Application Area:Industrial Automation
Module Type:Analog Input/Output
Manufacturer:Siemens
Model Number:6ES7 234-4HE32-0XB0
Series:S7-1500
Technology:Profibus DP
Power Supply:24VDC
Signal Handling Capacity:Up to 32 Channels
Operating Temperature Range:-25°C to +60°C
Reliability Rating:IP20
Communication Interface:Profinet
Memory Capacity:16K Words
Expansion Options:Up to 16 additional modules
Fieldbus Compatibility:OPC-UA
Safety Features:Safety Integrated (Siemens safety technology)
The Siemens 6ES7 234-4HE32-0XB0 is a highly precise and reliable analogue input/output module designed for industrial automation environments. This compact yet powerful device offers seamless integration with a wide range of control systems, ensuring optimal performance in diverse manufacturing processes.
Equipped with advanced signal processing capabilities, it supports various signal types including 4-wire RTD and thermocouples, making it versatile for a multitude of measurement tasks. Its compatibility with the Profinet communication interface facilitates efficient data exchange with other components in the automation system.
Offering compliance with IEC 61508 safety standards, this module ensures a high level of operational safety and reliability, making it an ideal choice for critical control applications. It operates within a temperature range of -25°C to +60°C, ensuring robust functionality under varying environmental conditions.
With a typical power consumption of 12W and a maximum current output of 10mA, this module is energy-efficient and capable of driving small actuators or providing accurate control signals. The compact size and lightweight design make it easy to install and integrate into existing automation setups.
Designed with durability in mind, the Siemens 6ES7 234-4HE32-0XB0 is a cost-effective solution for enhancing the accuracy and efficiency of your industrial automation systems. Whether you’re looking to upgrade existing equipment or build new control systems, this module provides a solid foundation for achieving optimal process control and automation.
