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5462-718 Module Sensor Woodward

5462-718 Module Sensor Woodward

The Woodward 5462-718, also cataloged as the 5462-718 Module Sensor, operates as a dedicated hardware component for rotational speed telemetry acquisition and frequency signal processing within industrial governor platforms. It...

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SKU: 5462-718
Vendor: Woodward
Category: Module Sensor
Related Series:

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The Woodward 5462-718, also cataloged as the 5462-718 Module Sensor, operates as a dedicated hardware component for rotational speed telemetry acquisition and frequency signal processing within industrial governor platforms. It monitors prime mover shaft velocity to provide real-time feedback data for speed control and overspeed protection loops.

Suffix Breakdown & Model Matrix

  • 5462-718: Standard module sensor configuration featuring integrated frequency-to-voltage conversion circuitry and signal conditioning for industrial prime mover applications.

Hardware Specifications

Parameter Specification
Model 5462-718
Brand Woodward
Origin USA
Weight 0.6 kg
Dimensions 38.1 cm x 12.7 cm x 38.1 cm
Operating Temp -20 deg C to +70 deg C
Power Consumption 10 W max at 24 VDC
Input Signal Frequency pulse from speed pickup
Output Signal Proportional analog speed telemetry

Actuator Loop Feedback Response and Thermal Profiles

The unit processes high-frequency pulse trains to maintain rapid actuator loop feedback response tracking during load fluctuations and transient speed events. Internal components are mounted with thermal heat sink dissipation profiles engineered to handle continuous electrical loading inside sealed cabinet enclosures without active cooling. Advanced harmonic distortion suppression filters eliminate spurious noise spikes from incoming sensor wiring, ensuring stable frequency conversion accuracy across variable operating speeds.

Frequently Asked Questions

Q: What is the primary input source connected to this sensor module?

A: The module accepts periodic pulse inputs generated by magnetic pickups or proximity probes passing through gear teeth on the rotating shaft.

Q: Can the signal output be calibrated for different gear tooth counts?

A: Yes, onboard configuration points or scaling adjustments allow the frequency-to-voltage conversion ratio to match the specific gear tooth count of the monitored machine.

Field Installation Guidelines

  • Mount the module securely to a flat, vibration-isolated surface within the main control enclosure using standard fastening hardware.
  • Route sensor signal wires away from high-voltage power cables, utilizing grounded shielded twisted-pair conductors to prevent electromagnetic interference.
  • Check that the input frequency range matches the expected maximum operating RPM of the prime mover prior to system commissioning.