GIDDINGS & LEWIS M.1017.3774步进驱动器 PDF资料
1.产 品 资 料 介 绍:
产品概述
M.1017.3774 是 GIDDINGS & LEWIS 的步进驱动器模块,专为需要精确步进控制的工业设备设计。它通过脉冲信号直接控制步进电机的角位移,实现简单、可重复的定位操作。与伺服系统相比,步进驱动器无需闭环反馈即可保持固定角度定位,适合重复性高、速度和扭矩要求中等的机械动作场景。
技术特点
开环驱动设计:无需外部编码器即可实现精确步距控制,降低系统复杂度。
脉冲控制输入:兼容标准步进脉冲信号,实现数字化运动控制。
微步驱动功能:支持细分步进,提高运动平滑性和定位精度。
过流与过热保护:确保驱动器和电机在高负载条件下安全运行。
紧凑模块化:占用空间小,方便安装到控制柜或机床内部。
应用场景
小型精密定位设备
适用于精密装配机、测量平台或小型传送装置的重复定位控制。
自动化生产线
对夹持装置、搬运机构或分拣系统进行可靠步进动作控制。
低速高精度加工
在钻孔、雕刻、丝杠传动等场景中,实现稳定步进和重复定位。
实验室自动化与测试设备
精确移动实验台或测试工具,实现重复实验和测量操作。
产品优势
高定位精度:微步驱动模式可实现更平滑的运动和更高的重复精度。
操作简便:开环控制减少了系统调试难度和维护成本。
稳定可靠:工业级设计,适应高温、高湿和振动环境。
经济高效:无需闭环反馈即可实现可靠定位,成本低于伺服系统。
灵活集成:小体积设计便于与各种步进电机和控制器组合。
英文资料:
Product Overview
M. 1017.3774 is a stepper driver module from GIDINGS&LEWIS, designed specifically for industrial equipment that requires precise stepper control. It directly controls the angular displacement of the stepper motor through pulse signals, achieving simple and repeatable positioning operations. Compared with servo systems, stepper drives can maintain fixed angle positioning without closed-loop feedback, making them suitable for mechanical action scenarios with high repeatability, moderate speed and torque requirements.
Technical Features
Open loop drive design: Accurate step control can be achieved without the need for an external encoder, reducing system complexity.
Pulse control input: compatible with standard step pulse signals to achieve digital motion control.
Microstep driving function: supports subdivision of steps, improves motion smoothness and positioning accuracy.
Overcurrent and Overheat Protection: Ensure safe operation of the driver and motor under high load conditions.
Compact modularity: occupying small space, easy to install inside control cabinets or machine tools.
Application scenarios
Small precision positioning equipment
Suitable for repetitive positioning control of precision assembly machines, measurement platforms, or small conveyors.
Automatic production line
Reliable step-by-step action control of clamping devices, handling mechanisms, or sorting systems.
Low speed high-precision machining
In scenarios such as drilling, carving, and screw drive, achieve stable stepping and repeated positioning.
Laboratory Automation and Testing Equipment
Accurately move the experimental platform or testing tool to achieve repeated experiments and measurement operations.
Product advantages
High positioning accuracy: The micro step driving mode can achieve smoother motion and higher repeatability accuracy.
Easy to operate: Open loop control reduces the difficulty of system debugging and maintenance costs.
Stable and reliable: Industrial grade design, suitable for high temperature, high humidity, and vibration environments.
Economic efficiency: Reliable positioning can be achieved without closed-loop feedback, with lower costs than servo systems.
Flexible integration: The small size design makes it easy to combine with various stepper motors and controllers.
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