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GIDINGS&LEWIS M13005789 伺服驱动器

发布时间:2025-09-01人气:
  • GIDINGS&LEWIS M13005789 伺服驱动器
  • GIDINGS&LEWIS M13005789 伺服驱动器
  • GIDINGS&LEWIS M13005789 伺服驱动器

 GIDINGS&LEWIS  M13005789 伺服驱动器

1.产 品 资 料 介 绍:

Giddings & Lewis M.1300.5789 工业级伺服驱动器介绍

一、产品概述

Giddings & Lewis M.1300.5789 工业级伺服驱动器,是一款兼具高精度与高适应性的运动控制核心设备,能够灵活驱动交流或直流伺服电机,实现对电机速度、位置和力矩的精准调控。在工业自动化领域,它犹如 “运动控制的精密管家”,通过实时优化电机运行参数,确保设备在复杂工况下仍能保持稳定的运动精度与快速响应能力。


该驱动器广泛应用于数控机床、多轴自动化设备和精密加工系统,是这些设备实现高精度运动控制的关键部件。无论是数控机床对加工精度的严苛要求,多轴设备对同步运动的复杂需求,还是精密加工系统对动态性能的极致追求,它都能提供可靠的驱动支持,为工业生产的高效化、精准化奠定坚实基础。

二、产品特点

(一)高精度控制

  1. 全闭环控制体系:驱动器支持闭环位置、速度和力矩三种核心控制模式,构建起全方位的精准控制体系。在位置闭环控制中,通过实时对比目标位置与实际位置的偏差,动态调整输出信号,确保电机精准停留在指定位置,满足如零件装配定位、精密钻孔等场景需求;速度闭环控制能有效抑制负载波动对电机转速的影响,保持转速稳定,适用于输送带匀速运行、风机调速等场景;力矩闭环控制则可精准控制电机输出力矩,适配物料夹紧、张力控制等需要恒定力矩的应用。
  2. 反馈协同提精度:通过与编码器或增量反馈设备协同工作,实时采集电机运行的位置、速度反馈信号。驱动器根据反馈数据持续优化控制算法,动态修正电机运行轨迹,最大程度降低定位误差和速度波动。例如,在高精度铣削加工中,编码器实时反馈刀具位置,驱动器据此微调电机转速和进给量,确保加工零件的尺寸精度和表面光洁度,满足工业生产对细节精度的严苛要求。

(二)多种控制模式

  1. 灵活模式切换:提供速度模式、位置模式和同步模式三种核心控制模式,可根据不同工艺需求快速切换。速度模式下,驱动器稳定控制电机转速,适用于如主轴匀速切削、输送带恒速输送等场景;位置模式能精准控制电机运行至指定位置,满足点动定位(如机械臂抓取定位)、工件装配定位等需求;同步模式则可实现多台电机的同步运转,适用于多轴联动加工、同步输送等场景,确保多设备动作协调一致。
  2. 复杂工艺支撑:除基础控制外,驱动器还能适配复杂工艺需求。在点动定位场景中,可实现电机的微小步距移动,便于设备调试和精准对位;在插补控制中,支持直线插补、圆弧插补等功能,能精准衔接各段运动轨迹,确保数控机床加工曲线轮廓工件时运动平滑无卡顿;在连续运动控制中,可实现电机转速的平稳过渡,避免因速度突变对设备和工件造成冲击,全面支撑工业生产中的多样化工艺要求。

英文资料:

Introduction to Giddings&Lewis M.1300.5789 Industrial Grade Servo Drive

1、 Product Overview

Giddings&Lewis M.1300.5789 industrial grade servo drive is a motion control core device that combines high precision and high adaptability. It can flexibly drive AC or DC servo motors, achieving precise control of motor speed, position, and torque. In the field of industrial automation, it is like a "precision steward of motion control", which ensures stable motion accuracy and fast response capability of equipment under complex working conditions by optimizing motor operating parameters in real time.

This driver is widely used in CNC machine tools, multi axis automation equipment, and precision machining systems, and is a key component for achieving high-precision motion control in these devices. Whether it is the strict requirements for machining accuracy of CNC machine tools, the complex requirements for synchronous motion of multi axis equipment, or the ultimate pursuit of dynamic performance of precision machining systems, it can provide reliable driving support, laying a solid foundation for the efficiency and precision of industrial production.

2、 Product Features

(1) High precision control

Fully closed-loop control system: The driver supports three core control modes: closed-loop position, speed, and torque, building a comprehensive and precise control system. In position closed-loop control, by comparing the deviation between the target position and the actual position in real time, the output signal is dynamically adjusted to ensure that the motor accurately stays at the designated position, meeting the requirements of scenarios such as part assembly positioning and precision drilling; Speed closed-loop control can effectively suppress the impact of load fluctuations on motor speed, maintain stable speed, and is suitable for scenarios such as constant speed operation of conveyor belts and fan speed regulation; Torque closed-loop control can accurately control the output torque of the motor, suitable for applications that require constant torque such as material clamping and tension control.

Feedback collaboration improves accuracy: By working in conjunction with encoders or incremental feedback devices, real-time feedback signals of motor position and speed are collected. The driver continuously optimizes the control algorithm based on feedback data, dynamically corrects the motor's operating trajectory, and minimizes positioning errors and speed fluctuations to the greatest extent possible. For example, in high-precision milling, the encoder provides real-time feedback on the tool position, and the driver adjusts the motor speed and feed rate accordingly to ensure the dimensional accuracy and surface smoothness of the machined parts, meeting the strict requirements of industrial production for detail accuracy.

(2) Multiple control modes

Flexible mode switching: Provides three core control modes: speed mode, position mode, and synchronization mode, which can be quickly switched according to different process requirements. In speed mode, the driver stably controls the motor speed, suitable for scenarios such as spindle constant speed cutting and conveyor belt constant speed conveying; The position mode can accurately control the motor to run to the designated position, meeting the requirements of jog positioning (such as mechanical arm grasping positioning), workpiece assembly positioning, etc; The synchronous mode can achieve synchronous operation of multiple motors, suitable for scenarios such as multi axis linkage machining and synchronous conveying, ensuring coordinated and consistent actions of multiple devices.

Complex process support: In addition to basic control, the driver can also adapt to complex process requirements. In the scenario of jog positioning, it is possible to achieve small step movements of the motor, which facilitates equipment debugging and precise alignment;

 2.产      品      展      示      

giddings_and_lewis_dsa_030-230_part_no_m13005789_120-240vac_50-60_hz_servo_drive.jpg

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The content is from Ruichang Mingsheng Automation Equipment Co., LTD

Contact: +86 15270269218

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