ABB 050405 E1IMII, Factory-Designed for Advanced Automation Solutions
The GE 050405 E1IMII is a high-performance I/O module designed for industrial automation, offering enhanced reliability and efficiency in data acquisition and control systems.
The GE 050405 E1IMII is a high-performance I/O module designed for industrial automation, offering enhanced reliability and efficiency in data acquisition and control systems.
Brand:ABB
Model:050405 E1IMII
Module Type:Control
Operating Frequency:Up to 10 kHz
Response Time:Less than 1 ms
Input Capacity:8 digital inputs
Output Capacity:4 relay outputs
Operating Temperature Range:-20°C to +70°C
Power Supply:DC 24V
Communication Protocol:Modbus TCP/IP, CANopen
Dimensions:96 x 96 x 107 mm
Weight:250 g
The GE 050405 E1IMII is engineered with precision in mind, ensuring reliable performance in demanding industrial environments. Its compact design fits seamlessly into modern control systems, allowing for enhanced efficiency and reduced installation time.
This module supports RS-485 communication, enabling seamless integration with a wide range of industrial automation systems. The high-speed response time ensures that control actions are executed promptly, improving operational responsiveness.
With a temperature resistance spanning from -20°C to +70°C, the E1IMII is suitable for use in extreme conditions, making it ideal for industries where environmental variability is a concern.
The robust construction of the E1IMII ensures durability and reliability, backed by IP65 protection against dust and water ingress. This feature is crucial for maintaining optimal performance in harsh industrial settings.
Featuring two Form C relay contacts, the module provides versatile switching capabilities, supporting a variety of control functions. The low power consumption of 0.2 W helps in reducing overall system energy usage, contributing to cost-effective and sustainable operation.
The GE 050405 E1IMII is a high-performance I/O module designed for industrial automation, offering enhanced reliability and efficiency in data acquisition and control systems.