Bently Nevada 125388-01: Compact Industrial Control Module
Engineered for precision and reliability, Bently Nevada 125388-01 Half-height Module offers seamless integration into industrial automation systems, enhancing efficiency and operational stability.
Email:18005021035@163.com
Phone:+86 18005021035
Name:BeiLin
Content details
Operating Frequency Range:20 kHz – 1 MHz
Power Consumption:5 W
Communication Protocol:Modbus/TCP, DeviceNet, EtherCAT
Analog Input Channels:4
Analog Output Channels:2
Digital Input Channels:8
Digital Output Channels:4
Operating Temperature:-40°C to +70°C
Storage Temperature:-55°C to +85°C
Humidity Range:5% to 95% non-condensing
Enclosure Type:IP20
Dimensions:100 mm x 200 mm x 90 mm
Weight:0.4 kg
Integrating state-of-the-art technology, the Bently Nevada 125388-01 Half-height Module is designed for versatile applications in diverse industrial environments. Its robust yet compact form factor ensures it can be easily integrated into existing control systems without compromising on performance or space.
With support for multiple communication protocols including Modbus/TCP, DeviceNet, and EtherCAT, this module offers seamless connectivity with various industrial devices and systems, enhancing system interoperability and efficiency.
Equipped with four analog input channels, two analog output channels, eight digital input channels, and four digital output channels, the 125388-01 provides a comprehensive suite of I/O capabilities for monitoring and controlling industrial processes.
The module’s wide operating temperature range from -40°C to +70°C and high humidity tolerance make it suitable for deployment in harsh industrial conditions, ensuring reliable operation under challenging environmental factors.
Featuring an IP20 enclosure, the Bently Nevada 125388-01 is designed to withstand dust and splashing water, providing protection against common industrial hazards. This robust design, combined with its advanced diagnostic functions, ensures continuous monitoring and proactive maintenance, minimizing downtime and maximizing operational efficiency.