The STB NIP 2212 NIM

Logic Power

The figure below shows how the NIM’s integrated power supply generates logic

Flow

power and sends it across the primary segment:

5V

24 V

24 VDC

The figure below shows how the 24 VDC signal is distributed to an extension segment across the island:

5 V

5 V

24 V

24 V

24 VDC

The logic power signal is terminated in the STB XBE 1000 module at the end of the segment (EOS).

Island Bus Loads The built-in power supply produces 1.2 A of current for the island bus. Individual STB I/O modules generally draw a current load of between 50 and 90 mA. (Consult the Advantys STB Hardware Components Reference Guide (890 USE 172 00) for a particular module’s specifications.) If the current drawn by the I/O modules totals more than 1.2 A, additional STB power supplies need to be installed to support the load.

38

890USE17700 April 2004

Page 38
Image 38
Schneider Electric 890USE17700 manual Logic Power, Flow Power and sends it across the primary segment

890USE17700 specifications

Schneider Electric has long been recognized as a leader in energy management and automation solutions, and one of its innovative offerings is the Schneider Electric 890USE17700. This product is part of the company's comprehensive portfolio aimed at enhancing energy efficiency and operational performance across various sectors.

The 890USE17700 is primarily designed for use in industrial applications, serving as an advanced device that can significantly contribute to smarter energy usage. One of its main features is its ability to optimize energy consumption through intelligent control systems. This is achieved through real-time monitoring and analysis, allowing users to identify inefficiencies and implement corrective actions swiftly.

Equipped with state-of-the-art technology, the 890USE17700 incorporates Schneider Electric's EcoStruxureâ„¢ platform, which leverages the Industrial Internet of Things (IIoT) principles. This platform allows for seamless connectivity of devices and systems, enabling users to collect valuable data that can drive decision-making processes. Moreover, the real-time analytics provided by this technology ensure that organizations can respond promptly to changing operational conditions.

Safety and reliability are other key characteristics of the 890USE17700. The device is built with robust safety features that comply with international standards, ensuring protection against electrical faults and other potential hazards. This not only enhances the operational reliability of industrial systems but also supports compliance with regulatory requirements.

The 890USE17700 also offers flexibility in deployment, allowing it to integrate with existing systems and infrastructure without significant modifications. Its user-friendly interface simplifies setup and programming, making it accessible for various levels of technical expertise. This ease of use encourages widespread adoption across diverse industrial environments.

In summary, the Schneider Electric 890USE17700 stands out as a premier solution for organizations aiming to enhance their energy efficiency and operational performance. Its integration with the EcoStruxure platform, focus on safety, and flexibility make it a compelling choice for modern industrial applications. As industries continue to evolve towards smarter and more sustainable practices, the 890USE17700 is poised to play a crucial role in this transformation.