The Siemens 3UF7012-1AU00-0 is a sophisticated motor management system designed to offer comprehensive protection and monitoring for electric motors. As part of the SIRIUS product family, this basic unit is engineered to integrate seamlessly into a variety of industrial applications, ensuring efficient and reliable operation.
This unit features a MODBUS RTU interface with a 57.6 Kbps transfer rate and RS 485 communication capabilities, allowing for easy integration into existing networks and facilitating straightforward data exchange. The device is equipped with 4 inputs and 3 outputs, all of which are freely parameterizable to suit specific control needs. Additionally, it supports an input for thermistor connection, enhancing its protective functions.
The SIMOCODE pro V MR operates with a control supply voltage ranging from 110 to 240 V AC/DC, making it versatile for global applications. It boasts monostable relay outputs and can be expanded with various extension modules to tailor its functionality further.
With an insulation voltage rated at 300 V and a surge voltage resistance of 4,000 V, the unit is built to withstand challenging industrial environments. It also features a robust design that is shock and vibration resistant, compliant with IEC 60068-2-27 standards, ensuring durability and a long service life.
The device's compact dimensions allow for flexible installation options, and it can be mounted in any position to accommodate different spatial requirements. The unit's IP20 protection class signifies that it is protected against solid objects larger than 12.5 mm, making it suitable for use in controlled environments.
The Siemens 3UF7012-1AU00-0 is a reliable and adaptable solution for motor management, offering features such as bus communication, data acquisition, diagnostics, password protection, and maintenance functions. Its comprehensive protective and monitoring functions include asymmetry detection, blocking current evaluation, power factor monitoring, and more, providing a high level of motor safety and operational efficiency.