IS200SRTDH2ACB | GE | IS200SRTDH2ACB | Analog Input Module

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IS200SRTDH2ACB | GE | IS200SRTDH2ACB | Analog Input Module

(1 customer review)

¥2,321.00

Description


  IS200SRTDH2ACB – DRL TERMBD RTD is available in stock which ships the same day.

  IS200SRTDH2ACB – DRL TERMBD RTD comes in UNUSED as well as REBUILT condition.

  To avail our best deals for IS200SRTDH2ACB – DRL TERMBD RTD, contact us and we will get back to you within 24 hours.


  IS200SRTDH2ACB Other names:

Main control board IS200SRTDH2ACB

IS200SRTDH2ACB PCB module

Digital module IS200SRTDH2ACB

GE IS200SRTDH2ACB analog input module is designed to receive and process analog signals from external sensors or devices. These analog signals usually represent various physical parameters such as temperature, pressure, flow, voltage and current, etc., and play a vital role in industrial automation and control systems.

  Product Features

 Multi-channel design: The module usually has multiple analog input channels, which can connect multiple analog sensors or devices to meet the needs of complex industrial automation systems. The number of channels may vary depending on the specific model, but the multi-channel design enables the module to process multiple input signals simultaneously, improving the efficiency and reliability of the system.

High resolution: The resolution of the module refers to the minimum change in the input signal that it can recognize and represent. The GE IS200SRTDH2ACB has a higher resolution, which can provide more accurate measurements and more detailed data, thereby improving the control accuracy and stability of the system.

Fast response time: The module’s response time can reach the microsecond level, which can quickly respond to changes in input signals and transmit them to the control system in real time. This helps to achieve faster control and fault response, and improves the overall performance of the system.

Wide frequency response range: The frequency response range of the GE IS200SRTDH2ACB can reach more than 20kHz, and it can handle complex input waveform signals. This gives the module a significant advantage in applications that require high-frequency signal detection.

High precision and linearity: The module has high precision and linearity, and can accurately reflect the size and change trend of the input signal. This helps to achieve more precise control and monitoring, and improves the reliability and stability of the system.

Multiple communication interfaces: GE IS200SRTDH2ACB is usually equipped with interfaces for communicating with the main control system, such as Modbus, Ethernet/IP, etc. These communication interfaces enable the module to be easily integrated with various control systems to achieve data sharing and remote monitoring.

No input saturation: Because the Rogowski principle is adopted, the magnetic core that must be used in the traditional mutual inductor principle or Hall principle is abandoned, so that the input range of the product can be very large without affecting the performance.

Fast response time: The response time can reach the microsecond level, which is suitable for fault recording in power systems.

Good linearity: The linearity of the output can reach 0.2%, which can accurately reflect the size of the input signal.

Small size and light weight: Under the same input range, compared with traditional mutual inductor principle and Hall principle products, it is smaller and lighter.


  Technical Specifications

Number of channels: GE IS200SRTDH2ACB modules usually have multiple analog input channels, which can connect multiple analog sensors or devices. The number of channels varies according to the specific model.

Input range: Supports a specific range of input signals to adapt to the output range of different sensors or devices, including voltage signals, current signals, etc.

Resolution: Resolution indicates the accuracy with which the module can measure and represent the input signal, usually expressed in the number of bits (such as 16 bits or 12 bits). Higher resolution means more accurate measurement.

Sampling rate: The sampling rate indicates how often the module samples the input signal. A higher sampling rate can provide more detailed data, but it also requires more computing resources.

Communication interface: Has an interface for communicating with the main control system to transmit analog input data to the control system. Common industrial communication protocols such as Modbus, Ethernet/IP, etc. are usually supported.


  Application areas

GE IS200SRTDH2ACB analog input modules are widely used in various industrial fields, including manufacturing, power, chemical, water treatment, oil and gas, etc. In these fields, the module is connected with sensors, instruments and other analog devices to realize data acquisition and control tasks. By receiving and processing analog signals, the module provides key data support for industrial automation control systems and realizes precise control and monitoring of production processes.


  Product wiring and installation

The products of GE IS200SRTDH2ACB analog input module are divided into two parts: sensor head and integrator. The sensor head and integrator are connected by shielded wire. When wiring, it is necessary to connect correctly according to the wiring diagram in the product manual. At the same time, the module also supports DIN35 rail installation or screw fixed installation, which is convenient for users to select and install according to actual needs.


  Configuration and programming

GE IS200SRTDH2ACB module usually needs to be configured and programmed to meet specific application requirements. Users can set the input range, sampling rate and other parameters to meet the requirements of data acquisition and control tasks.


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1 review for IS200SRTDH2ACB | GE | IS200SRTDH2ACB | Analog Input Module

  1. admin

    admin

    Product Features

     Multi-channel design: The module usually has multiple analog input channels, which can connect multiple analog sensors or devices to meet the needs of complex industrial automation systems. The number of channels may vary depending on the specific model, but the multi-channel design enables the module to process multiple input signals simultaneously, improving the efficiency and reliability of the system.

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