GIDINGS&LEWIS 501-03865-01伺服控制板 PDF资料
1.产 品 资 料 介 绍:
GIDINGS&LEWIS 501-03865-01 伺服控制板
产品概述
GIDINGS&LEWIS 501-03865-01 伺服控制板是一种工业自动化系统中的核心执行模块,用于精确控制伺服电机的速度、位置和扭矩。该控制板通过接收主控制器的指令信号,生成适合伺服电机的驱动信号,实现高精度运动控制。它广泛应用于数控机床、自动化生产线、多轴运动平台和机器人系统。
技术参数(典型特性,实际数值需参考官方资料)
控制方式:闭环位置控制、速度控制和扭矩控制
输入信号:支持数字量和模拟量控制信号
输出能力:可驱动多种规格伺服电机,支持连续运行及短时过载
反馈接口:支持编码器或旋转变压器等位置/速度反馈设备
动态性能:高速响应,适用于复杂运动控制
保护功能:具备过流、过压、过热及短路保护
安装方式:模块化板卡,可插入系统机架或控制单元
环境适应性:工业级设计,耐高温、振动及电磁干扰
应用场景
数控机床 (CNC)
控制主轴、进给轴及多轴联动,实现高精度加工和复杂刀路操作。
自动化生产线
驱动输送、装配及检测设备,实现生产流程的精准控制。
机器人系统
控制各关节伺服电机,实现精确定位和轨迹控制。
多轴运动平台
在工业搬运、切割或焊接设备中实现同步运动与协调控制。
过程控制行业
在冶金、造纸、化工等连续生产系统中实现伺服驱动的精确调节和控制。
英文资料:
GIDINGS&LEWIS 501-03865-01 servo control board
Product Overview
GIDINGS&LEWIS 501-03865-01 servo control board is a core execution module in industrial automation systems, used for precise control of the speed, position, and torque of servo motors. This control board generates drive signals suitable for servo motors by receiving instruction signals from the main controller, achieving high-precision motion control. It is widely used in CNC machine tools, automated production lines, multi axis motion platforms, and robot systems.
Technical parameters (typical characteristics, actual values need to refer to official materials)
Control methods: closed-loop position control, speed control, and torque control
Input signal: Supports digital and analog control signals
Output capability: capable of driving various specifications of servo motors, supporting continuous operation and short-term overload
Feedback interface: Supports position/velocity feedback devices such as encoders or rotary transformers
Dynamic performance: High speed response, suitable for complex motion control
Protection function: equipped with overcurrent, overvoltage, overheating, and short circuit protection
Installation method: Modular board, can be inserted into the system rack or control unit
Environmental adaptability: Industrial grade design, resistant to high temperature, vibration, and electromagnetic interference
Application scenarios
Numerical Control Machine Tool (CNC)
Control the spindle, feed axis, and multi axis linkage to achieve high-precision machining and complex tool path operations.
Automatic production line
Drive conveying, assembly, and testing equipment to achieve precise control of the production process.
robot system
Control the servo motors of each joint to achieve precise positioning and trajectory control.
Multi axis motion platform
Realize synchronous motion and coordinated control in industrial handling, cutting, or welding equipment.
Process control industry
Realize precise adjustment and control of servo drive in continuous production systems such as metallurgy, papermaking, and chemical engineering.
2.产 品 展 示
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