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Closed-loop stepper motors are matched with stepper drivers

The 57/86 Closed-Loop Stepper Motor With Digital Display Driver

Built-in microcontroller function can replace PLC in most occasions, greatly reducing user costs

Internally supports jog mode and optional open-loop/closed-loop functions

Built-in smoothing filter function, external input can operate normally without acceleration or deceleration

4-digit LED digital tube display with 4 button operations, intuitive and easy to operate

Adopt advanced vector current, speed and position closed-loop control algorithms

The motor is equipped with a 1000-line high-precision photoelectric or magnetic encoder as standard

It has protection functions such as overcurrent, overvoltage, overspeed, overheating, and tracking error.

Introduction

Specification Table

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The digital display driver adapted to closed-loop stepper motors plays an important role in industrial automation and control systems. These drivers typically have high precision, high stability, and good dynamic response characteristics, which can meet various complex control requirements. The following is a detailed analysis of the adaptation of closed-loop stepper motors to digital display drivers:


1、 Basic concepts

The closed-loop stepper motor digital display driver is a driver that integrates closed-loop control technology and digital display function. It detects the position and speed of the motor in real time through built-in or external encoders, and compares these feedback information with the set values to achieve precise control of the motor. This control method can significantly improve the accuracy and stability of the system, reducing out of step and vibration caused by mechanical transmission errors, load changes, and other factors.


2、 Main features

High precision: Closed loop control can eliminate nonlinear factors such as clearance and elastic deformation in mechanical transmission, achieving high-precision position control.

High stability: Through real-time feedback and dynamic adjustment, the closed-loop system can quickly respond to load changes and maintain stable operation of the motor.

Fast dynamic response: Advanced control algorithms and high-speed processors are used to enable the driver to have fast dynamic response capabilities.

Digital display: Drivers are usually equipped with digital displays or interfaces that can display the motor's operating status and parameter settings in real time, making it easy for users to monitor and adjust.




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