Product Short Description

Technical Specifications

  • Communication Protocols:
    • PROFIBUS DP/DP-V1 (up to 12 Mbit/s).
    • MasterBus 300 (MB300) for integration with ABB System 800xA DCS.
    • Ethernet support (10/100 Mbps) for network redundancy.
  • Channels:
    • Dual independent communication channels for redundancy.
  • Connectors:
    • PROFIBUS DP: 9-pin D-sub female connectors.
    • Ethernet: RJ45 ports for network redundancy.
  • Power Supply:
    • Dual power redundancy: DC 9-36 V (typical 24 V DC).
    • Power consumption: <5 W.
    • Protection: DC 1500 V voltage isolation, reverse polarity protection.
  • Physical Dimensions:
    • Width: 132 mm, Height: 105 mm, Depth: 52 mm.

Description

  • Weight: Approximately 800 g.
  • Operating Temperature: -10°C to +70°C (wide-temperature version: -40°C to +85°C).
  • Storage Temperature: -40°C to +85°C.
  • Relative Humidity: ≤90% (non-condensing).
  • Protection Class: IP30 (dust and water resistance).
  • Mounting: 35 mm DIN rail installation.
  • Certifications:
    • EN55022:2010 (RE), EN61000-4-2:2001 (ESD), EN61000-4-3:2006 (RS).

Functional Features

  • High Reliability:
    • Industrial-grade components ensure stable operation in extreme conditions (vibration, electromagnetic interference).
  • Redundancy Support:
    • Dual-channel design with network redundancy and hot-swapping capability minimizes downtime.
  • Multi-Protocol Compatibility:
    • Supports PROFIBUS DP/DP-V1, MB300, and Ethernet protocols for seamless integration with ABB and third-party devices.
  • Self-Diagnostics and Protection:
    • Built-in fault detection for fiber link failures and power issues, with relay alarm outputs (DC 48 V/1 A).
  • Easy Installation:
    • Modular design with DIN rail mounting simplifies setup and maintenance.
  • Scalability:
    • Part of the ABB AC 800M I/O system, allowing flexible expansion of I/O capacity.

Application Scenarios

  • Factory Automation:
    • Connects remote I/O modules, sensors, and actuators in automotive, electronics, and food/beverage manufacturing for real-time control.
  • Process Control:
    • Integrates smart instruments, valve positioners, and frequency converters in chemical, petrochemical, and pharmaceutical plants for distributed process monitoring.
  • Energy Management:
    • Monitors and controls motor control centers (MCCs), low-voltage switchgear, and renewable energy systems (e.g., wind turbines, solar inverters) in power generation and distribution networks.
  • Water Treatment:
    • Links water quality analyzers, pump stations, and control equipment to build automated water treatment systems with real-time data acquisition.
  • Material Handling:
    • Controls conveyors, stackers, and warehouse management systems in logistics centers for efficient automation of material flow.
  • Building Automation:
    • Manages HVAC, lighting, and security systems in smart buildings for energy-efficient operation.

Key Advantages

  • Enhanced System Availability:
    • Redundant design ensures continuous operation even during communication failures.
  • Scalability:
    • Modular architecture allows easy expansion to meet evolving automation needs.
  • Cost Efficiency:
    • Reduces wiring complexity and maintenance costs through multi-protocol support and hot-swapping capability.
  • Future-Proofing:
    • Aligns with Industry 4.0 trends by enabling integration with smart devices and predictive maintenance systems.

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