The GE IC695ALG626-KF Analog Input HART Module is a high-performance device designed for seamless integration into industrial automation systems, offering precise data acquisition capabilities through its advanced HART communication protocol.
The GE IC695ALG626-KF Analog Input HART Module is a high-performance device designed for seamless integration into industrial automation systems, offering precise data acquisition capabilities through its advanced HART communication protocol.
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Type:Analog Input HART Module
Model:IC695ALG626-KF
Module ID:GE IC695ALG626
Connection Type:HART-compatible
Input Channels:6
Signal Range:-20mA to +20mA
Supply Voltage:12V DC
Power Consumption:Max 120mW
Operating Temperature:-40°C to +70°C
Dimensions (mm):101 x 67 x 38
Weight:Approx. 150g
Integrating cutting-edge technology, the GE IC695ALG626-KF Analog Input HART Module is designed for industries requiring high-precision data acquisition under challenging conditions. This module seamlessly connects to a variety of sensors, enabling real-time monitoring and control.
With its robust HART compatibility, this module offers a versatile interface for communication with devices compliant with the HART protocol, ensuring seamless integration with existing systems.
Featuring 8 channels for analog inputs, it supports a wide range of applications, from temperature and pressure measurement to flow rate monitoring, making it suitable for diverse industrial sectors including oil & gas, chemical, and manufacturing.
Equipped with a fast sampling rate of 100 milliseconds, the IC695ALG626-KF ensures accurate and timely data collection, crucial for optimizing operational efficiency and maintaining safety standards in critical processes.
The module is built with industrial-grade materials, providing exceptional durability and reliability in extreme temperatures ranging from -40°C to +70°C. Its efficient power consumption minimizes energy use and reduces maintenance costs.
Designed with ease of integration in mind, the IC695ALG626-KF adheres to international safety and environmental standards, ensuring compliance and minimizing the risk of downtime due to regulatory non-compliance.