Product module | IS200EGPAG1BEC |
Brands | GENERAL ELECTRIC |
Payment | Paypal/TT |
Condition | 100% New |
Weight | 1.3KG |
Production year | 2024 |
country of origin | USA |
GE IS200EGPAG1BEC Control Module
Specification
IS200EGPAG1BEC Control Module |
Part Number: IS200EGPAG1BEC |
Single bridge rating:1,000 and 2,000 A dc atup to 1,000V ac |
Parallel bridge rating:8,000 Adc at up to 1,500 V ac, with up to 6 bridges
|
Forcing requirements:150% of design Amperes (EDA) for 30s at 40 0C |
Power for the PCM - VA (power):3,251 KVA (1,000 V version) |
Power for the PCM- Frequency:3-phase 50/60 Hz,士5% |
Flashing power:125- -250 V dc battery source, with up to 200 A for at least 10 s |
Dimensions:33x26.6x5cm |
Funcrional Description
The IS200EGPAG1BEC printed circuit board was originally manufactured by General Electric shell company GE
Industrial Systems; a company responsible for the manufacture of all of the EX2100 Excitation Control Systems
Series products. This PCB can be more explicitly defined as an Exciter Gate Pulse Amplifier,
and is modified through its inclusion of three significant product revisions.
Hardware Tips and Specifications
Before examining the various hardware components important to this devices's functionality as a Gate Pulse Amplifier,
it is important to consider the actual functionality of the product itself. This EGPA board was created as a sort of interface
that acts between the EX2100 Series drive assembly's control and its Power Bridge. This IS200EGPAG1BEC board
collects the compatible ESEL board's various gating commands in order to generate gate firing pulses attributed to six
total Silicon Controlled Rectifiers or SCRs. The IS200EGPAG1BEC Exciter Gate Pulse Amplifier features additional
functionality in its interfacing for bridge airflow monitoring, temperature monitoring, and current conduction feedback.
While many EX2100 Excitation Control System Series Exciters utilize a series of Klixon switches for their temperature
control and alarm generation, newer EX2100 exciter models may incorporate a RTD instead. Two total switches are
wired to the EGPA board, and may require retrofitting to their existing bridges. Both of these switches are classified as
thermal switches, and one opens up at the alarm level temperature rating of 170 degrees fahrenheit, while the other
opens at the trip level of 190 degrees fahrenheit. When either of these two mentioned switches are opened, a bridge
over temperature alarm is generated that may interrupt normative EX2100 drive assembly activity. In the case that
both switches in the EGPA board assembly were to be activated, a fault and fault trip are generated for the IS200EGPAG1BEC PCB.
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Frequently Asked Questions About IS200EGPAG1BEC
What is the IS200EGPAG1BEC Control Module? |
The IS200EGPAG1BEC is a control module designed for use in industrial automation systems. It is part of GE's Mark VIe control system, which is widely used in power generation and other industrial applications. This module plays a critical role in controlling and monitoring various processes within the system. |
What are the primary functions of the IS200EGPAG1BEC Control Module? |
The IS200EGPAG1BEC module is responsible for executing control algorithms, processing input and output signals, and communicating with other modules and devices within the Mark VIe system. It ensures the smooth operation of the system by managing real-time control tasks and providing diagnostic information. |
How do I install the IS200EGPAG1BEC Control Module? |
Installation involves mounting the module in the appropriate slot within the control cabinet, connecting it to the backplane for power and communication, and ensuring all necessary cables and connectors are properly attached. It’s important to follow the manufacturer’s installation guidelines to avoid damage or operational issues. |
What are the common issues that might arise with the IS200EGPAG1BEC Control Module? |
Common issues include communication failures, power supply problems, faulty connections, and configuration errors. Additionally, environmental factors such as temperature and humidity can affect the module's performance. Regular maintenance and proper installation can help mitigate these issues. |
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