The STM3210E-EVAL evaluation board from STMicroelectronics is designed to provide a comprehensive platform for the evaluation of the STM32F103ZET6 microcontroller. This high-performance board is packed with an array of features and peripherals that enable developers to fully explore the capabilities of the STM32F103ZET6, which is based on the ARM Cortex-M3 processor.
Key Features
- Microcontroller: STM32F103ZET6 with 512 KB Flash memory and 64 KB RAM.
- Connectivity: Includes USB, CAN, USART, and other communication interfaces for versatile connectivity options.
- Display: Equipped with a 3.2” 240x320 pixel QVGA TFT color LCD for rich visual output.
- Audio: Audio DAC with integrated class D speaker driver, along with an audio jack for headphones or external speakers.
- Memory Expansion: Features an SD/MMC card slot for additional storage options.
- On-board Debugging: Embedded ST-LINK/V2 for on-the-fly program debugging and programming.
- Extension Connectors: Access to all the microcontroller's I/Os for easy expansion with custom or pre-designed boards.
- Sensors: On-board features include a temperature sensor and a 3-axis accelerometer for motion-sensitive applications.
Development Support
The STM3210E-EVAL board is supported by a wide range of software development tools, including the STM32CubeMX for initializing the microcontroller and generating the corresponding initialization code. Additionally, there are extensive libraries and examples available from STMicroelectronics that cover a broad spectrum of applications.
Applications
This evaluation board is ideal for a variety of applications, such as industrial control, medical equipment, consumer electronics, and embedded systems development. Its rich set of features and peripherals make it a flexible and powerful platform for both prototyping and product testing.
Package Contents
The STM3210E-EVAL evaluation board package includes the board itself, a USB cable for power and communication, and comprehensive documentation to get started with development without delay.