IS210BPPBH2CAA | printed circuit board | GE | IS210BPPBH2CAA
This GE printed circuit board executes control algorithms, manages the operation of the gas turbine or steam turbine and supports communication with other control modules and systems (such as Ethernet or proprietary industrial protocols). It is mainly used in the control and monitoring systems of gas turbines, steam turbines or other industrial turbines.
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IS210BPPBH2CAA Other names:
Editable controller IS210BPPBH2CAA
IS210BPPBH2CAA input and output module
Analog module IS210BPPBH2CAA
About IS210BPPBH2CAA
The IS210BPPBH2CAA model for the Mark VI turbine control system is designed as a printed circuit board. A key feature of the BPPB board for the Mark VI system is that it can be used for two types of turbine prime movers, steam or gas turbines. The main components of the module are eight female plug connectors, and the connectors range from two to eighteen pin connectors. Lined up on the left side of the board are six metal oxide varistors.
When the model is installed in a turbine control system, it will be in the primary control module, it may also be used with a backup protection module. When in the primary control module, there are a number of software maintenance tools. The maintenance tools range from protection algorithms to sequencing and I/O displays.
There is an operator interface available for use with the IS210BPPBH2CAA model, this interface is called an HMI or Human Machine Interface. This interface is designed for the Microsoft Windows NT PC operating system, it can support a graphic display system, client/server functionality, software interfaces, and a control system toolbox for maintenance.
When the IS210BPPBH2CAA model is used in a TMR (Triple Modular Redundancy) system, there are three processor cards. The processor cards are used to execute turbine application software between the BPPB board and other boards mounted on the VME rack.
Main Features
Application Areas:
Mainly used in control and monitoring systems for gas turbines, steam turbines or other industrial turbines.
As part of the Mark VI/Mark VIe control system, it is responsible for signal processing, data communication or control logic.
Function:
Signal conditioning and processing.
Data acquisition and transmission.
Communication with other control modules (such as I/O modules, processor modules).
Design:
Industrial-grade design is used to adapt to harsh environments (high temperature, high humidity, vibration).
Comply with industrial standards to ensure high reliability and long life.
Signal processing: used to process signals from sensors and input devices, such as temperature, pressure, vibration, etc.
Control logic: executes control algorithms to manage the operation of gas turbines or steam turbines.
Communication interface: supports communication with other control modules and systems (such as Ethernet or dedicated industrial protocols).
Protection function: monitors system status and triggers protection mechanisms (such as shutdown or alarm) under abnormal conditions.
Technical specifications
Interface: supports multiple industrial communication protocols (such as Ethernet, Profibus, Modbus) and provides signal input/output interfaces for connecting sensors, actuators or other control devices.
Power supply:
Requires external power supply, voltage range meets industrial standards (such as 24V DC).
Size and installation:
Meets standard industrial module size, easy to install in rack or control cabinet.
Working environment:
Working temperature range: -40°C to +85°C (specific specifications subject to the specification).
Protection level: Meets IP standard, suitable for industrial environment.
Advantages
High reliability:
Design meets industrial standards, suitable for harsh environments.
Real-time performance: Supports real-time control and monitoring to ensure stable operation of the system.
Modular design: Easy to integrate into existing systems, supports expansion and upgrades.
Long-term support: GE provides long-term technical support and spare parts supply.
Common applications
Gas turbine control: Used to monitor and control the operating parameters of gas turbines (such as temperature, pressure, speed).
Industrial automation: As part of a distributed control system (DCS), used for process control and monitoring.
Energy management: Automation systems for energy facilities such as power plants and substations.
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Address: 3301, Building A, Wanda Center, No. 175 Jiefang Road, Xinghualing District, Taiyuan City, Shanxi Province
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Industrial Control Sales Consultant: Amelia
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