Woodward 5466-351

Product Introduction:
A high-performance digital microprocessor controller from the Woodward 5466 series, providing a reliable hardware platform for complex regulation and comprehensive monitoring of industrial turbines and power generation equipment.

Category: SKU: Woodward 5466-351

Description

Woodward 5466-351

Technical Specifications:

  • Brand: Woodward
  • Model: 5466-351
  • Product Type: Digital Microprocessor Controller

Functional Features:

  • Advanced Control Logic: Employs high-precision algorithms for critical speed avoidance and valve limiting to ensure stable system operation.
  • Flexible Field Programming: Supports menu-driven on-site programming and flexible parameter configuration via the front operator control panel.

Application Scenarios:
Widely applied in speed and load control of thermal power plants and gas turbine generator sets, as well as turbine management in industrial waste gas treatment.

Performance Parameters:

  • Input Interface: 16 contact inputs and 6 programmable current inputs (4-20mA).
  • Output Signal: 0-10V DC analog output for actuator and valve drive.
  • Communication: RS-232 and Ethernet interfaces supporting Modbus protocol.

Material Composition:
Robust industrial-grade flame-retardant housing with internal components strictly screened for anti-vibration and anti-shock performance.

Structural Characteristics:
Compact size (approx. 15.2 cm × 5.1 cm × 20.3 cm), weighing approx. 0.7 kg. Features a two-line text display (24 chars/line) for intuitive operation.

Working Principle:
Rapidly collects turbine operating parameters, uses built-in digital microprocessor algorithms for real-time calculations, and outputs precise control commands to maintain optimal equipment status.

Installation Requirements:
Operating temperature range is -10°C to 60°C; install in well-ventilated cabinets. Use shielded twisted-pair cables for communication.

Usage Precautions:
Meets IP 56 protection rating. Fully understand process requirements and backup original configurations before modifying control parameters.