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 330103 06 15 10 12 00 3300 xl 8 mm proximity probes-0

3300 XL 8mm Proximity Transducer System

Home >  Products >  For Bently Nevada >  3300 XL 8mm Proximity Transducer System

330103-06-15-10-12-00 3300 XL 8 mm Proximity Probes

  • Overview
  • Quick Detail
  • Description
  • Applications
  • Specifications
  • Competitive Advantage
  • Recommended Products
Overview

Place of Origin:

USA

Brand Name:

Bently Nevada

Model Number:

330103-06-15-10-12-00

Packaging Details:

Original new Factory Sealed

Delivery Time:

5-7 days

Payment Terms:

T/T

Supply Ability:

In stock

Quick Detail

Unthreaded Length Option(Minimum unthreaded length):

60 mm

Overall Case Length Option(Minimum case length):

150 mm

Total Length Option:

1.0 meter (3.3 feet)

Connector and Cable-Type Option:

Miniature coaxial ClickLoc connector, FluidLoc cable

Agency Approval Option:

Not required

Probe Case Thread:

M10x1

Maximum Length of Thread Engagement:

15 mm

Dimension:

18x18x2cm

Weight:

0.1kg

Description

Detect Vibration in Turbines and Generators under 2 μm
330103-06-15-10-12-00 captures turbine and generator vibrations below 2 μm. Its 8 mm probe and 50 Ω output ensure precise signal transmission, enabling automated monitoring systems to plan maintenance before shafts or bearings experience mechanical damage.

Measure Shaft Displacement within 2 mm Range
For pumps, motors, and gearboxes, 330103-06-15-10-12-00 provides accurate static and dynamic displacement readings up to 2 mm. This allows 330103-06-15-10-12-00 to maintain proper shaft alignment and reduce wear on moving components in continuous industrial operations.

Generate Keyphasor and Speed Signals up to 10 kHz
330103-06-15-10-12-00 produces reliable Keyphasor outputs and rotational speed signals for high-speed machinery up to 10 kHz. By delivering real-time phase and speed data, 330103-06-15-10-12-00 supports process control systems and automated protective functions.

Monitor Journal Bearings in Real Time
330103-06-15-10-12-00 tracks shaft movements near fluid-film bearings. Any variations detected by 330103-06-15-10-12-00 can reveal misalignment, imbalance, or lubrication loss, allowing timely intervention to prevent bearing surface damage.

Operate in Extreme Temperatures with FluidLoc Cable
330103-06-15-10-12-00 works in conditions from -52°C to +177°C. The FluidLoc cable prevents fluid from entering the probe path, enabling 330103-06-15-10-12-00 to provide continuous monitoring in petrochemical, offshore, and power generation facilities.

Applications

Detect Vibration in Turbines and Generators under 2 μm
330103-06-15-10-12-00 captures turbine and generator vibrations below 2 μm. Its 8 mm probe and 50 Ω output ensure precise signal transmission, enabling automated monitoring systems to plan maintenance before shafts or bearings experience mechanical damage.

Measure Shaft Displacement within 2 mm Range
For pumps, motors, and gearboxes, 330103-06-15-10-12-00 provides accurate static and dynamic displacement readings up to 2 mm. This allows 330103-06-15-10-12-00 to maintain proper shaft alignment and reduce wear on moving components in continuous industrial operations.

Generate Keyphasor and Speed Signals up to 10 kHz
330103-06-15-10-12-00 produces reliable Keyphasor outputs and rotational speed signals for high-speed machinery up to 10 kHz. By delivering real-time phase and speed data, 330103-06-15-10-12-00 supports process control systems and automated protective functions.

Monitor Journal Bearings in Real Time
330103-06-15-10-12-00 tracks shaft movements near fluid-film bearings. Any variations detected by 330103-06-15-10-12-00 can reveal misalignment, imbalance, or lubrication loss, allowing timely intervention to prevent bearing surface damage.

Operate in Extreme Temperatures with FluidLoc Cable
330103-06-15-10-12-00 works in conditions from -52°C to +177°C. The FluidLoc cable prevents fluid from entering the probe path, enabling 330103-06-15-10-12-00 to provide continuous monitoring in petrochemical, offshore, and power generation facilities.

Specifications

Operating and Storage Temperature:

-52°C to +177°C (-62°F to +350°F)

Supply Sensitivity:

Less than 2 mV change in output voltage per volt change in input voltage

Output Resistance:

50 Ω

Extension Cable Capacitance:

69.9 pF/m (21.3 pF/ft) typical

Field Wiring:

0.2 to 1.5 mm2 (16 to 24 AWG)

Linear Range:

2 mm (80 mils)

Competitive Advantage

Secure Probe-to-Cable Connection with 330 N Pull Force
330103-06-15-10-12-00 uses TipLoc and CableLoc locking mechanisms to attach the probe and cable with a 330 N (75 lbf) pull force. This ensures 330103-06-15-10-12-00 remains firmly connected on turbines, compressors, and motors exposed to high vibration, reducing signal disruption during automated monitoring.

50 Ω Output for Accurate Shaft Measurement
The 330103-06-15-10-12-00 delivers a 50 Ω output signal with low supply sensitivity, supporting linear shaft displacement measurement across its 8 mm probe range. By keeping readings proportional under voltage variations, 330103-06-15-10-12-00 meets API 670 requirements for vibration and position monitoring.

Replacement of 3300 Series Probes without Recalibration
330103-06-15-10-12-00 can directly replace other 3300 series 5 mm and 8 mm probes using existing extension cables. This allows 330103-06-15-10-12-00 to restore automated monitoring systems to operation quickly without bench calibration, reducing maintenance time.

Operate from -52°C to +177°C with FluidLoc Cable Option
330103-06-15-10-12-00 functions reliably in extreme temperatures from -52°C to +177°C. When paired with FluidLoc cable options, 330103-06-15-10-12-00 blocks fluid ingress along the cable path, allowing installation in oil, gas, and chemical processing equipment.

Continuous Monitoring in High-Demand Industrial Systems
330103-06-15-10-12-00 is designed for turbines, compressors, and other rotating machinery, providing precise vibration, shaft displacement, and speed measurements. The robust mechanical and electrical design of 330103-06-15-10-12-00 ensures continuous automated monitoring even in harsh industrial environments.

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