GE IS200ISBDG1A Innovation Series Bus Delay Module
General info
Manufacture | GE |
Item No | IS200ISBDG1A |
Article number | IS200ISBDG1A |
Series | Mark VI |
Origin | United States(US) |
Dimension | 180*180*30(mm) |
Weight | 0.8 kg |
Customs Tariff Number | 85389091 |
Type | Innovation Series Bus Delay Module |
Detailed data
GE IS200ISBDG1A Innovation Series Bus Delay Module
GE IS200ISBDG1A innovative series bus delay modules can be used in turbine control systems and other critical infrastructure systems. They help manage communication delays in systems where real-time data transmission is critical.
It consists of several integrated circuits. It has a DATEL DC/DC converter assembly. The board has TP test points, two LEDs, and two small transformers.
It is primarily responsible for handling communication delays within the system bus. It ensures that signals are transmitted with minimal delay, thereby improving the overall performance and synchronization of the system, especially in high-speed control environments.
It alleviates problems that can arise from signal lag or delay, ensuring that the system remains responsive and efficient.
The IS200ISBDG1A is designed to be used with other modules in the series to seamlessly integrate into GE advanced turbine control and industrial automation systems. It enhances overall communication and synchronization between system components.
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Frequently asked questions about the product are as follows:
-What is the main function of the IS200ISBDG1A module?
Manages timing delays in communication signals within the system, ensuring data flows without conflicts or collisions.
-How does the IS200ISBDG1A affect system performance?
Helps maintain data integrity and ensures high-speed systems operate efficiently, preventing errors and increasing the stability of data exchanges.
-Is the IS200ISBDG1A only used in turbine systems?
While it is commonly used in Speedtronic turbine control systems, it can also be used in other industrial automation systems that require high-speed data communications and precise signal timing.