ABB TU833 3BSE038726R1 Extended Module Termination Unit
The ABB TU833 3BSE038726R1 Extended Module Termination Unit is an essential component in industrial automation systems, designed to enhance signal integrity and facilitate seamless data transmission between different control modules.
Detailed content
Application Type:Industrial Automation
Power Supply Voltage:100-240VAC
Current Capacity:4A
Input Signal Type:Digital & Analog
Communication Protocol:MODBUS RTU
Operating Temperature Range:-25°C to +55°C
Dimensions (DxWxH):145mm x 75mm x 28mm
Weight:0.18kg
Material:Aluminum Alloy
Certifications:CE, UL, ISO 9001
This Extended Module Termination Unit from ABB is meticulously engineered for optimal performance in industrial control systems. It boasts an ergonomic design, ensuring it seamlessly fits into a variety of industrial settings. The robust construction guarantees durability under harsh conditions typically encountered in manufacturing environments.
The ABB TU833 3BSE038726R1 module is characterized by its high-quality materials, which contribute to its exceptional reliability and longevity. It’s designed to withstand frequent use without compromising on functionality or efficiency.
One of its standout features is the ease of installation and maintenance, making it accessible to a wide range of users, from experienced engineers to those new to industrial automation. The intuitive interface facilitates quick setup and troubleshooting, saving valuable time and resources.
In terms of technical specifications, this module supports a broad range of voltage and current inputs, providing versatility across different applications. It’s compatible with various ABB PLC series, ensuring seamless integration with existing systems.
Moreover, the ABB TU833 3BSE038726R1 Extended Module Termination Unit complies with stringent international safety standards, ensuring it meets the highest levels of quality and reliability expected in the industrial sector. Its compact size and lightweight design make it an ideal choice for space-constrained environments, enhancing operational efficiency.