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GIDINGS&LEWIS 401-34401-00伺服驱动器

发布时间:2025-09-04人气:
  • GIDINGS&LEWIS 401-34401-00伺服驱动器
  • GIDINGS&LEWIS 401-34401-00伺服驱动器
  • GIDINGS&LEWIS 401-34401-00伺服驱动器

 GIDINGS&LEWIS 401-34401-00伺服驱动器 

1.产 品 资 料 介 绍:

产品基础概述

GIDDINGS&LEWIS 401-34401-00 伺服驱动器,作为工业自动化领域的关键动力控制设备,专为满足复杂且严苛的工业环境需求而精心打造。它是连接控制系统与伺服电机的核心枢纽,将控制系统发出的指令精准转化为电机的高效运转,实现对电机转速、位置和扭矩的精确操控,确保工业设备稳定、高效且精准地运行,为各类工业生产过程提供强劲而可靠的动力支持。

核心功能特性

  1. 精准运动控制能力:该伺服驱动器凭借先进的控制算法和高速处理器,能够实现对伺服电机的精准运动控制。在速度控制模式下,可将电机转速精度控制在极小范围内,如在额定转速下,转速波动误差可低至 ±0.01%,确保设备在运行过程中保持稳定的速度,满足对转速稳定性要求极高的应用场景,如精密磨削加工、高速旋转设备的驱动等。在位置控制模式中,通过对电机旋转角度和运行步数的精确控制,定位精度可达 ±1 脉冲,能够满足数控机床坐标轴定位、自动化生产线物料搬运定位等对位置精度要求苛刻的应用,保证设备运行的准确性和重复性。在转矩控制模式下,可精确调节电机输出转矩,转矩控制精度可达 ±1%,适用于需要精确控制张力、压力等场合,如纺织机械中的纱线张力控制、包装机械中的封口压力控制等。
  2. 多控制模式灵活切换:支持多种控制模式,包括速度控制模式、位置控制模式和转矩控制模式,用户可根据实际应用需求在不同模式之间灵活切换。这种多控制模式的设计,极大地提高了驱动器的通用性和适应性,能够满足不同工业领域的多样化应用需求。例如,在自动化生产线中,当物料输送时,可采用速度控制模式确保输送带以稳定的速度运行;当进行物料分拣或装配时,切换到位置控制模式,实现机械臂的精准定位;在一些需要控制加工力的工艺中,则采用转矩控制模式,保证加工过程的稳定性和产品质量。
  3. 高速响应与动态性能:具备出色的高速响应能力,能够快速响应控制系统发出的指令变化。从接收到指令到电机做出相应动作的响应时间极短,一般可在毫秒级内完成,使得设备能够迅速启停、变速和换向,满足对动态性能要求较高的应用场景,如工业机器人在执行快速抓取、搬运任务时,能够快速响应指令,实现高效、精准的动作。同时,在电机高速运行和频繁加减速过程中,驱动器能够保持良好的动态性能,确保电机运行平稳,减少振动和冲击,延长设备使用寿命,提高生产效率。
  4. 强大的通讯与联网功能:配备丰富的通讯接口,支持多种工业标准通讯协议,如 Modbus、EtherCAT、Profinet 等,可与上位机、PLC 以及其他智能设备进行无缝通讯。通过通讯接口,驱动器能够实时接收上位机或 PLC 发送的控制指令、参数设置等信息,同时将自身的运行状态、故障信息等反馈给上位控制系统,实现对设备的集中管理和远程监控。在大型自动化生产线上,通过通讯网络将所有设备的驱动器连接起来,实现整个生产线的协同运行和智能化控制,提高了生产过程的自动化程度和管理效率,方便用户对生产过程进行实时监控和调整。

英文资料:

Product Overview

GIDDINGS&LEWIS 401-34401-00 servo drive, as a key power control equipment in the field of industrial automation, is carefully crafted to meet the complex and demanding requirements of industrial environments. It is the core hub connecting the control system and servo motor, accurately converting the commands issued by the control system into efficient operation of the motor, achieving precise control of motor speed, position, and torque, ensuring stable, efficient, and precise operation of industrial equipment, and providing strong and reliable power support for various industrial production processes.

Core functional characteristics

Precise motion control capability: With advanced control algorithms and high-speed processors, this servo drive can achieve precise motion control of servo motors. In speed control mode, the motor speed accuracy can be controlled within a very small range. For example, at rated speed, the speed fluctuation error can be as low as ± 0.01%, ensuring that the equipment maintains a stable speed during operation and meets the extremely high requirements for speed stability in application scenarios such as precision grinding and driving high-speed rotating equipment. In the position control mode, by precisely controlling the rotation angle and running steps of the motor, the positioning accuracy can reach ± 1 pulse, which can meet the strict requirements for position accuracy in applications such as coordinate axis positioning of CNC machine tools and material handling positioning of automated production lines, ensuring the accuracy and repeatability of equipment operation. In torque control mode, the motor output torque can be accurately adjusted with a torque control accuracy of ± 1%. It is suitable for situations that require precise control of tension, pressure, etc., such as yarn tension control in textile machinery and sealing pressure control in packaging machinery.

Flexible switching of multiple control modes: Supports multiple control modes, including speed control mode, position control mode, and torque control mode. Users can flexibly switch between different modes according to their actual application needs. This multi control mode design greatly improves the versatility and adaptability of the driver, and can meet the diverse application needs of different industrial fields. For example, in an automated production line, when conveying materials, a speed control mode can be used to ensure that the conveyor belt runs at a stable speed; When sorting or assembling materials, switch to position control mode to achieve precise positioning of the robotic arm; In some processes that require control of machining force, torque control mode is adopted to ensure the stability of the machining process and product quality.

High speed response and dynamic performance: It has excellent high-speed response capability and can quickly respond to changes in instructions issued by the control system. The response time from receiving instructions to the motor making corresponding actions is extremely short, usually completed in milliseconds, enabling the equipment to quickly start, stop, change speed, and direction, meeting the high requirements for dynamic performance in application scenarios. For example, industrial robots can quickly respond to instructions and achieve efficient and accurate actions when performing fast grasping and handling tasks. At the same time, during high-speed operation and frequent acceleration and deceleration of the motor, the driver can maintain good dynamic performance, ensure smooth motor operation, reduce vibration and impact, extend equipment service life, and improve production efficiency.

 2.产      品      展      示      

used_giddings_lewis_dsm120_servo_drive_401-34401-00_1.jpg

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

Contact: +86 15270269218

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