Woodward 8200-1310

Product Introduction
The Woodward 8200-1310 is a versatile AC/DC powered turbine control module. Offering dual power supply compatibility, it provides flexible installation options for industrial facilities where standard low-voltage DC power may not be readily available or reliable.

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Description

Woodward 8200-1310

Technical Specifications

  • Part Number: 8200-1310
  • Power Supply: AC/DC (88–132 Vac or 90–150 Vdc)
  • System Type: Digital Turbine Governor
  • Frequency: 47-63 Hz (for AC operation)

Functional Features

  • Dual Power Flexibility: Seamlessly operates on either standard AC mains or high-voltage DC station batteries.
  • Robust Governing: Delivers precise speed, load, and pressure control for steam and gas turbines.
  • Fail-Safe Design: Maintains critical control functions during power supply fluctuations.

Application Scenarios
Ideal for remote power generation sites, older industrial facilities with legacy AC control power, and applications requiring high-voltage DC backup.

Performance Parameters

  • Power Tolerance: Wide input voltage range ensures stable operation despite grid or battery variations.
  • Control Precision: Maintains tight speed and load regulation regardless of the power source.

Material Composition
Industrial-grade electronics with robust power supply filtering and surge protection components.

Structural Characteristics

  • Form Factor: Compatible with standard 8200 series mounting and backplanes.
  • Power Terminals: Dedicated high-voltage AC/DC input terminals with appropriate fusing.

Working Principle
Features an internal universal power supply that rectifies and regulates either AC or DC input to the stable internal DC bus required by the microprocessor and I/O circuits.

Installation Requirements

  • Power Selection: Verify the available facility power and configure jumpers or settings as required.
  • Fusing: Install appropriately rated fuses or breakers on the AC/DC input lines.

Usage Precautions

  • Voltage Verification: Double-check the incoming voltage before energizing to prevent damage to the internal power supply.
  • Grounding: Ensure a solid protective earth connection due to the higher input voltages.