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The Adafruit HUZZAH32 ESP32 Feather Board brings the powerful Espressif ESP32 dual-core processor into the Adafruit Feather form factor. With WiFi, Bluetooth...

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The Adafruit HUZZAH32 ESP32 Feather Board brings the powerful Espressif ESP32 dual-core processor into the Adafruit Feather form factor. With WiFi, Bluetooth Classic, and BLE support, a built-in USB-to-serial converter, automatic bootloader reset, and LiPo battery charging, it's a fully featured wireless development board that's compatible with the entire Feather ecosystem of add-on Wings.

This pre-soldered version comes with 0.1" headers already attached — ready to plug into a breadboard or FeatherWing immediately, no soldering required. The WROOM32 module provides a 240 MHz dual-core processor, 520 KB SRAM, 4 MB SPI Flash, and an on-board PCB antenna.

Key Features

  • ESP32 Dual-Core 240 MHz – Tensilica LX6 with 600 DMIPS and 520 KB SRAM
  • 802.11b/g/n WiFi – Integrated transceiver with on-board PCB antenna
  • Bluetooth Classic and BLE – Dual-mode wireless connectivity
  • 4 MB SPI Flash – WROOM32 module with tuned antenna
  • Built-in USB-to-Serial – Program and debug over USB with automatic bootloader reset
  • LiPo Battery Charger – Built-in charging circuit for 3.7V LiPo batteries
  • Pre-Soldered Headers – Ready to use immediately with breadboards and FeatherWings
  • Feather Form Factor – Compatible with 50+ FeatherWing add-on boards
  • Rich Peripherals – 3× UART, 3× SPI, 2× I²C, 2× I²S, 2× DAC, 12× ADC channels
  • 10 Capacitive Touch Inputs – Built-in touch sensing
  • Hall Sensor – On-chip magnetic field detection
  • PWM on Every GPIO – Flexible output control

Ideal For

  • WiFi and Bluetooth IoT projects
  • Battery-powered wireless sensor nodes
  • Quick prototyping with FeatherWing add-ons — no soldering needed
  • Upgrading from ESP8266-based Feather projects

Package Contents

  • 1× Adafruit HUZZAH32 ESP32 Feather Board – Fully assembled with headers pre-soldered
Note: LiPo battery and USB cable not included. This board is recommended for makers with some microcontroller experience, as not all ESP32 peripherals have complete documentation and example code yet.
Tip: Prefer to solder your own headers? See the HUZZAH32 ESP32 Feather Board (unsoldered).

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.
BLE
BLE stands for Bluetooth Low Energy, a Bluetooth mode designed for low power use and broad compatibility with modern phones and computers. It connects well to battery-powered and mobile devices, including Apple hardware, though it behaves differently from Bluetooth Classic and its serial-style profiles.
Bootloader
Small starter software on a microcontroller that lets new code be uploaded before the main program runs. Knowing how to enter bootloader mode matters when you need to program the board or recover it after a faulty sketch.
DAC
A digital-to-analogue converter turns numbers from the microcontroller into a real analogue voltage. It matters if you want to generate simple waveforms, audio-style signals, or variable control voltages rather than just on/off outputs.
ESP32
ESP32 is a family of low-cost microcontroller chips and modules from Espressif with built-in WiFi and Bluetooth. They support programmable firmware and over-the-air updates, and are commonly programmed with toolchains such as the Arduino core and ESP-IDF.
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.
Headers
Rows of connector contacts on a fixed pitch (commonly 2.54 mm) used to link a board to a breadboard, jumper wires, or another board. They come as male pin headers and female socket headers; when a module ships with pre-soldered headers it can be used straight away, whereas bare pads require soldering the pins yourself.
IoT
Short for Internet of Things, meaning physical devices that connect to networks or the internet to send data or be controlled remotely. It matters if you want projects such as connected sensors, remote controls or classroom data-logging activities.
LiPo
A LiPo (lithium polymer) battery is a rechargeable lithium battery widely used in portable projects because it is light and compact. LiPo cells need correct charging circuitry and careful handling to stay safe, so equipment that supports LiPo generally includes charging or protection hardware suited to that battery type.
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.
PCB
A printed circuit board (PCB) is a board, usually rigid, with etched copper tracks that connect electronic components together without loose wiring. Components are mounted on the board and signals route between them through the copper layout.
PCB antenna
A PCB antenna is an antenna pattern built directly into the circuit board rather than a separate metal antenna. It matters because placement, nearby metal and enclosure design can affect wireless range.
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.
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.
SRAM
Fast temporary memory used by a processor while a program is running. More SRAM helps with projects that handle larger data buffers, networking, displays, or more complex code.
UART
UART is a simple asynchronous serial interface that sends data over separate transmit and receive wires, usually labelled TX and RX, with both ends set to the same baud rate. It is a common way for microcontrollers and other serial devices to exchange data.

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