ABB+XXD129A01 3BHE012436R0001 PEC800-BP

ABB+XXD129A01 3BHE012436R0001 PEC800-BP

  • Input Types:
    • Analog Inputs (e.g., temperature, pressure, flow)
    • Digital Inputs (e.g., binary sensors, switches)
    • Pulse Inputs (for counting or flow measurement)
  • Output Types:
    • Analog Outputs (e.g., for control valves, actuators)
    • Digital Outputs (e.g., relays, actuators, alarms)
    • Pulse Outputs (for frequency-driven devices)
  • Power Supply:
    • Nominal voltage: 24V DC (typically)
    • Power consumption: Dependent on the configuration and number of connected modules

Product Name:

ABB PEC800-BP Controller (Model: XXD129A01 / 3BHE012436R0001)


Product Description:

The ABB PEC800-BP is a high-performance, modular process controller designed for demanding industrial environments. It is part of ABB’s PEC800 series, which is optimized for advanced process automation, control, and monitoring. This specific model (XXD129A01 / 3BHE012436R0001) is widely used in applications that require precise control, enhanced reliability, and flexible integration capabilities. It features a robust architecture that is designed for harsh environments, making it suitable for use in industries such as manufacturing, energy, and utilities.

The PEC800-BP integrates seamlessly with other ABB systems, offering superior process management, high availability, and real-time control. It supports both local and remote operation modes and can be configured to support various communication protocols.


Product Parameters:

  • Type: Modular Process Controller
  • Model Number: XXD129A01 / 3BHE012436R0001
  • Manufacturer: ABB (Asea Brown Boveri)
  • Series: PEC800
  • Intended Use: Industrial automation, process control, energy management, and monitoring
  • Environment: Designed for harsh industrial environments with high reliability and long operational life.
  • Configuration: Modular design with expandability for various input/output modules and communication options.

Specifications:

  • Input Types:
    • Analog Inputs (e.g., temperature, pressure, flow)
    • Digital Inputs (e.g., binary sensors, switches)
    • Pulse Inputs (for counting or flow measurement)
  • Output Types:
    • Analog Outputs (e.g., for control valves, actuators)
    • Digital Outputs (e.g., relays, actuators, alarms)
    • Pulse Outputs (for frequency-driven devices)
  • Power Supply:
    • Nominal voltage: 24V DC (typically)
    • Power consumption: Dependent on the configuration and number of connected modules
  • Processor:
    • High-performance microprocessor with real-time processing capabilities
    • Multiple processing cores for parallel processing tasks
  • Communication Ports:
    • Ethernet/IP, Modbus, Profibus, and other industry-standard protocols
    • Serial communication for legacy systems and additional modules
  • Input/Output Expansion:
    • Scalable with I/O modules for both analog and digital signals
    • Supports remote I/O expansions
  • Mounting:
    • Rack-mounted or panel-mounted configurations
    • DIN rail mountable
  • Environmental Specifications:
    • Operating temperature: -20°C to +70°C
    • Storage temperature: -40°C to +85°C
    • Humidity: 0–95% RH, non-condensing
  • Safety and Compliance:
    • CE Marked for European Union compliance
    • UL Listed for safety
    • IEC and ISO certification for reliability and performance standards
  • Dimensions:
    • Varies based on the specific configuration and I/O modules used.
  • Weight:
    • Approx. 1.5–2.5 kg (depends on configuration)

Product Use:

The ABB PEC800-BP controller is ideal for managing complex industrial processes. Its primary use cases include:

  • Process Automation: Control and optimization of production lines, assembly systems, and industrial machines in real-time.
  • Energy Management: Monitoring and control of energy usage, distribution, and efficiency in power generation and distribution plants.
  • Remote Monitoring and Control: Capable of remote diagnostics, configuration, and troubleshooting, ensuring minimal downtime and optimal performance in distributed systems.
  • SCADA Systems Integration: Works seamlessly with SCADA systems for centralized control, monitoring, and data analysis.
  • Alarm and Safety Systems: Used to manage alarms, emergency shutdown procedures, and fail-safe systems in critical operations.
  • Data Acquisition: Collects data from sensors and systems to provide insights into production efficiency, quality control, and maintenance needs.

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