IS200TPIMG1AAB - Protective Interface Board

IS200TPIMG1AAB - Protective Interface Board IS200TPIMG1AAB - Protective Interface Board

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SPECIFICATIONS

Part No.: IS200TPIMG1AAB
Manufacturer: General Electric
Country of Manufacture: United States of America (USA)
Temperature: -30 to + 65oC
Technology: Surface-mount
Product Type: Protective Interface Board
Availability: In Stock
Series: Mark VI

Functional Description

IS200TPIMG1AAB is a Protective Interface Board developed by GE. It is a part of Mark VI control system. It is available in Simplex and Triple Redundant configurations, exemplify GE's commitment to delivering sophisticated, fault-tolerant, and highly reliable control solutions across a diverse spectrum of applications, ensuring optimal performance and system integrity.

System Features

  • The Mark VI turbine control represents the pinnacle of control systems for GE turbines, boasting a rich legacy of over 30 years of successful operational history. Functioning as an integrated control, protection, and monitoring system, it caters to both generator and mechanical drive applications for gas and steam turbines. Moreover, it serves as an optimal platform for consolidating all power island controls and balance-of-plant controls into a cohesive unit.
  • The Mark VI control system is meticulously engineered, bringing together hardware and software components in close collaboration between GE's turbine design engineering and controls engineering teams. This meticulous coordination ensures the delivery of an optimized turbine performance solution. The seamless integration of hardware and software guarantees a true system solution, aligning with GE's unparalleled experience in advanced turbine control platforms.
  • By adopting the Mark VI control system, users gain access to the unparalleled expertise of GE, underpinned by extensive experience in turbine control platforms. This platform not only delivers optimal turbine performance but also provides a comprehensive and advanced solution tailored to meet the diverse needs of power generation and turbine operations.
  • The Mark VI control systems come in two primary configurations: the Simplex and Triple Redundant forms, catering to a wide spectrum of applications ranging from small-scale operations to extensive integrated systems. These systems offer control solutions spanning from a singular module to numerous distributed modules, ensuring versatility and scalability across various operational scales.
  • The Triple Module Redundant (TMR) architecture is a hallmark feature of the Mark VI control systems. It encompasses three entirely distinct and autonomous Control Modules, each with independent power supplies and IONets. This robust architecture ensures heightened reliability and fault tolerance in the system's operation.
  • The system's capabilities allow for the seamless operation of up to nine 21-slot VME racks of I/O cards within a rapid time frame of 40 milliseconds, encompassing the data voting process. Inputs undergo a software-based voting mechanism known as Software Implemented Fault Tolerance (SIFT). This scheme ensures robust fault tolerance by systematically evaluating and voting on inputs for improved system reliability.
  • Each Control Module incorporates a VCMI card responsible for receiving inputs not only from the Control Module's backplane but also from other modules through its dedicated IONet. This interconnectivity facilitates efficient data exchange and communication between the various modules, contributing to the overall seamless operation of the control system.

The WOC team is always available to help you with your Mark VI requirements. For more information, please contact WOC.

Frequently Asked Questions

What is IS200TPIMG1AAB?
It is a Protective Interface Board developed by GE under the Mark VI series.

What does the term TMR signify in the Mark VI architecture?
The Triple Module Redundant architecture in Mark VI involves three fully independent Control Modules, power supplies, and IONets, enhancing system reliability and fault tolerance.

How does the Mark VI system throughput accommodate I/O card operation?
Mark VI systems support the operation of up to nine 21-slot VME racks of I/O cards, facilitating rapid data processing within 40 milliseconds, which includes the voting process for data.

What scheme is employed for input voting in the system control systems?
Inputs undergo a software-based voting scheme known as Software Implemented Fault Tolerance (SIFT) to ensure robust fault tolerance and reliable system operation.