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31000-28-05-15-032-03-02

Proximity Probe Housing Assemblies
In Stock

Product Information:

English Proximity Probe Housing

Assemblies

31000 and 32000 Proximity Probe Housing

Assemblies

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Technical specifications for 31000-28-05-15-032-03-02

  • Manufacturer:
    Bently Nevada
  • Product Category:
    TSI System
  • Estimated shipping dimensions:
    37x10x8cm
  • Weight:
    1.25 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Probe with Connector:
    3300 XL 8 mm probe, multiple approvals
  • Probe Cable Length:
    0.5 m (20 in)
  • Standoff Adapter Length:
    Minimum length 1.5 in (38 mm)
  • Probe Penetration:
    3.2 in (81.28 mm)
  • Fittings:
    Two plugs, one 3/4-14 NPT fitting One 3/4-14 to 1/2-14 NPT SST reducer One cable seal grip with grommets for the following cable sizes: • 1/8 to 3/16 inches • 1/4 to 5/16 inches • 5/16 to 3/8 inches
  • Mounting Thread:
    3/4-14 NPT (Required if ordering Standoff Adapter Option)
  • Category Series:
    31000 Series
  • Stock:
    10

Information

Overview Manuals Main Features Main Applications

Features:

  • Proximity Probe Housing Assemblies
  • 31000 and 32000 Proximity Probe Housing Assemblies
  • The 31000/32000 Proximity Probe Housing Assembly is made of polyphenylene sulfide (PPS)
When proximity probes need to be mounted inside a machine housing, the 31000/32000 type proximity probe housing assembly is recommended. This assembly is typically used for radially mounted sensors, whether for vibration or key phase measurements. Using a proximity probe housing allows for easy external access to the proximity probe and its extension cables, enabling gap adjustment or probe replacement without disassembling the machine.

The 31000/32000 type proximity probe housing assembly is made of polyphenylene sulfide (PPS), an advanced high-strength thermoplastic material with excellent corrosion resistance. Other components of the housing assembly are made of corrosion-resistant stainless steel. Versions of this housing assembly pre-installed with the 3300 XL type proximity probe and various conduit fittings are available by order.

The 31000-28-05-15-032-03-02 Bently Nevada Proximity Probe Housing Assemblies may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
Bently Nevada 31000-28-05-15-032-03-02 Proximity Probe Housing Assemblies Manuals(Datasheets), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
The 31000/32000 type proximity probe housing assembly fully complies with the American Petroleum Institute (API) 670 standard requirements for externally mounted proximity probe housings. When installed with an approved sensor system and appropriate I.S. barriers, the 31000/32000 proximity probe housing assembly can be used for intrinsically safe hazardous area applications.
High-speed turbo compressor: Mounted on the bearing housing of a centrifugal compressor, used to monitor radial shaft vibration and hydrodynamic bearing oil film thickness.
 
Cantilever process pump: Mounted on standard chemical, hydrocarbon, or water treatment pumps, suitable for situations where the space between the pump casing outer diameter and the shaft is limited.
 
Industrial gearbox: Mounted on the input or output shaft, used to measure high-frequency dynamic motion without interfering with internal gear teeth or oil rings.
 
Large motor: Mounted on the end cover of a heavy-duty induction motor, used to continuously track the shaft centerline position and detect rotor dynamic faults.

Ask our team:

  • What is the basic electromechanical conversion principle of the 31000-28-05-15-032-03-02 in a vibration monitoring system?
    The 31000-28-05-15-032-03-02 is a seismic wave velocity sensor based on the principle of electrodynamic sensing. It converts mechanical vibration velocity into a proportional electrical signal output for continuous monitoring of the state of mechanical equipment.
  • How does the 31000-28-05-15-032-03-02 achieve high-fidelity velocity-to-voltage signal conversion in an industrial environment?
    The 31000-28-05-15-032-03-02 utilizes the dynamics of an inertial mass coil in a magnetic field to generate a voltage proportional to the vibration velocity, thus ensuring linear and stable signal conversion.
  • Why is the 31000-28-05-15-032-03-02 particularly suitable for structural vibration and shell response analysis?
    The 31000-28-05-15-032-03-02 is specifically designed for the precise detection of low-to-mid-frequency vibrations in rotating machinery structures, such as imbalance, misalignment, looseness, and resonance.
  • Which industrial equipment categories benefit most from the 31000-28-05-15-032-03-02?
    The 31000-28-05-15-032-03-02 is widely used in equipment such as pumps, compressors, motors, fans, and turbines, where continuous vibration velocity monitoring is crucial for ensuring operational integrity.
  • How can the 31000-28-05-15-032-03-02 be integrated into industrial monitoring and automation architectures?
    The 31000-28-05-15-032-03-02 can connect to vibration transmitters and control systems, enabling seamless integration with plant-wide condition monitoring and protection systems.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.