GIDDINGS & LEWIS M.1017.3143步进输出模块
1.产 品 资 料 介 绍:
GIDDINGS & LEWIS M.1017.3143 步进输出模块详解
一、产品概述:运动控制的精准 “脉冲发生器”
二、核心产品特点:为精密运动保驾护航
高精度输出:微米级控制的基石
多通道设计:复杂系统的协同利器
灵活控制模式:适配多样化工艺需求
实时响应:动态运行的稳定保障
英文资料:
GIDINGS&LEWIS M.1017.3143 Step Output Module Detailed Explanation
1、 Product Overview: Precise "Pulse Generator" for Motion Control
The GIDINGS&LEWIS M.1017.3143 stepper output module, as a key interface module in motion control systems, plays the role of an "instruction translator" - it converts control signals from CNC systems or automation control systems into recognizable driving pulses and directional signals for stepper motors, directly determining the accuracy and stability of the actuator's actions.
Whether in single axis positioning of precision machine tools or multi axis collaborative scenarios of automated production lines, this module can ensure that the stepper motor runs according to the preset trajectory through precise signal output, and is the core hub connecting the control system and the executing components.
2、 Core Product Features: Escort Precision Motion
High precision output: the cornerstone of micrometer level control
The module supports high-resolution pulse signal output, with pulse accuracy reaching microsecond or even nanosecond levels. For example, when controlling a stepper motor with a step angle of 1.8 °, subdivision control can be achieved through high-resolution pulse output (such as 2000 subdivisions/rotation), and the minimum movement angle can be controlled at 0.0009 °, corresponding to a worktable with a diameter of 100mm, with a positioning accuracy of 0.001mm level. This precision ensures that every step of the actuator's action is precise and error free in scenarios such as electronic component mounting and precision engraving.
Multi channel design: a collaborative tool for complex systems
Adopting a multi-channel independent pulse output channel design (the specific number of channels depends on the model), each channel does not interfere with each other and can control multiple stepper motors simultaneously. In multi axis linkage devices such as coordinate robots and 3D printers, it is possible to achieve synchronous motion of multiple axes (such as linear interpolation and arc interpolation), as well as support independent operation of each axis (such as adjusting the position of a certain axis separately), meeting the requirements of complex automation systems for multi-dimensional control.
Flexible control mode: adapted to diverse process requirements
Compatible with two core control modes: speed mode and position mode:
Speed mode: By adjusting the pulse frequency to control the speed of the stepper motor, seamless switching from low-speed smooth operation to high-speed fast movement can be achieved. It is suitable for scenarios such as conveyor belt feeding and packaging machine film traction that require constant speed operation.
Position mode: By setting the number of pulses to control the motor rotation angle, precise position positioning can be achieved. For example, in an automatic screw machine, the number of screw tightening turns can be precisely controlled, or in sorting equipment, the extension distance of the push rod can be controlled.
Real time response: stable guarantee for dynamic operation
The internal circuit has been optimized and designed, and the signal processing delay can be controlled at the microsecond level. When the upper controller issues acceleration, deceleration, or emergency stop commands, the module can adjust the pulse output in a very short time to ensure fast response of the stepper motor. For example, in a high-speed sorting system, when the sensor detects a deviation in the position of the material, the module can immediately correct the pulse signal, allowing the push rod to complete position compensation within 10ms and avoid material sorting errors.
2.产 品 展 示
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