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  • GIDINGS&LEWIS M.1017.6270 Analog Input Module
  • GIDINGS&LEWIS M.1017.6270 Analog Input Module
GIDINGS&LEWIS M.1017.6270 Analog Input Module GIDINGS&LEWIS M.1017.6270 Analog Input Module

GIDINGS&LEWIS M.1017.6270 Analog Input Module

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  • Delivery date: stock
  • The quality assurance period: 365 days
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GIDINGS&LEWIS M.1017.6270 Analog Input Module

Product Details Introduction

GIDINGS&LEWIS M.1017.6270 Analog Input Module

Product Overview

M. 1017.6270 is an analog input module in Giddings&Lewis control systems, used to collect various analog signals (such as voltage, current, or sensor outputs) and convert them into data that can be processed by the control system. This module is one of the key interface modules for CNC machine tools, automated production lines, and industrial robot systems, used for precise monitoring and control of industrial processes.

Product Features

High precision acquisition

Support multi-channel analog signal input to ensure signal acquisition accuracy and stability.

It can handle voltage or current signals of different amplitudes and adapt to various sensor types.

quick response

Low latency signal processing meets the high-speed data acquisition requirements of real-time control systems.

Industrial grade reliability

Resistant to vibration, high temperature, and electromagnetic interference, suitable for harsh industrial environments.

Built in short circuit and overload protection to enhance system safety.

modular design

It can be directly installed in the control system rack for easy maintenance and replacement.

Compatible with G&L CPUs, servo drivers, and other I/O modules.

multi-functional application

Can be used to monitor temperature, pressure, flow rate, and other industrial process parameters.

Support closed-loop control, data acquisition, and process optimization functions.

Product application areas

Numerical control machine tool system: collects analog sensor signals of spindle, feed axis, and cutting tools for precision machining control.

Automated production line: monitoring parameters such as speed, pressure, temperature, etc. to achieve production process optimization.

Industrial robot system: Collecting data from force sensors or position sensors to achieve precise motion control.

Packaging and printing machinery: Monitor industrial parameters such as conveying speed, tension, and pressure to ensure processing accuracy.

Testing and experimental platform: Provides support for multi-channel analog signal acquisition and analysis.

Product imag

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