboard.
GPIO
General-purpose input/output pins are microcontroller pins you can set in software to read signals, switch devices on and off, or connect to peripherals. The number of GPIO pins matters because it limits how many buttons, LEDs, sensors, and other parts you can wire directly to the board.
I2C
I2C is a two-wire communication bus used by many sensors and small modules. It matters because several I2C devices can share the same two wires, but each device needs a compatible address and your controller must support I2C.
LED
A light-emitting diode is a small electronic component that lights up when current flows through it in the correct direction. In this kit, LEDs create the flashing effect, so polarity and correct soldering matter for the project to work.
LiPo
A lithium polymer rechargeable battery commonly used in portable electronics projects. It matters because LiPo batteries need correct charging circuitry and care, and this board includes hardware intended for that battery type.
microcontroller
A microcontroller is a small computer on a chip that runs your program and controls connected inputs and outputs. For this product, it is the part that reads buttons and sensors, drives the display and speaker, and communicates over Bluetooth.
NeoPixel
A type of addressable LED system where colour data is sent along a single digital data line from one LED or controller to the next. Compatibility matters because the timing and signal format must match for the lights or driver board to respond correctly.
PWM
Pulse Width Modulation is a way for a digital pin to simulate variable output power by switching on and off very quickly. It matters for controlling things like LED brightness, motor speed, or servo-style signals from a microcontroller pin.
RAM
RAM is temporary memory used while a device is running, and its contents are lost when power is removed. A “Run in RAM” mode is useful for testing settings without permanently programming the module, but it may not support every feature.
RGB
Short for red, green and blue, usually referring to an LED that can mix those three colours. It matters because controlling an RGB LED teaches how separate outputs combine to create different colours.
RP2040
A microcontroller chip used on many maker boards, with enough speed and flexible I/O for some camera and display projects. Compatibility with RP2040 matters because camera modules often need many pins and careful timing to read image data successfully.
SPI
A fast serial communication bus often used for displays, memory cards, and sensors. It matters because SPI devices need specific pins for clock and data, plus a separate chip-select line for each device.
STEMMA QT
A small plug-in connector system for I2C boards that lets you connect compatible sensors and controllers without soldering. It matters because it can make wiring faster and less error-prone, especially when adding several small modules to a project.
Terminal block
A connector used to join wires together in a neat, removable, or serviceable way. For this product, it helps split one power input into several outputs without soldering.
UART
UART is a simple serial connection that sends data over separate transmit and receive wires, often labelled TX and RX. It matters because this module is designed to replace a wired UART cable with a wireless link while keeping the same serial data format.

Related Tutorials

Free guides on learn.littlebird.com.au

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