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ABB 3BUP001191R1 CI545V01 Ethernet submodule

ABB 3BUP001191R1 CI545V01 Ethernet submodule

ABB 3BUP001191R1 CI545V01 Ethernet submodule

  • Item NO.:

    3BUP001191R1 CI545V0
  • Payment:

    T/T
  • Price:

    $1000
  • Product Origin:

    Sweden
  • Color:

    NEW
  • Lead Time:

    In stock

We will arrange delivery within 3-5 days after receiving the payment.

Our express delivery: DHL and FedEx.

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ABB 3BUP001191R1 CI545V01 Ethernet Submodule

Product Overview

The ABB 3BUP001191R1 CI545V01 Ethernet Submodule is part of the ABB 800xA automation system, designed for communication and data exchange over Ethernet networks. By providing a stable and high-speed Ethernet connection, this module efficiently integrates data flow between devices, control units, and systems. The CI545V01 supports various industrial communication protocols, ensuring seamless communication between systems. It is widely used in automation control, data acquisition, remote monitoring, and equipment management applications.

Technical Specifications

  • Model: 3BUP001191R1 CI545V01

  • Type: Ethernet Submodule

  • Interface Type: Standard Ethernet interface (RJ45)

  • Communication Protocols: Supports Modbus TCP, EtherCAT, PROFINET, and other common industrial communication protocols

  • Power Supply: 24V DC (typical)

  • Operating Temperature Range: -5°C to 60°C

  • Dimensions: 160mm x 120mm x 55mm

  • Weight: 0.45 kg

  • Maximum Data Transfer Rate: 100 Mbps

  • Mounting: DIN rail mounting

  • Connection Ports: 1 Ethernet port, supports multiple device connections

Advantages & Features

  1. High-Speed Ethernet Connectivity: The CI545V01 provides stable and high-speed Ethernet connectivity, supporting data transfer rates of up to 100 Mbps, meeting the high demands for data transfer speed and stability in industrial automation control systems.

  2. Multi-Protocol Support: It supports various industrial standard communication protocols (such as Modbus TCP, EtherCAT, PROFINET), ensuring compatibility with a wide range of control devices and systems.

  3. Easy Integration & Expansion: As part of the ABB 800xA system, the CI545V01 integrates seamlessly with existing systems, enabling quick deployment and flexible expansion.

  4. Enhanced Device Management: This module enables remote device monitoring, data collection, and fault diagnostics via Ethernet, supporting efficient equipment management.

  5. High Reliability & Stability: Redundancy configurations are supported, enhancing the system’s availability and fault tolerance, ensuring the stable operation of critical production processes.

  6. Flexible Mounting: It supports DIN rail mounting, adapting to various industrial site requirements, and is easy to install and maintain.

Application Fields

  • Industrial Automation Systems: Used in automated production lines and control systems to communicate over Ethernet networks, ensuring fast data exchange between modules, devices, and systems.

  • Remote Device Monitoring & Management: Supports remote device monitoring and fault diagnostics via Ethernet, improving equipment operation and maintenance management.

  • Process Control & Data Acquisition: In industries such as petrochemical, power, and chemicals, the CI545V01 is used for real-time data collection, analysis, and transmission, optimizing production processes and monitoring production conditions.

  • Smart Manufacturing & Industrial IoT: In smart manufacturing and industrial IoT environments, the CI545V01 provides stable network connections, supporting the interconnectivity of various devices.

Precautions

 

  1. Power Supply Stability: Ensure that the module receives a stable 24V DC power supply to avoid any adverse effects from voltage fluctuations.

  2. Check Communication Lines: Regularly inspect the Ethernet connection and cables to ensure stable and reliable communication, avoiding signal loss or interference.

  3. Temperature Requirements: Install the module in an environment where the temperature is between -5°C and 60°C to prevent performance issues due to extreme temperatures.

  4. Avoid Overload: Ensure that the device connections and communication loads are within the module’s capacity to prevent system instability.

  5. Redundancy Configuration: For high availability, it is recommended to use redundancy configurations to ensure smooth system operation in case of any failure.

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