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ABB CI801 3BSE022366R1
ABB CI801 3BSE022366R1
ABB CI801 3BSE022366R1
ABB CI801 3BSE022366R1
ABB CI801 3BSE022366R1
ABB CI801 3BSE022366R1
· Product image is representative; revision or series may vary. Contact us to request a specific version.

CI801 3BSE022366R1

PROFIBUS FCI S800 Interface
In Stock

Product Information:

CI801 PROFIBUS FCI S800 Interface

Power Supply Connector

Modulebus Terminator

S800 I/O Communication interfaces

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Technical specifications for CI801 3BSE022366R1

  • Manufacturer:
    ABB
  • Product Category:
    DCS System
  • Estimated shipping dimensions:
    5.85 x 13.6 x 8.56 cm
  • Weight:
    0.3 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    SWEDEN
  • Place of shipment:
    Xiamen, Fujian, China
  • Communication protocol:
    PROFIBUS DP-V1
  • Master or slave:
    Slave
  • Product Type:
    Communication Module
  • RoHS Status:
    Following EU Directive 2011/65/EU
  • WEEE Category:
    Small Equipment
  • 24 V consumption typ.:
    140 mA
  • Temperature, Operating:
    0 to +55 °C (+32 to +131 °F), approvals are issued for +5 to +55 °C
  • Temperature, Storage:
    -40 to +70 °C (-40 to +158 °F)
  • Stock:
    60

Information

Overview Manuals Principle Applications Compatibility

Features:

  • OSP handling and configuration
  • Supervisory functions of I/O ModuleBus
  • PROFIBUS DP PROFIBUS-DPV1 fieldbus interface
The S800 I/O is a comprehensive, distributed, and modular process I/O system that communicates with upstream controllers and PLCs via an industry-standard fieldbus. The CI801 Fieldbus Communication Interface (FCI) module is a configurable communication interface capable of performing signal processing, monitoring information acquisition, OSP processing, hot configuration operations, HART pass-through, and I/O module configuration. The FCI connects to the controller via the PROFIBUS-DPV1 fieldbus.

The CI801 3BSE022366R1 enables efficient communication on the system bus, supporting real-time transmission of process data, sensor readings, and actuator commands between the controller and remote I/O modules. This capability facilitates precise monitoring and control of industrial processes in complex automation environments.

The CI801 3BSE022366R1 ABB PROFIBUS FCI S800 Interface may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
ABB CI801 3BSE022366R1 PROFIBUS FCI S800 Interface maunal(Datasheets), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
The CI801 3BSE022366R1 uses digital communication based on the S800 I/O system bus. The controller sends control commands and configuration data to the modules via the internal communication network. The CI801 3BSE022366R1 receives these digital signals and distributes them to the connected I/O modules, while simultaneously collecting process data and diagnostic information from these modules. This information is then transmitted back to the controller via the system bus. Through this continuous bidirectional data exchange, the CI801 3BSE022366R1 can monitor system operation.
1. Distributed Control Systems (DCS): Crucial for integrating remote S800 I/O clusters into centralized control architectures.
2.Process Automation: Widely used in industries requiring high-speed data exchange, such as pharmaceuticals, chemicals, and power generation.
3.HART Pass-Through: Enables HART instrument management by allowing configuration data to be passed from the controller to field instruments via I/O modules.
4.Marine and Marine Engineering: Certified by major marine agencies (ABS, DNV-GL, LR) for use in ship automation and offshore platforms.
Unsupported Modules: The standard system software of the CI801 does not support certain I/O modules, including DI825, DI830, DI831, DI885, AI880, DI880, and DO880.
Included Accessories: Each device typically includes a power connector and a TB807 module bus terminator.

Ask our team:

