Magnetek CIMR-G5M41P5矢量起重机控制器 PDF资料
1.产 品 资 料 介 绍:
MAGNETEK CIMR-G5M41P5 矢量起重机控制器
产品概述
CIMR-G5M41P5 是 Magnetek G5 系列中的一款专为起重设备定制的矢量控制变频驱动器/控制器,具备高可靠性、高响应和针对起重工况优化的运动控制性能。
核心产品特点
专为起重工况优化的矢量控制
采用闭环/开环磁通矢量控制技术,实现高精度起升与行走控制;
低速时保持强劲扭矩,防止重载时打滑或漂移。
四象限运行支持
支持起升/下降及正反转制动控制,适配再生制动模块,实现能量回馈或高效制动。
抗晃动功能(Anti-Sway)
可选配防晃控制逻辑模块,用于桥吊、抓斗等场合,有效减少载荷晃动,提升吊运效率与安全性。
快速响应制动逻辑
内置制动控制曲线设定,支持断电快速停机与刹车协同控制,提升人员与设备安全。
多种安全保护机制
包含制动器确认逻辑、编码器故障检测、电机堵转检测、制动失败告警等,满足EN、ANSI标准下的工业安全要求。
自学习电机参数调校
启动前可执行电机参数自动识别,提高驱动控制精度和效率,尤其适合替换原设备电机或改造场合。
起重设备专用功能参数组
设定界面专门针对起升、横移、纵移三种典型驱动方式,参数分类清晰,调试方便。
典型应用领域
桥式起重机主起升与辅助行走机构
门式起重机吊具控制系统
电动葫芦变频驱动装置
抓斗式起重设备(带制动协调控制)
冶金起重设备的速度调节与防滑控制
重载装卸设备的运动协调与负载管理
英文资料:
MAGNETEK CIMR-G5M41P5 Vector Crane Controller
product overview
CIMR-G5M41P5 is a vector control variable frequency drive/controller customized for lifting equipment in the Magnetek G5 series, with high reliability, high response, and motion control performance optimized for lifting conditions.
Core product features
Vector control optimized specifically for lifting conditions
Adopting closed-loop/open-loop magnetic flux vector control technology to achieve high-precision lifting and walking control;
Maintain strong torque at low speeds to prevent slipping or drifting during heavy loads.
Four quadrant operation support
Support lifting/lowering and forward/reverse braking control, compatible with regenerative braking module, to achieve energy feedback or efficient braking.
Anti sway function
An optional anti sway control logic module can be used for applications such as bridge cranes and grab buckets, effectively reducing load sway and improving lifting efficiency and safety.
Quick response braking logic
Built in brake control curve setting, supporting rapid shutdown and coordinated braking control in case of power failure, enhancing personnel and equipment safety.
Multiple security protection mechanisms
Including brake confirmation logic, encoder fault detection, motor stall detection, brake failure alarm, etc., it meets the industrial safety requirements under EN and ANSI standards.
Self learning motor parameter tuning
Before starting, automatic recognition of motor parameters can be performed to improve the accuracy and efficiency of drive control, especially suitable for replacing original equipment motors or retrofitting situations.
Special functional parameter group for lifting equipment
The setting interface is specifically designed for three typical driving modes: lifting, lateral movement, and longitudinal movement, with clear parameter classification and easy debugging.
Typical application areas
Main lifting and auxiliary walking mechanism of bridge crane
Control system for gantry crane lifting equipment
Variable frequency drive device for electric hoist
Grab bucket lifting equipment (with brake coordinated control)
Speed regulation and anti-skid control of metallurgical lifting equipment
Motion coordination and load management of heavy-duty loading and unloading equipment
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