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Bently Nevada 330104-00-05-10-01-05 Proximity Transducer

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Key Product Information

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Brand
Bently Nevada
Primary Part Number
330104-00-05-10-01-05
Product Type
Proximity Transducer
Series / Family
3301
Country of Origin
US
Catalog Category
Sensors & Switches
Compliance
API 670 (5th Ed.), ISO 10816 / ISO 20816
Model confirmed for inquiry 330104-00-05-10-01-05 Send quantity, destination and urgency. The RFQ form keeps this part number attached.
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Product Overview

330104-00-05-10-01-05 In Stock — Every Hour of Downtime Costs You More Than This Module

Your turbine tripped at 02:00. The DCS is screaming gap voltage fault. Maintenance is standing by. You need a verified 3300 XL 8mm proximity transducer on-site — not in three weeks, not “subject to availability.” We stock the Bently Nevada 330104-00-05-10-01-05 in Xiamen and ship same-day via DHL Express. While your competitors are still waiting on lead times, your machine is back online.

URGENT REQUIREMENT? Contact: [email protected] | WhatsApp: +86 18359268345

Quick Technical Datasheet

Parameter Specification
Part Number 330104-00-05-10-01-05
Brand Bently Nevada
Series 3300 XL
Probe Tip Diameter 8 mm
Measurement Type Eddy-Current Non-Contact Displacement
Linear Range 0 – 2 mm (target material dependent)
Scale Factor 7.87 V/mm (200 mV/mil) nominal
Frequency Response DC to 10,000 Hz
Probe Operating Temp –35 °C to +177 °C
Proximitor Operating Temp –35 °C to +85 °C
Supply Voltage –24 VDC (–18 to –26 VDC)
Output Signal –1 to –21 VDC (gap voltage)
Standard Target Material AISI 4140 Steel
Certifications CE, ATEX, IECEx (zone-rated variants)
Compliance API 670 (5th Ed.), ISO 10816 / ISO 20816
Connector Integral coaxial, armored cable
Weight ~80 g
Stock Status ✅ Ready to Ship — Xiamen Warehouse

Troubleshooting & Replacement Tips

Ten years of field calls on 3300 XL systems teach you the same lessons repeatedly. Here is what actually matters when you are swapping a 330104-00-05-10-01-05 under pressure:

1. Confirm the fault before you pull the probe. A gap voltage reading outside –2 to –18 VDC at the Proximitor output terminal is your first hard indicator. If gap voltage is stuck at supply rail (–24 V) or at 0 V, suspect the extension cable or Proximitor before condemning the probe itself. Wiggle the armored cable at both termination points — intermittent opens account for roughly 40% of “probe failures” in the field.

2. Measure the installation gap before removal. Record the existing gap with a feeler gauge or dial indicator. The 330104-00-05-10-01-05 targets a nominal 1.0 mm (40 mil) gap on AISI 4140 steel, yielding approximately –10 VDC. If your predecessor set a non-standard gap to compensate for a worn shaft, you need to know that before you torque the new probe to the same depth.

3. Check the extension cable suffix. The 330104 probe mates with 330130-series extension cables. Mismatched cable lengths alter the system capacitance and shift the scale factor. Verify the cable suffix (e.g., -045-00-00 for 4.5 m) matches your Proximitor calibration. Installing a 9 m cable on a system calibrated for 5 m will produce a 3–5% scale error — enough to trigger nuisance trips on tight alarm setpoints.

4. Proximitor power-up sequence. After installing the replacement probe, apply –24 VDC to the Proximitor before inserting the probe into the bearing housing. Confirm gap voltage reads approximately –21 VDC (probe in air, no target). Then thread the probe in slowly, watching the output drop toward –10 VDC as you approach the 1.0 mm target gap. Lock the probe with the jam nut — 20–25 N·m is typical; check your site standard.

5. Common fault codes on 3500 monitors with this probe system:

  • OK/Alert/Danger relay de-energized, no vibration data: Gap voltage out of range. Probe not seated, cable open, or Proximitor failed.
  • Buffered output clipping: Probe too close to shaft. Back out 0.25 mm and recheck.
  • High 1X amplitude after replacement: Probe axis not aligned to shaft centerline. Verify radial probe orientation per OEM drawing.
  • Intermittent dropout at operating speed: Loose jam nut. Vibration is backing the probe out. Re-torque and apply thread-locking compound per site procedure.

6. Target material matters. If your shaft is not AISI 4140 (e.g., Inconel, titanium, or stainless), the standard scale factor does not apply. Request a material-specific calibration curve from Bently Nevada or use the field calibration procedure in TIL-073 before returning the machine to service.

Reliability in Harsh Conditions

The 3300 XL platform was not designed for a lab. It was designed for the inside of a steam turbine pedestal where ambient temperatures swing 120 °C between cold startup and full-load operation, where lube oil mist coats every surface, and where the floor vibrates at 50 Hz continuously. The 330104-00-05-10-01-05 is rated to withstand:

  • Vibration: 20 g peak sinusoidal, 10–2,000 Hz per IEC 60068-2-6. The armored cable and integral connector are the weak points in most installations — not the probe body itself. Secure cable runs with clamps every 300 mm to prevent fatigue cracking at the termination.
  • Temperature cycling: Probe tip rated to +177 °C continuous. In high-temperature steam turbine applications, verify that the extension cable routing does not expose the cable jacket to temperatures exceeding its rating. Use ceramic-sleeved cable extensions in hot zones.
  • Moisture and contamination: The probe housing is hermetically sealed. However, the Proximitor enclosure requires a clean, dry environment. In humid tropical or coastal installations, install desiccant breathers on the junction box and inspect annually.
  • EMI/RFI: The coaxial cable architecture provides inherent shielding. Ground the shield at the Proximitor end only — floating the probe end prevents ground loops that introduce 50/60 Hz noise into the vibration signal.
  • Chemical exposure: The probe body is compatible with most hydrocarbon lubricants and process gases. Avoid prolonged exposure to strong acids or halogenated solvents, which can attack the cable jacket.

Units supplied by siemensplc.com are inspected for physical integrity, connector condition, and cable continuity prior to dispatch. We do not ship cosmetically damaged or previously installed units without explicit disclosure.

Global Express Logistics

Downtime does not respect time zones. Our Xiamen warehouse operates on a same-day dispatch schedule for orders confirmed before 15:00 CST. Here is how your replacement module moves from our shelf to your plant floor:

  • Order confirmation → warehouse pick: Within 2 hours of payment or PO acceptance.
  • Export documentation: Commercial invoice, packing list, and HS code 9031.80 prepared simultaneously. ATEX/IECEx certificates included in shipment where applicable.
  • Carrier: DHL Express (primary) or FedEx International Priority. Both offer next-flight-out options for critical shipments — request at time of order.
  • Transit times from Xiamen: Southeast Asia 1–2 days | Middle East 2–3 days | Europe 2–4 days | North America 3–5 days | South America / Africa 4–7 days.
  • Tracking: AWB number provided within 4 hours of dispatch. Real-time tracking link sent via email and WhatsApp.
  • Customs clearance: We pre-declare all shipments with accurate HS codes and country of origin documentation to minimize customs hold risk. For duty-sensitive destinations, contact us for DAP or DDP Incoterms options.
  • Emergency freight: For true plant-down situations, we can arrange hand-carry courier service to major industrial hubs. Contact us directly on WhatsApp for same-day arrangements.

Contact Information

📧 Email: [email protected]
📱 WhatsApp: +86 18359268345
🌐 Web: siemensplc.com
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