• You can log in to your eeworld account to continue watching:
  • STM32Cube HAL labs UART - Lab UART IT
  • Login
  • Duration:18 minutes and 35 seconds
  • Date:2020/03/13
  • Uploader:桂花蒸
Introduction
keywords: PWM STM32 DMA CubeMX HAL
This MOOC is targeting anyone who starts working on STM32 by introducing STM32 ecosystem.  You need some knowledge in C programming, and a NUCLEO-F401RE board for the hands-on.

Welcome to STM32Cube basics training! 
In this course we want to present you how to work with STM32 ecosystem. The course is focused on explanation of STM32CubeMX tool, how to handle basic tasks and use tool for basic project creation.
 
The course is structured in two parts. The first part is related to STM32CubeMX and MCU configuration:
- STM32 selection
- Pin-out configuration
- Clock configuration
- Peripheral configuration
- Power calculator
- Project generation settings

 The second part is related to STM32Cube HAL library which is used for developing your application:
- HAL library structure
- Handles and callbacks
- Interrupts
- DMA
- Basic HAL usage

All these points are developed in presentation and hands-on.

What are the requirements?
You need some knowledge of C programming language and a NUCLEO-F401RE board for the hands-on (please refer to your local ST distributor for an offer).

What am I going to get from this course?
Understand STM32CubeMX tool, and be able to work with STM32Cube HAL library and navigate in its structure

What is the target audience?
Anyone who wants to start developing on STM32 MCUs and never worked with STM32CubeMX and the HAL library. Or for someone who worked with previous standard peripheral library on ST products and wants to understand the STM32Cube ecosystem.
Unfold ↓

You Might Like

Recommended Posts

AD7606 AC sampling, please give me some advice
As the title says, after the chip is working, no AC analog quantity is added, and there is no external pull-up bias. Why can the port measure a DC of about 1.8V?
luling2006 ADI Reference Circuit
TMS320LF281x.pdf
I searched many websites but couldn't find any detailed explanation. I only found this one. I hope you like it.
jingchangsz Microcontroller MCU
How to configure RC522 registers with 2530
There are many programs on the Internet for driving RC522 with MSP430, but beginners don't know how to modify them. unsigned char SPIByte(unsigned char SPI_Byte) { unsigned char SPI_Recv; USISRL = SPI
韩薇0513 RF/Wirelessly
Received a courier unexpectedly
I received a call today and unexpectedly received a small prize. It turned out to be the prize from this event. The timeless IoT solution [/size][/b] [b][size=3] It looks small and exquisite, and feel
刘小飞 Talking
The classic masterpiece "Troubleshooting_Analog_Circuits" by the master of National Semiconductor
[i=s] This post was last edited by dontium on 2015-1-23 11:34 [/i] This is a classic work by the master of National Semiconductor. It explains the fault diagnosis of analog circuits in detail. Haha, I
eastman1986 Analogue and Mixed Signal
Design QR code scanner with STM32
Project requirements: Scan the QR code (including 16 bytes of data) laid on the ground on a car moving at 1.5m/s, and complete image acquisition and processing within 50ms. Considered platform: stm32f
7thwindow stm32/stm8

推荐文章

S5PV210 Linux字符驱动之PWM蜂鸣器驱动 2024年12月18日
在SMDK210.C中添加如下beeper_device 结构体 static struct platform_device beeper_device = { .name = pwm_buzzer , .id = 1, .dev = { .parent = &s3c_device_timer .dev, //PWM1是定时器1 .platform_data= 0,...
支持16位PWM调光,纳芯微氛围灯驱动NSUC1500点亮座舱新体验 2024年12月16日
纳芯微 宣布其SoC产品系列NovoGenius家族迎来新成员——高集成度氛围灯驱动SoC产品NSUC1500-Q1。 该产品通过集成ARM® Cortex®-M3内核与4路高精度 电流 型LED驱动,支持16位独立 PWM 调光和6位模拟调光功能,能够实现更精准的调光混色控制,并有效补偿光衰现象。此外,NSUC1500-Q1系列也满足AEC-Q100 Grade 1和C...
支持16位PWM调光,集成4路LED驱动, 纳芯微氛围灯驱动NSUC1500点亮座舱新体验 2024年12月16日
2024年12月16日,上海—— 纳芯微宣布其SoC产品系列NovoGenius家族迎来新成员——高集成度氛围灯驱动SoC产品NSUC1500-Q1。 该产品通过集成ARM® Cortex®-M3内核与4路高精度电流型LED驱动,支持16位独立PWM调光和6位模拟调光功能,能够实现更精准的调光混色控制,并有效补偿光衰现象。此外,NSUC1500-Q1系列也满足AEC-Q1...
【GD32H757Z海棠派开发板使用手册】第六讲 TIMER_3路PWM输出实验 2024年12月13日
6.1实验内容 通过本实验主要学习以下内容: TIMER PWM输出原理 TIMER 定时中断 6.2实验原理 6.2.1IO口设置 本例程中,使用TIMER0输出前三个通道的占空比,这三个通道分别为PA8、PA9和PA10,从datasheet中我们可以看到这三个引脚的定义: 所以需要将这三个引脚配置为AF模式并选择正确的AF号: 6.2.2TIMER输出P...

Recommended Content

可能感兴趣器件

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

About Us Customer Service Contact Information Datasheet Sitemap LatestNews


Room 1530, 15th Floor, Building B, No.18 Zhongguancun Street, Haidian District, Beijing, Postal Code: 100190 China Telephone: 008610 8235 0740

Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京B2-20211791 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号