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Stepper Motor Control with DRV 8825 Driver Based on Square Wave Signal from AVR Microcontroller Timer

机译:使用来自AVR微控制器定时器的方波信号的DRV 8825驱动器步进电机控制

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In this research, an electronic circuit control system had been designed for controlling stepper motors. The system consists of stepper motor driver IC and microcontroller. The stepper motor driver IC was used to implement those control mechanisms. The Microcontroller Unit (MCU) is used to generate the square wave needed for input to motor driver. The circuit was applied on two types of stepper motors, namely permanent magnet stepper motor and hybrid stepper motor. Several modes of controls are conducted here, which are full-stepping, half-stepping, and micro stepping. Some useful motor movements which are often used in many applications were tried here. Observations were made on the speed of the motor for various input waveform frequencies, on the stepper motor sound for a range of micro stepping level, and on the acceleration profile. Some significant result was obtained in that by using higher micro stepping levels, a more smoother stepper motor movement can be achieved. Another important result is that by applying an acceleration profile in the microcontroller program, we may target a speed which is well above the rated start-on speed of the stepper motor.
机译:在该研究中,设计了一种用于控制步进电机的电子电路控制系统。该系统由步进电机驱动器IC和微控制器组成。步进电机驱动器IC用于实施这些控制机制。微控制器单元(MCU)用于生成输入到电机驱动器所需的方波。该电路应用于两种类型的步进电机,即永磁步进电机和混合步进电机。此处进行了几种控制模式,其是全踩踏,半踩踏和微踩踏。在此尝试了一些经常用于许多应用中的有用电动机运动。在步进电机声音上对电动机的速度进行了一系列微步进水平,以及加速度曲线的观察。通过使用更高的微步进水平获得一些显着的结果,可以实现更光滑的步进电机运动。另一个重要结果是通过在微控制器程序中应用加速度,我们可以瞄准远高于步进电机的额定启动速度的速度。

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