  • What primary communication functionality does the CI801 3BSE022366R1 provide within distributed industrial control architectures? The ABB CI801 3BSE022366R1 serves as a communication interface module designed to facilitate high-speed data exchange between ABB S800 I/O modules and higher-level controllers through an industrial fieldbus communication protocol. 2. How does the CI801 3BSE022366R1 enable deterministic data transmission between remote I/O units and the central control system? The CI801 3BSE022366R1 implements industrial fieldbus communication mechanisms that allow cyclic and acyclic data exchange, ensuring that process variables and control commands are transmitted reliably and within predictable timing intervals. 3. Which ABB automation platforms are typically designed to operate in conjunction with the CI801 3BSE022366R1 communication interface? The CI801 3BSE022366R1 is commonly deployed within ABB distributed control environments such as System 800xA and other automation systems that utilize the S800 I/O architecture. 4. Why is the CI801 3BSE022366R1 considered an essential gateway for integrating field-level devices into industrial automation networks? The CI801 3BSE022366R1 acts as a bridge between field devices and the control processor, enabling sensor and actuator data to be transmitted from distributed I/O modules to the central controller for processing and control logic execution. 5. What interrogative advantages distinguish the CI801 3BSE022366R1 in large-scale distributed control system deployments? The CI801 3BSE022366R1 offers reliable communication performance, modular scalability, and compatibility with ABB’s distributed I/O architecture, making it suitable for complex automation environments that require robust network connectivity. 6. How does the CI801 3BSE022366R1 support diagnostic monitoring within industrial communication infrastructures? The CI801 3BSE022366R1 provides diagnostic capabilities that enable engineers to monitor communication status, detect network faults, and identify abnormal operating conditions in the I/O communication network. 7. What environmental operating conditions define the reliability envelope of the CI801 3BSE022366R1 module? The CI801 3BSE022366R1 is engineered to operate in demanding industrial environments, typically supporting a wide temperature range and robust resistance to electrical noise and mechanical vibration. 8. How does the CI801 3BSE022366R1 contribute to the scalability of ABB S800 I/O installations? The CI801 3BSE022366R1 enables distributed I/O expansion by allowing multiple I/O modules to communicate efficiently with the controller through the fieldbus network. 9. In which industrial sectors is the CI801 3BSE022366R1 most frequently utilized? The CI801 3BSE022366R1 is widely applied in industries such as power generation, oil and gas processing, chemical manufacturing, and large-scale industrial automation systems. 10. How does the CI801 3BSE022366R1 enhance the reliability of real-time process control operations? The CI801 3BSE022366R1 ensures reliable and deterministic communication between distributed field devices and the control processor, enabling the automation system to respond quickly to process changes. 11. What installation considerations should engineers evaluate when integrating the CI801 3BSE022366R1 into a control cabinet environment? When installing the CI801 3BSE022366R1, engineers should ensure proper system bus connections, maintain adequate electromagnetic shielding, and verify stable power supply conditions to guarantee optimal communication performance.
    What primary communication functionality does the CI801 3BSE022366R1 provide within distributed industrial control architectures? The ABB CI801 3BSE022366R1 serves as a communication interface module designed to facilitate high-speed data exchange between ABB S800 I/O modules and higher-level controllers through an industrial fieldbus communication protocol. 2. How does the CI801 3BSE022366R1 enable deterministic data transmission between remote I/O units and the central control system? The CI801 3BSE022366R1 implements industrial fieldbus communication mechanisms that allow cyclic and acyclic data exchange, ensuring that process variables and control commands are transmitted reliably and within predictable timing intervals. 3. Which ABB automation platforms are typically designed to operate in conjunction with the CI801 3BSE022366R1 communication interface? The CI801 3BSE022366R1 is commonly deployed within ABB distributed control environments such as System 800xA and other automation systems that utilize the S800 I/O architecture. 4. Why is the CI801 3BSE022366R1 considered an essential gateway for integrating field-level devices into industrial automation networks? The CI801 3BSE022366R1 acts as a bridge between field devices and the control processor, enabling sensor and actuator data to be transmitted from distributed I/O modules to the central controller for processing and control logic execution. 5. What interrogative advantages distinguish the CI801 3BSE022366R1 in large-scale distributed control system deployments? The CI801 3BSE022366R1 offers reliable communication performance, modular scalability, and compatibility with ABB’s distributed I/O architecture, making it suitable for complex automation environments that require robust network connectivity. 6. How does the CI801 3BSE022366R1 support diagnostic monitoring within industrial communication infrastructures? The CI801 3BSE022366R1 provides diagnostic capabilities that enable engineers to monitor communication status, detect network faults, and identify abnormal operating conditions in the I/O communication network. 7. What environmental operating conditions define the reliability envelope of the CI801 3BSE022366R1 module? The CI801 3BSE022366R1 is engineered to operate in demanding industrial environments, typically supporting a wide temperature range and robust resistance to electrical noise and mechanical vibration. 8. How does the CI801 3BSE022366R1 contribute to the scalability of ABB S800 I/O installations? The CI801 3BSE022366R1 enables distributed I/O expansion by allowing multiple I/O modules to communicate efficiently with the controller through the fieldbus network. 9. In which industrial sectors is the CI801 3BSE022366R1 most frequently utilized? The CI801 3BSE022366R1 is widely applied in industries such as power generation, oil and gas processing, chemical manufacturing, and large-scale industrial automation systems. 10. How does the CI801 3BSE022366R1 enhance the reliability of real-time process control operations? The CI801 3BSE022366R1 ensures reliable and deterministic communication between distributed field devices and the control processor, enabling the automation system to respond quickly to process changes. 11. What installation considerations should engineers evaluate when integrating the CI801 3BSE022366R1 into a control cabinet environment? When installing the CI801 3BSE022366R1, engineers should ensure proper system bus connections, maintain adequate electromagnetic shielding, and verify stable power supply conditions to guarantee optimal communication performance.
  • How does the CI801 3BSE022366R1 enable deterministic data transmission between remote I/O units and the central control system?
    The CI801 3BSE022366R1 implements industrial fieldbus communication mechanisms that allow cyclic and acyclic data exchange, ensuring that process variables and control commands are transmitted reliably and within predictable timing intervals.
  • Which ABB automation platforms are typically designed to operate in conjunction with the CI801 3BSE022366R1 communication interface?
    The CI801 3BSE022366R1 is commonly deployed within ABB distributed control environments such as System 800xA and other automation systems that utilize the S800 I/O architecture.
  • Why is the CI801 3BSE022366R1 considered an essential gateway for integrating field-level devices into industrial automation networks?
    The CI801 3BSE022366R1 acts as a bridge between field devices and the control processor, enabling sensor and actuator data to be transmitted from distributed I/O modules to the central controller for processing and control logic execution.
  • What interrogative advantages distinguish the CI801 3BSE022366R1 in large-scale distributed control system deployments?
    The CI801 3BSE022366R1 offers reliable communication performance, modular scalability, and compatibility with ABB’s distributed I/O architecture, making it suitable for complex automation environments that require robust network connectivity.
  • How does the CI801 3BSE022366R1 contribute to the scalability of ABB S800 I/O installations?
    The CI801 3BSE022366R1 enables distributed I/O expansion by allowing multiple I/O modules to communicate efficiently with the controller through the fieldbus network.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.