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ST Nucleo F429ZI

Platform :ref:`platform_ststm32`: The STM32 family of 32-bit Flash MCUs based on the ARM Cortex-M processor is designed to offer new degrees of freedom to MCU users. It offers a 32-bit product range that combines very high performance, real-time capabilities, digital signal processing, and low-power, low-voltage operation, while maintaining full integration and ease of development.

Microcontroller STM32F429ZIT6
Frequency 180MHz
Flash 2MB
RAM 192KB
Vendor ST

Please use nucleo_f429zi ID for :ref:`projectconf_env_board` option in :ref:`projectconf`:

[env:nucleo_f429zi]
platform = ststm32
board = nucleo_f429zi

You can override default ST Nucleo F429ZI settings per build environment using board_*** option, where *** is a JSON object path from board manifest nucleo_f429zi.json. For example, board_build.mcu, board_build.f_cpu, etc.

[env:nucleo_f429zi]
platform = ststm32
board = nucleo_f429zi

; change microcontroller
board_build.mcu = stm32f429zit6

; change MCU frequency
board_build.f_cpu = 180000000L

ST Nucleo F429ZI supports the following uploading protocols:

  • blackmagic
  • cmsis-dap
  • jlink
  • mbed
  • stlink

Default protocol is stlink

You can change upload protocol using :ref:`projectconf_upload_protocol` option:

[env:nucleo_f429zi]
platform = ststm32
board = nucleo_f429zi

upload_protocol = stlink

:ref:`piodebug` - "1-click" solution for debugging with a zero configuration.

Warning

You will need to install debug tool drivers depending on your system. Please click on compatible debug tool below for the further instructions and configuration information.

You can switch between debugging :ref:`debugging_tools` using :ref:`projectconf_debug_tool` option in :ref:`projectconf`.

ST Nucleo F429ZI has on-board debug probe and IS READY for debugging. You don't need to use/buy external debug probe.

Compatible Tools On-board Default
:ref:`debugging_tool_blackmagic`    
:ref:`debugging_tool_cmsis-dap`    
:ref:`debugging_tool_jlink`    
:ref:`debugging_tool_stlink` Yes Yes
Name Description
:ref:`framework_arduino` Arduino Wiring-based Framework allows writing cross-platform software to control devices attached to a wide range of Arduino boards to create all kinds of creative coding, interactive objects, spaces or physical experiences.
:ref:`framework_cmsis` Vendor-independent hardware abstraction layer for the Cortex-M processor series
:ref:`framework_libopencm3` Open source ARM Cortex-M microcontroller library
:ref:`framework_mbed` Arm Mbed OS is a platform operating system designed for the internet of things
:ref:`framework_stm32cube` STM32Cube embedded software libraries, including: The HAL hardware abstraction layer, enabling portability between different STM32 devices via standardized API calls; The Low-Layer (LL) APIs, a light-weight, optimized, expert oriented set of APIs designed for both performance and runtime efficiency
:ref:`framework_zephyr` Zephyr is a new generation, scalable, optimized, secure RTOS for multiple hardware architectures