DS200SHCBG1ABC - Shunt Connector Card

DS200SHCBG1ABC - Shunt Connector Card DS200SHCBG1ABC - Shunt Connector Card

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SPECIFICATIONS

Part No.: DS200SHCBG1ABC
Manufacturer: General Electric
Country of Manufacture: United States of America (USA)
Temperature: 0 to 60 �C
Product Type: Shunt Connector Card
Availability: In Stock
Series: Drive Control

Functional Description

DS200SHCBG1ABC is a Shunt Connector Card developed by GE. It is a part of Drive Control system.�

Software Configuration

  • The software configuration of the system has been significantly enhanced through the implementation of advanced methods, particularly focusing on the triple-modular redundant system. This improvement leverages SIFT technology, leading to a more robust control mechanism.
  • SIFT, or Sensor Integration for Fault Tolerance, plays a central role in fortifying the control system by establishing direct communication links between controllers denoted as R, S, T, and C. The essence of SIFT lies in the seamless exchange of information on the voter link among these controllers.
  • In the operational framework, each control processor, denoted as R, S, T, and C, is equipped to measure all input sensors, providing a comprehensive understanding of the system's sensory inputs. The measurements are then translated into numerical representations within the controller. These numerical representations, representing sensor signals, are organized into a table of values.
  • The communication process involves each control processor transmitting its compiled table of values over the voter link to the other controllers in the system. Simultaneously, it receives tables from the other processors. In the context of the R controller, for instance, it outputs its table to and receives tables from the S and T controllers.
  • This bidirectional exchange of information fosters a collaborative decision-making process among the controllers. By assimilating and processing data from multiple sources, the system achieves a more reliable and robust control, enhancing its overall fault tolerance and resilience. The SIFT technology, with its emphasis on direct communication and comprehensive data exchange, represents a notable advancement in the software configuration, ensuring the system's ability to operate effectively and adapt to varying conditions.

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

Frequently Asked Questions

What is DS200SHCBG1ABC?
It is a Shunt Connector Card developed by GE under the Drive Control series.

What is the key improvement in the software configuration of the system?
The software configuration has been significantly enhanced, primarily focusing on the implementation of advanced methods associated with the triple-modular redundant system, leading to a more robust control mechanism.

What role does SIFT technology play in fortifying the control system?
SIFT, or Sensor Integration for Fault Tolerance, plays a central role by establishing direct communication links between controllers denoted as R, S, T, and C. It contributes to a stronger and more resilient control system.

What is the operational capability of each control processor (R, S, T, and C)?
Each control processor is equipped to measure all input sensors, providing a comprehensive understanding of the system's sensory inputs. These measurements are translated into numerical representations within the controller.

How does the communication process work among control processors?
Each control processor transmits its compiled table of values over the voter link to the other controllers in the system. Simultaneously, it receives tables from the other processors. For example, the R controller outputs its table to and receives tables from the S and T controllers.

How does the bidirectional exchange of information contribute to control system reliability?
The bidirectional exchange fosters a collaborative decision-making process among controllers, assimilating and processing data from multiple sources. This enhances the system's reliability, fault tolerance, and overall resilience.