Brand: ABB Description:AF100 Fieldbus Comm. Interface Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty:13 Payment Term: T/T Shipping Port: ShenZhen ABB CI810B, AF100 fieldbus communication interface module, used to connect S800 I/O system and network, supports twisted pair, with a rate of up to 1Mbps, and has strong adaptability to industrial scenarios.
Manufacture |
ABB |
Model Number |
CI810B |
Ordering Number |
3BSE020520R1 |
Catalog |
800xA |
Country Of Origin |
Sweden |
HS CODE |
8517623990 |
Dimension |
12cm*7.5cm*5cm |
Packing Dimension |
14cm*10cm*7cm |
Weight |
0.75kg |
Technical Parameter
Power Supply: 24V DC
Typical Power Consumption at 24V: 190mA
Number of Channels: 2
Number of AF100 Connectors: 2
Operating temperature range: - 25 ℃ to + 60 °C
Relative Humidity: 5 - 95%
Protection Class: IP20
Functional Features
Achieve cross-network connection: ABB CI810B module achieves smooth cross-network connection between the ABB S800 I/O system and the ControlNet industrial network. It integrates high-speed communication between sensors, actuators and other devices and controllers through two-way data exchange, supports remote monitoring and central control of the entire system, and ensures smooth connection between real-time decision-making and factory operation in various industrial automation scenarios.
Flexible configuration: ABB CI810B can be flexibly configured according to different application requirements. Users can configure its parameters according to the specific requirements of their process flow, including device type, transmission rate, communication protocol, etc. It can be applied to various industrial occasions from simple manufacturing processes to advanced industrial plants.
Redundancy, hot swap: ABB CI810B module adopts a redundant design. When a module fails, the backup module takes over and switches seamlessly to ensure the continuous operation of key scenarios such as power plants; it also supports hot swap function, which can be replaced without stopping the module during maintenance, greatly shortening the maintenance time and reducing production interruptions, achieving efficient stability and zero downtime guarantee of industrial processes.
Health and Condition Monitoring: ABB CI810B includes built-in diagnostics that constantly check its own health and condition. It will be able to detect and provide communication interface fault reports to the control system, which will help proactive maintenance and notify operators before the system fails. For example, data transmission problems can be diagnosed and presented to the user along with information about the location and nature of the problem for troubleshooting.
Application Areas
Industrial Automation: ABB CI810B communication interface. For example, in a manufacturing plant, it can connect robot arm position sensors and controllers to achieve manufacturing automation and efficiency; or in a food and beverage production line, it can connect bottle filling level sensors and control systems to improve the filling process in real time.
Real-time Monitoring and Control: ABB CI810B is widely used in process control systems such as chemical plants, refineries and power plants because it is able to monitor and control process parameters in real time. It can send sensor data measuring parameters such as temperature, pressure, flow and level to the control system to help control process variables and ensure that the process is working within the specified range. For example, in a chemical reactor, temperature information is sent to a heating\cooling system or a power plant, where steam pressure, turbine speed are used to directly control the power generation process through connected sensors.
Data collection capabilities: ABB CI810B can collect field data from sensors, instruments, etc. and transmit it to the host computer, which can be further analyzed and processed, which helps in quality control, production optimization, predictive maintenance, etc. Taking a manufacturing plant as an example, data on production speed, product quality, machine performance, equipment performance and other similar factors are collected to help analyze problems and make suggestions for improvement. For example, in a water treatment plant, water quality parameters (such as pH, turbidity, dissolved oxygen, etc.) can be collected to monitor and adjust the treatment process in real time.