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Fanuc Corporation | GE FANUC Gate Driver and Dynamic Discharge Board - IS200GDDDG1A

Fanuc Corporation | GE FANUC Gate Driver and Dynamic Discharge Board - IS200GDDDG1A

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Fanuc Corporation | GE FANUC Gate Driver and Dynamic Discharge Board - IS200GDDDG1A

The IS200GDDDG1A is a densely populated circuit board designed as a Gate Driver and Dynamic Discharge board. It plays a critical role in controlling IGBT gating for Dynamic Discharge operations and bridge output management. The board facilitates isolation and scaling of DC output and link voltage, and includes provisions for heat sink temperature feedback shunting. 

The IS200GDDDG1A is a densely populated circuit board designed specifically as a Gate Driver and Dynamic Discharge board. It plays a critical role in the control and management of IGBTs (Insulated Gate Bipolar Transistors) for Dynamic Discharge control and bridge output operations. The primary functions of the board include isolating and scaling DC output and link voltage, as well as monitoring heat sink temperature feedbacks to ensure optimal operational conditions. 

Key components integrated into the IS200GDDDG1A board include two trim potentiometers identified as RV1 and RV2, which allow for precise adjustment of circuit parameters. The board also incorporates six resistor network arrays and three jumper switches labeled JP1 through JP3, each serving specific configuration purposes. Detailed information about these components is provided on the board's surface, supplemented by instructions available in the accompanying manual for further details and configurations. 

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 



Model Number    



IS200GDDDG1A    



Product Type    



Gate Driver and Dynamic Discharge Board    



Functional Acronym    



GDDD    



Series    



Mark V    



Manufacturer (OEM)    



GE Energy    



Weight    



1 lbs    



Shipping Dimensions    



18 x 12 x 12 inches    



Country of Origin    



USA    
What Our Experts Think
  • Essential for Power Control: Manages gate driving and dynamic discharge functions in power electronics systems.

  • Enhanced Performance: Optimizes switching speed and voltage regulation for high-efficiency operation.

  • Improved Safety: Safeguards the system by controlling dynamic discharge during power cycling.

  • Industrial Durability: Built to withstand harsh environments and continuous operation in demanding settings.

  • Seamless Integration: Compatible with other GE FANUC components for smooth, reliable performance.

  • Trusted GE Quality: Designed to provide longevity, precision, and minimal maintenance.

Q&A

Q: What is the IS200GDDDG1A Gate Driver and Dynamic Discharge Board?
A: It’s a GE Fanuc board that combines gate driving functionality with dynamic discharge control for power electronics and drive systems.

Q: What systems is it compatible with?
A: This board is used in GE Fanuc Mark VI systems and other industrial power and control platforms, typically in turbine and drive applications.

Q: What does this board do?
A: It drives gate signals to power devices and manages the controlled discharge of energy to ensure safe and efficient system operation.

Q: Why choose the IS200GDDDG1A?
A: It delivers precise gate control, reliable discharge performance, and seamless integration with GE control systems for high-reliability environments.

Q: Is this an OEM product?
A: Yes, it’s a genuine GE Fanuc component, ensuring full compatibility, system safety, and robust long-term performance.

Maintenance Tips
  • Visual Inspection: Regularly check for visible damage such as burnt components, cracked solder joints, or any discoloration, especially around the gate driver circuitry and discharge components.

  • Clean the Board: Use dry compressed air or an anti-static brush to remove dust and debris. Avoid using liquids or abrasive cleaning methods that could damage sensitive components.

  • Check Gate Driver Performance: Test the gate driver circuits for proper switching and timing. Malfunctions can lead to erratic motor control or overheating.

  • Inspect Dynamic Discharge Components: Ensure that dynamic discharge components, like resistors or capacitors, are functioning properly to avoid voltage spikes or instability.

  • Monitor Power Supply: Ensure that the board receives a stable and correct voltage supply, as fluctuations could affect gate switching performance and overall board function.

  • Verify Temperature Conditions: Check for proper cooling and ventilation around the board, as excessive heat can degrade performance and damage components.

  • Run Diagnostics: Periodically run diagnostics to check gate driver efficiency and detect early signs of failure or unusual behavior.

  • Handle with ESD Protection: Always use anti-static wrist straps and mats when handling the board to prevent electrostatic damage to sensitive components.

  • Ensure Secure Mounting: Make sure the board is securely installed to prevent vibration-induced damage or connection issues.