Bently 330104-01-05-05-02-00

Product Introduction
This model belongs to the 3300 XL 11mm Eddy Current Sensor System. The “-01” prefix and “-05” length designation indicate a 5-foot (1.5 meters) system length with specific mechanical or electrical variations tailored for OEM or specialized retrofit requirements.

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Description

Bently 330104-01-05-05-02-00

Technical Specifications

  • Product Series: 3300 XL 11mm Eddy Current Sensor System
  • Probe Diameter: 11 mm (0.43 inches)
  • Sensitivity: 100 mV/mil (3.94 V/mm)
  • Thread Specification: M14 x 1.5 Metric Thread
  • System Length: 1.5 meters (5 feet) total system length

Functional Features

  • Versatile Configuration: Tailored for applications requiring shorter system lengths with specific connector or thread options.
  • High Resolution: Capable of detecting micron-level vibration changes, enabling early fault diagnosis on large machinery.
  • Environmental Resilience: Unaffected by oil, water, or steam, making it perfectly suited for lubricated bearing housings.

Application Scenarios
Deployed in critical infrastructure for monitoring radial vibration, axial displacement, and eccentricity on large industrial fans, pumps, and compressors.

Performance Parameters

  • Linear Measurement Range: 110 mils (2.8 mm)
  • Frequency Response: 0 to 10 kHz (-3 dB)
  • Operating Temperature Range: -52°C to +177°C (-62°F to +350°F)
  • Relative Humidity Tolerance: Less than 3% change in ASF at 93% humidity

Material Composition
The probe housing is precision-machined from corrosion-resistant alloys, and the sealing mechanism utilizes Viton O-rings rated for extreme temperatures and chemical exposure.

Structural Characteristics
Features an integrated strain relief and a robust threaded body. The design ensures concentricity and face flatness to guarantee uniform eddy current generation across the target surface.

Working Principle
A high-frequency oscillator drives the probe coil. As the metallic shaft rotates, eddy currents are generated on its surface. The distance between the probe and shaft dictates the magnitude of these currents, which is demodulated into a proportional DC and AC voltage.

Installation Requirements
Install in a clean, tapped hole perpendicular to the shaft axis. Set the initial gap to the recommended midpoint (e.g., 1.9 mm / 75 mils) and verify the gap voltage falls within the linear operating window.

Usage Precautions
Do not apply excessive torque during installation, as this can crack the ceramic coil assembly. Ensure the target surface is smooth and free of keyways or splines within the measurement zone.