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Adafruit

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The Adafruit AW9523 GPIO Expander and LED Driver Breakout adds 16 I/O pins to any I2C-capable microcontroller or single-board computer. What sets this expand...

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The Adafruit AW9523 GPIO Expander and LED Driver Breakout adds 16 I/O pins to any I2C-capable microcontroller or single-board computer. What sets this expander apart is its built-in 256-step linear constant-current LED dimming — connect LEDs directly without current-limiting resistors for smooth, flicker-free dimming.

With STEMMA QT / Qwiic connectors for solderless I2C wiring, four selectable I2C addresses (up to 64 total I/O pins on one bus), and an interrupt output for pin-change notifications, this board is well suited for projects that need lots of controllable LEDs or additional GPIO.

Key Features

  • 16× Multi-Function I/O Pins – Each pin configurable as GPIO input, GPIO output, or LED driver independently
  • 256-Step LED Dimming – Linear constant-current drive eliminates the need for current-limiting resistors
  • I2C Interface – Default address 0x58, selectable as 0x59, 0x5A, or 0x5B (up to 4 boards per bus)
  • Interrupt Output – Pin-change IRQ with 8 µs deglitch, active low
  • Open-Drain Support – First 8 pins configurable as open-drain outputs (as a group)
  • 1.8V Logic Input – SDA, SCL, SHDN, and all GPIO accept 1.8V logic levels
  • 2.5V to 5.5V Power Supply – Wide operating voltage range
  • Shutdown Function – Low-level active supply shutdown for power management
  • ESD Protection – ±4000V HBM
  • STEMMA QT / Qwiic Connectors – Solderless I2C connection, chainable with other STEMMA QT devices
  • Dimensions – 38.0 × 17.8 × 4.5 mm (1.5" × 0.7" × 0.2")

Ideal For

  • LED matrix and indicator projects requiring smooth dimming
  • Expanding GPIO on microcontrollers or Raspberry Pi
  • Button/switch input expansion with interrupt notification
  • I2C-controlled lighting installations

Package Contents

  • 1× Adafruit AW9523 GPIO Expander and LED Driver Breakout
Note: The AW9523 does not support internal pull-up or pull-down resistors. You will need external resistors for input pins that require pulls. The default I2C address determines the initial boot-state of the pins — the Arduino and CircuitPython libraries automatically reset all pins to a consistent state on initialisation. STEMMA QT cable not included.

Jargon buster

Plain-language definitions for the technical terms used above.

active LOW
Active LOW describes a signal that is treated as active, asserted or 'on' when it sits at a low voltage near ground, rather than at a high voltage. It applies to inputs, outputs and control lines (such as reset or chip-select), so it matters when wiring devices so that signal levels are interpreted as intended.
breakout
A breakout board carries a small or fine-pitched component and brings its connections out to standard, breadboard- and header-friendly pins. Describing a part as a breakout means it can be wired into a project without soldering directly to the component's tiny contacts.
CircuitPython
A beginner-friendly version of Python designed to run directly on microcontroller boards. If a product supports CircuitPython, you can often program it by copying code files onto the board rather than setting up a more complex toolchain.
ESD protection
ESD protection helps protect electronics from damage caused by static electricity discharges. It is useful on development boards because cables, sensors and modules are often plugged and unplugged during prototyping.
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.
I2C address
An I2C address is the number a device uses so a microcontroller can tell it apart from other devices on the same I2C bus. It matters because two devices with the same fixed address may conflict if used together.
IRQ
IRQ (interrupt request) is a signal line a device uses to alert a microcontroller that something needs attention, so the microcontroller does not have to poll continuously. Wiring an IRQ pin to a free input lets code respond promptly to events such as new data being ready.
LED
A light-emitting diode (LED) is a small electronic component that emits light when current flows through it in the correct direction. Because it only conducts one way, its polarity matters, and a through-hole LED must be soldered the correct way around to light up.
LED driver
An LED driver is a control chip or circuit that supplies and switches power to LEDs. For a display board, it reduces the number of microcontroller pins needed and handles tasks like lighting the right segments and adjusting brightness.
microcontroller
A microcontroller is a small computer on a single chip that runs a stored program and controls connected inputs and outputs such as buttons, sensors, displays and communication interfaces. In a device built around one, it is the part that executes the code and coordinates the device's behaviour.
Qwiic
Qwiic is a plug-in connector system for I2C devices that uses small 4-pin cables, so you can connect compatible sensors without soldering. It matters because your controller or adapter also needs Qwiic, or you will need a cable or breakout to wire it up.
single-board computer
A complete computer built onto one circuit board, usually including the processor, memory, ports, and connectors. This matters because accessories like heatsinks must match the board’s layout and mounting holes to fit properly.
STEMMA
A plug-and-cable connection system used on some maker electronics boards to make wiring simpler. If a product uses STEMMA, you need the matching cable or connector type to plug it in without soldering.
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.

Related Tutorials

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