GE IS200BPVCG1BR1 Backplane ASM Interface
GE IS200BPVCG1BR1 Backplane ASM Interface
Product Overview
The GE IS200BPVCG1BR1 backplane is a key component of the Mark VI system, which is part of GE's Speedtronic family of gas and steam turbine management systems.The Mark VI system is considered to be a complete protection, control, and monitoring solution for heavy-duty turbine systems.The IS200BPVCG1BR1 backplane is designed to be used in rack systems that split the card into a two-part rack system for efficient signal transmission and data exchange.
Technical Features
Design Structure:
The backplane is specially designed to be divided into two parts, with the front half located outside the rack system for easy connection and access, and the back half enclosed within the rack for protection and support.
Connector Configuration:
The backplane is equipped with 21 connectors to accept a variety of different types of cards.
Also included are 39 male vertical pin ribbon connectors specifically designed for data input/output from cards plugged into the backplane.
Information Transfer Support:
In addition to the connectors, there are 41 I/O ports to support information transfer from the card inserted in the backplane to the system.
The backplane also supports 14 plug-in connectors and 6 network arrays to provide additional communications and connectivity.
Compatibility:
The IS200BPVCG1BR1 backplane is fully compatible with the Mark VI system, ensuring system stability and reliability.
Application Areas
The GE IS200BPVCG1BR1 backplane is mainly used in control systems for gas turbines, steam turbines and other heavy turbines. It is an indispensable part of these systems for the protection, control and monitoring functions of the equipment.
Operation and Maintenance
Installation:
The backplate should be installed correctly in accordance with the instructions in the product manual, ensuring that all connections are firm and reliable.
During installation, special care should be taken to avoid damaging the backplane and the connectors on it.
Configuration and Commissioning:
After completing the installation, system configuration and commissioning work is required to ensure proper operation of the backplane and the entire Mark VI system.
Maintenance and Care:
Regularly check the connection and working environment of the backplane to ensure that it is in good working condition.
If the backplane is found to be faulty or abnormal, it should be replaced or repaired in time to avoid greater impact on the system.
Precautions
Safety:
During operation and maintenance, relevant electrical safety codes should be strictly observed to ensure the safety of personnel and equipment.
Backup and Recovery:
It is recommended that the data and configuration information of the Mark VI system be backed up on a regular basis so that the system can be quickly restored in the event of a failure.
Product Parameters and Specifications
Processor: 32-bit RISC processor
Clock frequency: 100 MHz
Memory: 128MB
Flash memory: 256MB
Communication interface: RS-232/485, Ethernet, etc.
Input/output interface: analogue input/output, digital input/output
Operating temperature: -25°C to +60°C
Storage temperature: -40°C to +85°C
Relative humidity: 5% to 95% (non-condensing)
Protection rating: IP65
Product specification: 300mm x 200mm x 100mm
Installation and Maintenance
Environmental conditions:
Ensure that the module is installed within the recommended temperature and humidity ranges and avoid direct exposure to water, oil, dust or electromagnetic interference.
Power Requirements:
Use a stable power supply to avoid damage to the module from voltage fluctuations.
Signal Cable Connection:
Connect the signal lines correctly to ensure the accuracy and stability of signal transmission.
Software Configuration:
Correctly configure the software parameters of the module according to the system requirements to ensure compatibility with other parts of the control system.
Maintenance and Inspection:
Perform regular maintenance and inspection of the module, including cleaning and checking the contact status of the connectors.
Precautions
Operator Training:
Operators should receive proper operation and maintenance training to avoid malfunctions or safety accidents caused by incorrect operation.
Technical Documentation and Safety Guidelines:
The technical documentation and safety guidelines provided by the manufacturer should be read and understood in detail before installation and use.
Compliance with safety procedures:
Observe all relevant safety procedures to ensure personal safety, especially when handling high-pressure or high-speed rotating equipment.
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