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stm32_bujindianji
- 基于stm32四相步进电机的简单控制,可以通过按键控制四项步进电机正反转的加减速。可以点动旋转.-Based on the stm32 four-phase stepper motor a simple control, button control four stepper motor, acceleration and deceleration. Can Activity rotation.
Motion-Controller-with-STM32
- 介绍了一种点位运动控制器的设计,该控制器可以控制步进和伺服电机。该运动控制器以 STM32F103 为主控微处理器,实现了电机起停的加减速控制,扩展了 RS485 串行通信接口,设计了限位保护电 路,移植了嵌入式实时操作系统μC /OS-Ⅱ,通过μC /OS-Ⅱ来调度运动控制器的多个任务,设计了串口通信协议, 可以方便组成多轴控制系统.-Describes the design of a point of the motion controller, the controlle
stm32_setpmotor
- stm32驱动步进电机,实现加减速,能设定部数-STM32 drive a stepper motor
STM32_Stepe-motor
- 基于STM32的4轴步进电机加减速控制全套工程源码,共有两套; 一套是STM32F103的,另外一套是STM32F405的; 可以同时控制4轴步进电机进行加减速; 速率可以达到100K以上; -4-axis stepper motor control acceleration and deceleration based STM32 full project source code, there are two Set is STM32F103 and STM3
STM32_Step-motor
- 基于STM32的步进电机控制,含加减速控制方法。考虑了快速加减速时的失步影响。-STM32 based stepping motor control, including acceleration and deceleration control method. Taking into account the rapid acceleration and deceleration when the impact of out of step.
stepmotor
- 带有S型曲线加减速的步进电机驱动程序,基于hal库,用stm32 cube mx生成工程。(With the S-curve acceleration and deceleration stepper motor driver, based on hal library, with stm32 cube mx generation project.)
基于STM32的步进电机加减速程序
- 应用于STM32的微处理器,进行步进电机的加减速调节。(The microprocessor is used in STM32 to adjust the acceleration and deceleration of the stepping motor.)
秉火BH-MSD4805模块资料
- STM32实现步进电机加减速算法,用户可按照自己需求更改代码。(stepper motor control)
STM32步进电机梯形加减速
- 应用在STM32上的步进电机梯形加减速程序,电机为两相的57系不进店
stm32 步进电机驱动 pwm 加减速控制
- 双轴步进电机,pwm加减速控制,带细分功能。(Double axis stepper motor, PWM acceleration and deceleration control, with subdivision function.)
STM32Pro_MotorControl_Single_Axis
- 单轴步进电机加减速,直接下载直接用,基于STM32的UCOSiii系统。(Acceleration and deceleration of single-axis stepping motor for direct download)
STM32F103加减速
- 使用STM32单片机实现的步进电机控制,有设计文档和完整的程序(Stepper motor control realized by STM32 single chip computer has design document and complete program.)
STM32F1步进电机S加减速源代码
- stm32单片机控制步进电机,控制步进电机加减速算法(Stepping motor controlled by single chip microcomputer)