IS200TVIBH2B Vibration Input Terminal Board
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Part Number: IS200TVIBH2B
Manufacturer: General Electric
Series: MKVI
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IS200TVIBH2B Vibration Input Terminal Board
The IS200TVIBH2B functions as a termination block with a removable connector for vibration inputs within the GE Speedtronic MKVI gas turbine control system.Â
It facilitates the connection of vibration sensors to the monitoring or control systems, allowing for comprehensive vibration monitoring and protection functions.Â
The board features 14 ports for connecting vibration probes, along with various components like jumper pins, programmable microchips, integrated circuits, capacitors, and resistors, which play essential roles in its functionality.
Series: Speedtronic MKVI
Description: Vibration Termination Board
Input Channels: 14 ports for connecting vibration probes
Mounting: DIN-rail mounting
Size: 13 in. x 7 in.
Temperature Rating: 0 to 60°C
Features:
Input Channels: 14 ports for connecting vibration probes.
Populated Components: Includes various components such as terminals, jumper pins, programmable microchips, integrated circuits, capacitors, and resistors.
Mounting: Designed for DIN-rail mounting, ensuring secure installation.
Size: Compact dimensions of 13 in. x 7 in., optimizing space utilization.
Temperature Rating: Operates within a temperature range of 0 to 60°C, suitable for a variety of environments.
Compatibility:
The IS200TVIBH2B is compatible with the GE Speedtronic MKVI series and is designed to interface with vibration sensors for monitoring and control purposes.Â
It works seamlessly with Bently Nevada vibration probes, including Proximitor, Seismic, Accelerometer, and Velomitor probes.Â
Additionally, the board is suitable for use in gas and steam turbine control systems, making it a versatile solution for various industrial applications.
How It Improves Performance of GE Mark VI:
The IS200TVIBH2B plays a crucial role in enhancing the performance of the GE Speedtronic MKVI gas turbine control system in several ways:
Vibration Monitoring and Protection: By serving as a termination block for vibration inputs, the IS200TVIBH2B enables comprehensive vibration monitoring and protection functions. This ensures the early detection of potential issues and helps prevent equipment failures, thus improving overall system reliability and uptime.
System Flexibility: The GE Speedtronic MKVI control system, of which the IS200TVIBH2B is a part, offers a flexible platform for multiple applications. This flexibility allows the control system to be adapted to various gas turbine models and configurations, enhancing its versatility and applicability across different industries and operating conditions.
Redundancy and Reliability: The MKVI control system incorporates triple-redundant, 16-bit digital microprocessor controllers and Software-Implemented Fault Tolerance (SIFT) for critical control protection parameters. This redundancy and fault tolerance enhance the overall reliability of the control system, reducing the risk of unplanned downtime and maximizing turbine availability.
Improved Input/Output Capabilities: The MKVI system provides high-speed networked I/O for simplex, dual, and triple-redundant systems. The IS200TVIBH2B, as part of this system, enhances the input/output capabilities, allowing for more comprehensive monitoring and control of the gas turbine. This expanded I/O capability enables operators to gather more data and make more informed decisions, ultimately leading to improved performance and efficiency.
Troubleshooting Common Issues:
Here are some common troubleshooting issues associated with the IS200TVIBH2B and their respective solutions:
Improper Handling and Storage: Ensure proper handling and storage conditions to prevent damage to the board. Store the cards in static-sensitive storage boxes under recommended conditions.
Functional Verification Test: Conduct a functional verification test in an OEM system setup to ensure 100% reliability. Verify all inputs and outputs individually and perform load testing to ensure board stability.
Circuit Board Handling: Minimize hands-on contact with the board, especially in the conducting area. Use antistatic gloves, hold the board by its edges, and use an ESD wrist strap for proper handling.
Component Replacement: Consider replacing aging or failing components on the board if troubleshooting reveals issues. Replace capacitors, resistors, or other components that may be causing malfunctions.
Refurbishing: Refurbish the circuit board to increase its longevity. This may involve replacing aging components, applying modifications, reflowing solder, thorough cleaning, and applying protective coatings.
Repair and Testing: If repair is necessary, ensure that the board is tested, diagnosed, and fixed by experts in a controlled environment. Use replacement components that meet or exceed OEM standards and ensure that all repairs are FVT tested and come with a warranty.
Compatibility Issues: Ensure that the IS200TVIBH2B is compatible with the specific system it is being used in. Check for any compatibility issues with other components or systems that may be causing malfunctions.
By addressing these common troubleshooting issues, users can effectively diagnose and resolve any issues with the IS200TVIBH2B, ensuring optimal performance in the GE Speedtronic MKVI gas turbine control system.
Frequently Asked Questions
What are the key features of the IS200TVIBH2B Vibration Termination Board?
The IS200TVIBH2B board features two terminal blocks, six d-shell female connections, and fourteen barrel connectors, among other components.
What is the description of the IS200TVIBH2B board?
The IS200TVIBH2B is a Vibration Termination Board used in GE Speedtronic MKVI gas turbine control systems, featuring various components like female terminals, jumper pins, and integrated circuits.
How does the IS200TVIBH2B improve GE Speedtronic Mark VI systems?
The IS200TVIBH2B enhances the vibration monitoring and protection functions of the gas turbine control system, providing reliability and functionality to match new units.
What are common troubleshooting issues for the IS200TVIBH2B board?
Common troubleshooting issues include improper handling, functional verification tests, circuit board handling, component replacement, repair, and refurbishing to ensure optimal performance.
What is the compatibility of the IS200TVIBH2B board with GE Speedtronic Mark VI systems?
The IS200TVIBH2B is compatible with the GE Speedtronic Mark VI series, serving as a termination block for vibration inputs in gas and steam turbine control systems.
How can the IS200TVIBH2B be repaired or refurbished?
The IS200TVIBH2B can be repaired by testing, diagnosing, and fixing any issues. Refurbishing involves replacing aging components, reflowing solder, and applying protective coatings for increased longevity.
What is the size of the IS200TVIBH2B board?
The IS200TVIBH2B board measures 13 inches x 7 inches.
What is the temperature rating of the IS200TVIBH2B board?
The IS200TVIBH2B board has a temperature rating of 0 to 60°C.
What warranty is provided for repairs of the IS200TVIBH2B board?
Repairs of the IS200TVIBH2B board come with a warranty, ensuring the reliability and functionality of the repaired unit.
What components are included in the IS200TVIBH2B board?
The IS200TVIBH2B board includes female terminals, jumper pins, integrated circuits, capacitors, and resistors, among other components, for vibration termination functions.
How does the IS200TVIBH2B board handle circuit board maintenance?
The IS200TVIBH2B is a static-sensitive board that requires proper handling to prevent damage. Minimizing hands-on contact, using antistatic gloves, and employing ESD wrist straps are recommended for circuit board maintenance.
What is the lead time for obtaining the IS200TVIBH2B board from IC Spares?
The IS200TVIBH2B board is available in stock at IC Spares, with same-day shipping options. It comes in UNUSED and REBUILT conditions, offering quick availability for customers.
How does the IS200TVIBH2B board contribute to vibration monitoring in gas turbine control systems?
The IS200TVIBH2B board, as part of the Mark VI vibration analysis system, interfaces with vibration sensors to capture essential data for monitoring seismic, velocity, proximity, or accelerometer charge amplifier inputs and outputs, enhancing the overall vibration monitoring capabilities of the system