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SKU:330901-08-21-10-02-00

330901-08-21-10-02-00 Bently Nevada - Proximity Probe

Em estoque (15 unidades), pronto para envio
  • Manufacturer: Bently Nevada

  • Product No.: 330901-08-21-10-02-00

  • Product Type: 3300 NSv Probe

  • Product Origin: USA

  • Payment:T/T, Western Union

  • Weight: 150g

  • Shipping port: Xiamen

  • Warranty: 12 months

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Descrição

Bently Nevada 330901-08-21-10-02-00 3300 NSv Proximity Probe

The module functions as a highly specialized eddy current proximity sensor engineered for vibration, position, and oil-film monitoring within industrial turbomachinery and confined plant spaces. Featuring a 1/4-28 UNF unarmored thread profile, this precision sensor provides an unthreaded barrel length of 0.8 inches and a total 1.0-meter integrated FEP coaxial cable terminated with a miniature ClickLoc connector, allowing robust fluid-sealed displacement tracking across extreme -52°C to +177°C thermal boundaries.

Technical Specifications

Manufacturer Bently Nevada (Rockwell Automation / Baker Hughes compatible)
Full Product Number 330901-08-21-10-02-00
Product Transducer Series 3300 NSv Proximity Transducer System
Thread Configuration Matrix 1/4-28 UNF structural thread path (Without protective armor)
Dimensional Profile Unthreaded length: 0.8 in (08) | Overall case length: 2.1 in (21)
Total Cable Length Target 1.0 Meter / 39 inches (10) continuous media trace
Connector and Cable Profile Miniature coaxial ClickLoc connector, standard 75 Ω FEP insulated cable (02)
Core Structural Materials Case: AISI304 Stainless Steel (SST) | Tip: Polyphenylene Sulfide (PPS)
Internal DC Resistance Loop 4.2 ± 0.5 ohms from center conductor to outer shield layer
Mechanical Torque Constraints Recommended installation: 5.1 N•m (45 in•lb) | Maximum limit: 7.3 N•m (65 in•lb)
Thread Engagement Limit 0.375 inches maximum mechanical contact depth
Environmental Temperature Span Operating & Storage: -52°C to +177°C (-62°F to +351°F) continuous
Differential Pressure Sealing Integrated Viton O-ring seal between probe tip and outer steel housing
Estimated Weight Boundaries Approximately 14 to 150 g (0.5 to 5.3 oz) based on lead layout density
Agency Approval Option Standard version; Approvals not required (00)

Quick Installation Guide

  • Isolate the machine control monitor and ensure the target shaft assembly is completely stationary before screwing in the proximity tracking sensor.
  • Carefully thread the 1/4-28 UNF stainless steel body of the sensor into the mounting bracket, verifying that the total thread engagement does not exceed the 0.375-inch safety boundary.
  • Use an accurate torque wrench to lock the casing to a recommended hold of 5.1 N•m (45 in•lb), making sure not to cross the 7.3 N•m (65 in•lb) maximum threshold to avoid shearing the housing.
  • Route the 1.0-meter unarmored FEP cable smoothly along passive machine pathways, click-lock the coaxial ClickLoc interface firmly into the extension line, and lock the system bracket down.

Technical FAQs

Q1: Why is the choice of Polyphenylene Sulfide (PPS) critical for the tip material of the 3300 NSv probe?
A1: Polyphenylene Sulfide (PPS) is a high-performance engineering thermoplastic that offers outstanding chemical resistance and dimensional stability at temperatures reaching up to +177°C. This ensures the probe tip remains rigid and unaffected by aggressive industrial lubricants or synthetic fluids, preserving the air gap calibration necessary for precision eddy current tracking.

Q2: What operational hazards occur if the probe faces sustained low temperatures below -34°C?
A2: Although the core electronics function down to -52°C, exposing the sensor to sustained temperatures below -34°C (-30°F) compromises the elastomeric properties of the integrated Viton O-ring seal. This hardening can lead to a premature failure of the internal differential pressure barrier, potentially allowing process oils or vapors to migrate into the probe case body.

Q3: How does the internal 4.2 ohm DC resistance metric guide diagnostic verification in the field?
A3: Measuring a nominal loop resistance of 4.2 ± 0.5 ohms between the center conductor and the outer shield of the 1.0-meter cable confirms the copper core is intact and free of internal micro-breaks. A reading substantially lower indicates an internal short circuit within the 75 Ω coaxial path, while an open circuit measurement confirms a fractured conductor line or a damaged ClickLoc connector junction.

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