8EI4X5HWT10.0600-1
The B&R 8EI4X5HWT10.0600-1 is a high-performance digital I/O module designed for industrial automation applications. This module allows for seamless communication between field devices (such as sensors, actuators, and switches) and the central control system, providing real-time monitoring and control. It is ideal for applications in factory automation, machine control, and process monitoring.
DESCRIBE
Detailed Description:
Type: Digital I/O Module
The 8EI4X5HWT10.0600-1 is a digital input/output module that enables the transfer of digital signals between field devices and the central control system. It is specifically designed for high-speed data acquisition and precise control, making it suitable for discrete I/O applications in industrial automation.
Application:
The 8EI4X5HWT10.0600-1 module is intended for use in factory automation, machine control, and process monitoring systems. It integrates a variety of field devices, providing reliable control and monitoring capabilities for industrial processes, ensuring smooth and efficient operations.
Power Supply:
The module operates on a 24V DC power supply, which is the standard voltage for most industrial automation systems. This ensures compatibility with a wide range of devices and guarantees stable performance in industrial environments.
Mounting:
The 8EI4X5HWT10.0600-1 module is designed for DIN rail mounting, a widely-used method for securely installing industrial components in control panels. DIN rail mounting simplifies installation and maintenance while providing space-saving benefits.
Inputs/Outputs:
Inputs: 16 digital inputs (24V DC)
Outputs: 16 digital outputs (24V DC, transistor-controlled)
The 8EI4X5HWT10.0600-1 provides 16 digital inputs and 16 digital outputs. The digital inputs monitor the status of sensors, switches, and other field devices, while the outputs control actuators, relays, or other connected devices in the automation system.
Communication Protocols:
The module supports Ethernet communication, which allows for real-time data transfer between devices in the automation system. This capability facilitates seamless integration into industrial networks and ensures that data can be exchanged reliably across different control systems.
Temperature Range:
The 8EI4X5HWT10.0600-1 module operates in a temperature range of -20°C to +60°C, making it suitable for use in a variety of industrial environments, from high-temperature production floors to cooler, outdoor settings.
Protection:
The module is designed to be dust and moisture resistant, offering protection against contaminants and moisture, which is essential in industrial environments where equipment is exposed to harsh conditions.
Size & Form Factor:
The 8EI4X5HWT10.0600-1 features a compact design, optimized for DIN rail mounting. This compact form factor ensures it can be easily integrated into control panels without taking up excessive space, making it ideal for installations in confined spaces.
Key Parameters:
Type: Digital I/O Module
Power Supply: 24V DC
Mounting: DIN Rail Mountable
Inputs: 16 digital inputs (24V DC)
Outputs: 16 digital outputs (24V DC, transistor-controlled)
Temperature Range: -20°C to +60°C
Protection Rating: Dust and moisture resistant
Communication: Ethernet communication, supports multiple protocols
Size: Compact design for DIN rail installation
Applications:
Factory Automation: The 8EI4X5HWT10.0600-1 is used to interface with field devices like sensors and actuators, providing efficient control and monitoring in automated production environments.
Machine Control: It enables the control and synchronization of machines by receiving input signals from field devices and sending output signals to actuators, ensuring precise machine operation.
Process Monitoring: The module is used in process control systems to monitor the performance of field devices, providing real-time data and control capabilities.
Data Acquisition & Monitoring: The 8EI4X5HWT10.0600-1 facilitates the collection and monitoring of real-time data from industrial systems, enhancing operational efficiency and optimization.