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SKU:330101-00-18-10-02-05

Bently Nevada 3300 XL 8mm Probe 330101-00-18-10-02-05

Auf Lager (29 Einheiten), versandbereit
  • Manufacturer: Bently Nevada

  • Product No.: 330101-00-18-10-02-05

  • Product Type: 3300 XL 8 mm Probe

  • Product Origin: USA

  • Payment:T/T, Western Union

  • Weight: 323g

  • Shipping port: Xiamen

  • Warranty: 12 months

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Beschreibung

Product Overview

The Bently Nevada 330101-00-18-10-02-05 is an industrial-grade 3300 XL 8 mm proximity probe designed for critical machinery vibration and position monitoring. Utilizing non-contacting eddy-current technology, this probe measures dynamic radial vibration, axial position, and structural eccentricity on high-speed rotating shafts. Built in the United States, this robust assembly provides reliable sensor longevity and comes with an optional Certificate of Origin (COO) for strict compliance tracing.

The physical composition of the 330101 series focuses heavily on structural robustness. A specialized, patented TipLoc molding method creates an ultra-secure mechanical bond between the Polyphenylene Sulfide (PPS) plastic tip and the stainless steel case body. Additionally, the integrated 1.0-meter cable utilizes a patented CableLoc structural anchoring design, yielding a rated 330 N (75 lbf) pull strength. The integrated cable exhibits a solid linear weight density of 323 grams per meter (11.4 oz/meter), providing heavy-duty mechanical shielding against continuous operational runtime vibrations and routine physical handling during plant maintenance cycles.

Technical Configuration Breakout

The specialized alphanumeric coding system defines the exact physical parameters of this specific 3300 XL probe configuration:

  • 330101: Identifies the core 3300 XL 8 mm Proximity Probe family with standard 3/8-24 UNF imperial threading (without protective armor).
  • 00 (Unthreaded Length Option): Configured with 0.0 inches of unthreaded body length.
  • 18 (Overall Case Length Option): Specifies a total case thread length of 1.8 inches.
  • 10 (Total Length Option): Built with an integrated 1.0-meter (approx. 3.3 feet) cable assembly.
  • 02 (Connector/Cable Type): Features a standard miniature coaxial ClickLoc connector interface.
  • 05 (Approvals Option): Certified for critical installations requiring multi-agency hazardous area approvals, including CSA, ATEX, and IECEx.

Technical Specifications

Parameter Specification Value
Probe Diameter 8 mm (offers optimal encapsulation and physical defense)
Thread Mounting Profile 3/8-24 UNF thread structure (unarmored)
Total System Linear Range 2 mm (80 mils); functional from 0.25 to 2.3 mm (10 to 90 mils)
Incremental Scale Factor (ISF) 7.87 V/mm (200 mV/mil) ± 5% for a standard 1m / 5m system configuration
Deviation from Best Fit Straight Line Less than ±0.025 mm (±1 mil) within 0°C to +45°C bounds
Nominal Probe DC Resistance ($R_{PROBE}$) 7.59 Ω ± 0.50 Ω (center conductor to outer shield)
Cable Electrical Capacitance 69.9 pF/meter (21.3 pF/foot) typical value
Operating and Storage Temperature -52°C to +177°C (-62°F to +350°F) for standard probe assemblies
Mechanical Dynamic Pull Strength 330 N (75 lbf) maximum safe tensile load
Cable Linear Weight Density 323 grams per meter (11.4 oz/meter)
Probe Case Material AISI 303 or AISI 304 Stainless Steel (SST)
Environmental Humidity Defense < 3% change in Average Scale Factor (ASF) under 93% RH for 56 days

Core Operational Details & Engineering Integration

Mechanical Robustness and Material Selection

The selection of an 8 mm probe body provides a significantly more robust case framework than smaller 5 mm options, reducing the likelihood of cross-threading or mechanical deformation during installation. The core sensing element resides inside a molded Polyphenylene Sulfide (PPS) tip. This advanced engineering plastic provides chemical immunity to standard synthetic machine oils, moisture ingress, and corrosive industrial atmospheres. The deliberate 323 g/m weight distribution of the transmission lead ensures the unarmored cable retains proper structural stiffness, preventing drooping when spanned unsupported inside machine cowlings.

Pressure Sealing Precautions

The internal assembly relies on an industrial-grade Viton® O-ring to seal differential pressure migrating between the probe tip and the stainless steel case body. Note that standard production units are not pre-tested for high-pressure seal verification prior to shipment from the factory. For high-pressure processing environments, verification procedures should be coordinated before field implementation.

Field Wiring and Transmission Extensions

Connecting the primary 3300 XL Proximitor® sensor out to your centralized monitoring rack requires a 3-conductor shielded triad cable using tinned field wiring. The wire size must fall within 0.2 to 1.5 mm² (16 to 24 AWG). The maximum allowable physical distance separating the Proximitor sensor from the structural monitor chassis is 305 meters (1,000 feet). When approaching maximum field wire runs, consult system frequency response curves to offset potential high-frequency signal roll-off.

Technical FAQs

Q1: What is the optimal voltage gap setting for typical radial vibration monitoring setups?

A1: For standard radial vibration paths, the recommended physical gap setting corresponds to a target value of **-9 Vdc**. This electrical position aligns to roughly the center of the probe's linear operational band, placing the sensor at a physical distance of approximately 1.27 mm (50 mils) away from the monitored shaft target surface.

Q2: How does exposing the probe to temperatures below –34°C affect its operational safety?

A2: While the probe is rated down to an ambient temperature boundary of -52°C, dropping below –34°C (-30°F) can cause the elastomeric Viton® pressure seal material to harden. This may lead to premature failure of the fluid-tight differential seal, potentially allowing process fluids to leak past the internal case path.

Q3: What is the purpose of the optional FluidLoc cable variant mentioned in the product line literature?

A3: The standard cable layout uses traditional internal shielding paths. The optional FluidLoc configuration utilizes specialized internal blocking materials that prevent lubricants and other liquids from migrating or leaking out of the machine housing via the interior interstitial spaces of the probe cable itself.

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