GE IS200JPDSG1A MKVIe, PWR Dist. Card

Applications

 

The IS200JPDSG1A is a key component in power generation facilities that utilize GE’s advanced control systems. It is essential for:

  • System Reliability: By providing organized and protected power distribution, it ensures that a fault in one section of the control system doesn’t cause a cascade failure.
  • Safety: It protects both the equipment and personnel by safely isolating overcurrent faults.
التصنيف:

الوصف

The GE part number IS200JPDSG1A is a Power Distribution Card for the Mark VIe Excitation Control System. Its primary function is to safely and efficiently distribute power to the various electronic cards and modules within the control system cabinet. ⚡


 

Function and Key Features

 

A power distribution board is a passive but critical component that provides a centralized and protected point for the system’s power.

    • Power Distribution: The board takes an incoming power source and routes it to various outputs. These outputs are then connected to the system’s power supply cards, which provide the regulated voltages needed by the control cards.
    • Circuit Protection: The board contains fuses or circuit breakers for each power output. This is a crucial safety feature that protects the downstream modules from overcurrent conditions or short circuits.
    • Terminal Interface: The board provides a set of robust terminals for landing the incoming power cables and the outgoing cables to the power supplies. This simplifies wiring and maintenance.
  • Robust Design: Like all GE industrial control components, it’s built to withstand the harsh conditions of a power plant.

 

Applications

 

The IS200JPDSG1A is a key component in power generation facilities that utilize GE’s advanced control systems. It is essential for:

  • System Reliability: By providing organized and protected power distribution, it ensures that a fault in one section of the control system doesn’t cause a cascade failure.
  • Safety: It protects both the equipment and personnel by safely isolating overcurrent faults.