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Fanuc Corporation| GE FANUC Exciter Power Backplane - IS200EPBPG1A

Fanuc Corporation| GE FANUC Exciter Power Backplane - IS200EPBPG1A

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Fanuc Corporation| GE FANUC Exciter Power Backplane - IS200EPBPG1A

The IS200EPBPG1A Exciter Power Backplane module serves primarily as a power supply board within the system. It integrates three Electrically Isolated Power Supplies Modules (EPSM) and three Exciter Ground Detectors (EGDM). Operating with a 125 VDC supply from the EPDM, the board distributes logic-level power through the EPSM modules. 

 

The IS200EPBPG1A Exciter Power Backplane serves primarily as a power supply board within exciter systems. Referred to as EPBP (Exciter Power Backplane), this module integrates three EPSM (Electrically Isolated Power Supplies Module) and three EGDM (Exciter Ground Detector) units when connected. It operates on 125 VDC supplied from the EPDM (Exciter Power Distribution Module), facilitating the transmission of logic-level power through the EPSM modules. 

Designed to support exciter systems, the IS200EPBPG1A includes provisions for ground detection modules and connectors for efficient power distribution. The top half of the board features thirty-three plug connectors organized into M1, M2, and C sections. Each section comprises varying configurations of connectors: five four-plug connectors, one two-plug connector, four three-plug connectors, and one twelve-plug connector. 

GE FANUC, now part of Emerson Automation Solutions, was a leading provider of industrial automation and control systems. Known for innovative solutions, GE FANUC played a key role in advancing manufacturing, offering a range of products including PLCs, CNCs, and HMI solutions

Specifications 



Part Number    



IS200EPBPG1A    



Function    



Power supply board for exciter systems    



Acronym    



EPBP (Exciter Power Backplane)    



Power Supply    



125 VDC from EPDM    
What Our Experts Think
  • Critical Power Distribution: Ensures stable power supply to exciter components, maintaining system integrity.

  • Enhanced Reliability: Built to deliver consistent performance in demanding industrial environments.

  • Seamless Integration: Easily integrates with GE FANUC control systems for smooth operation.

  • Durable Construction: Designed for long-term use, with robust materials to withstand high-stress conditions.

  • Optimized for Efficiency: Supports optimal power distribution, reducing the risk of system disruptions.

  • GE FANUC Quality: Trusted for its precision engineering and long-lasting performance.

Q&A

Q: What is the IS200EPBPG1A Exciter Power Backplane?
A: It’s a GE Fanuc backplane designed to support and distribute power to the exciter system in industrial control applications, particularly in turbine and motor control.

Q: What systems is it compatible with?
A: This backplane is compatible with GE Fanuc Mark VI and other related industrial control systems, often used in turbine and power generation systems.

Q: What does the exciter power backplane do?
A: It provides the necessary power distribution for the exciter control system, ensuring stable operation of the exciter and associated components in power generation equipment.

Q: Why choose the IS200EPBPG1A?
A: It ensures reliable power delivery, optimal system integration, and robust durability, making it ideal for critical industrial and power generation systems.

Q: Is this an OEM product?
A: Yes, it’s a genuine GE Fanuc part, ensuring full compatibility, superior performance, and long-term reliability.

Maintenance Tips
  • Visual Inspection: Regularly check for visible damage, burnt components, or cracked solder joints, especially near power input and exciter connections. Pay close attention to any signs of overheating.

  • Clean the Backplane: Use dry compressed air or an anti-static brush to remove dust and dirt. Avoid using liquids or solvents that could cause short circuits or damage the components.

  • Inspect Power Connections: Ensure that all power connections are secure, clean, and corrosion-free. Loose or oxidized terminals can lead to inconsistent power delivery and operational issues.

  • Verify Power Input Stability: Ensure that the backplane is receiving a stable power supply with the correct voltage. Voltage fluctuations can cause malfunction or damage to the exciter system.

  • Check Signal Integrity: Inspect the signal transmission between the exciter and other components to ensure the system is operating within expected parameters. Look for any erratic signals or inconsistencies.

  • Monitor Operating Temperature: Keep an eye on temperature conditions around the backplane. Overheating can lead to component failure or reduced efficiency. Ensure the cooling system is working properly.

  • Run Diagnostics: Use diagnostic tools to monitor the performance of the backplane and detect early signs of faults or abnormal behavior.

  • ESD Precautions: Always use electrostatic discharge (ESD) protection, such as wrist straps and anti-static mats, when handling the backplane to prevent damage to sensitive components.

  • Secure Mounting: Ensure the backplane is securely installed, avoiding any loose connections or vibrations that could lead to mechanical stress and electrical faults.