Bently Nevada 330905-00-10-10-02-05 Proximity Probe
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Key Product Information
Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.
- Brand
- Bently Nevada
- Primary Part Number
- 330905-00-10-10-02-05
- Product Type
- Proximity Probe
- Series / Family
- 3309
- Country of Origin
- US
- Catalog Category
- Sensors & Switches
- Operating Temp.
- –35 °C to +177 °C
- Compliance
- API 670, ISO 10816/20816, CE, RoHS
330905-00-10-10-02-05 In Stock — Every Hour of Downtime Costs You More Than This Part
Your turbine is down. The compressor tripped on high vibration. The DCS is screaming. You’ve already called three distributors and nobody has stock. We do. The Bently Nevada 330905-00-10-10-02-05 is on our shelf in Xiamen right now — packed, labeled, and ready to move the moment you confirm. DHL Express to most destinations in 24–72 hours. No lead time. No back-order excuses.
This is not a listing. This is a lifeline.
URGENT REQUIREMENT? Contact: [email protected] | WhatsApp: +86 18359268345
Quick Technical Datasheet
| Part Number | 330905-00-10-10-02-05 ✔ Ready to Ship |
| Brand | Bently Nevada (Baker Hughes) |
| Series | 3300 NSv (Non-Standard Voltage) |
| Type | Eddy-Current Proximity Probe |
| Probe Tip Diameter | Ø 10 mm |
| Integral Cable Length | 1.0 m (armored) |
| Extension Cable Length | 1.0 m (matched set) |
| Linear Measurement Range | 0.25 mm – 2.25 mm (10–90 mil) |
| Scale Factor | 7.87 V/mm (200 mV/mil) nominal |
| Frequency Response | DC – 10,000 Hz (–3 dB) |
| Operating Temperature | –35 °C to +177 °C |
| Supply Voltage | –24 VDC via Proximitor® driver |
| Output Voltage Range | –2 VDC to –18 VDC |
| Target Material (Factory Cal.) | AISI 4140 steel |
| Ingress Protection | IP67 |
| Connector | MIL-C-5015 style, 2-pin |
| Weight | 420 g (probe + cable assembly) |
| Compliance | API 670, ISO 10816/20816, CE, RoHS |
| Origin | USA |
| Stock Status | In Stock — Ships within 24 hours of order confirmation |
Troubleshooting & Replacement Tips
Step 1 — Confirm the fault before you pull the probe. A gap voltage reading outside the –10 V ± 1 V window at nominal air gap (1.0 mm) is your primary indicator of probe failure. If gap voltage is correct but vibration amplitude is erratic, suspect the extension cable or Proximitor® driver first — probes rarely fail in isolation.
Step 2 — NSv vs. standard: do not mix. The 330905-00-10-10-02-05 is an NSv-rated probe. Its output voltage range (–2 V to –18 V) differs from standard 3300 probes. Connecting it to a standard Proximitor® driver will produce a shifted scale factor, triggering false high-vibration alarms or masking real faults. Verify your driver label reads “NSv” before installation.
Step 3 — Replace as a matched set when possible. Bently Nevada factory-calibrates probe, extension cable, and Proximitor® as a three-component system. If you replace only the probe, perform a gap voltage verification and scale factor check per API 670 Annex D before returning the machine to service. Skipping this step is the single most common cause of post-maintenance vibration trips.
Step 4 — Target material matters. Factory calibration is for AISI 4140 steel. If your shaft is 316 stainless, Inconel 718, or titanium, the effective scale factor shifts by 5–15%. Request the material-specific calibration curve from us at the time of order — we maintain a library of common alloy correction factors.
Step 5 — Torque and alignment. Probe tip-to-shaft gap must be set to the midpoint of the linear range (approximately 1.0–1.27 mm / 40–50 mil) using a non-magnetic feeler gauge. Over-torquing the locknut beyond 5 N·m will crack the probe body — a failure mode that shows up as intermittent signal dropout under vibration, not a clean open circuit.
Common fault codes associated with this probe:
- OK/NOT OK relay chatter — Usually extension cable shield continuity failure. Flex the cable near the connector while monitoring gap voltage.
- Constant –24 V output — Probe tip shorted to ground (physical contact with shaft or metallic debris). Inspect air gap immediately.
- Constant 0 V output — Open circuit in probe coil or cable. Measure coil resistance: should be 8–12 Ω at room temperature.
- High 1× vibration after replacement — Probe not aligned to shaft centerline. Recheck bracket rigidity and probe perpendicularity to shaft surface.
- Slow-roll runout exceeds API 670 limit — Shaft surface finish degraded or probe tip contaminated with ferrous debris. Clean tip with IPA and re-gap.
Reliability in Harsh Conditions
The 330905-00-10-10-02-05 was not designed for a clean lab. It was designed for the bearing pedestal of a 60 MW steam turbine running at 3,000 RPM in a petrochemical plant where ambient temperature swings 80 °C between winter shutdown and summer full-load operation.
The probe body is machined from 316 stainless steel with a PTFE-insulated, stainless-braid-armored cable that resists turbine oil, steam condensate, and the caustic cleaning agents used during major overhauls. The MIL-spec connector maintains contact integrity through thousands of thermal cycles — a failure point on cheaper alternatives that use commercial-grade connectors.
Vibration immunity is inherent in the eddy-current measurement principle: there are no moving parts, no piezoelectric elements to depolarize, and no MEMS structures to fatigue. The probe will outlast the bearing it monitors if installed correctly. The IP67 rating means temporary immersion during flooding events or wash-down procedures will not compromise the sensing element.
Operating temperature ceiling of +177 °C covers hot-section bearing pedestals on gas turbines where competing probe families top out at +120 °C and require heat shields that add installation complexity and maintenance access problems. At the low end, –35 °C cold-start capability ensures the probe is already delivering valid gap voltage data before the machine reaches operating speed — critical for cold-climate power plants where slow-roll monitoring during startup is a protection requirement.
Every unit we ship has passed visual inspection, connector continuity check, and cable integrity verification. We do not sell refurbished-as-new or grey-market parts. If you need traceability documentation for your maintenance management system, request it at the time of order.
Global Express Logistics
Our warehouse is located in Xiamen, China — a major international cargo hub with daily DHL Express and FedEx International Priority departures. Here is what happens after you confirm your order:
- Hour 0–2: Order confirmed, unit pulled from shelf, export documentation prepared (commercial invoice, packing list, HS code 9026.80).
- Hour 2–6: Unit packed in anti-static foam with original manufacturer packaging where available. Shipment booked with DHL Express or FedEx IP depending on destination and your preference.
- Hour 6–24: Handed to carrier at Xiamen Gaoqi International Airport cargo facility. Tracking number sent to your email.
- Day 1–3: Delivery to most destinations in Southeast Asia, Middle East, Europe, and North America. Remote locations may require an additional 24–48 hours.
We handle all export customs clearance from the China side. For import duties and VAT on your end, we provide a complete commercial invoice with accurate HS codes to facilitate smooth customs clearance. For customers in the EU, we can declare under DDP (Delivered Duty Paid) terms on request — ask us before checkout.
Emergency same-day dispatch is available for orders confirmed before 14:00 CST. If your plant is down and every hour matters, call us directly on WhatsApp — we will coordinate with the carrier for the earliest possible flight.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
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Confirmation Process
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