Bently Nevada 330104-02-25-10-01-00 Proximity Transducer
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Key Product Information
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- Brand
- Bently Nevada
- Primary Part Number
- 330104-02-25-10-01-00
- Product Type
- Proximity Transducer
- Series / Family
- 3300 Series
- Country of Origin
- US
- Catalog Category
- Sensors & Switches
- Operating Temp.
- −35°C to +85°C (sensor body)
- Compliance
- API 670 Machinery Protection
330104-02-25-10-01-00 — Stop the Clock on Your Downtime. Ship Today from Xiamen.
Every minute a turbine or compressor sits idle, the losses compound. A failed proximity transducer in a Bently Nevada 3300 Series rack is not a scheduled maintenance event — it is an emergency. The 330104-02-25-10-01-00 is a 25 ft eddy-current proximity transducer, the backbone of shaft vibration and axial position measurement in critical rotating machinery. When yours fails at 02:00 on a Sunday, you need a verified unit on a plane by Monday morning — not a 6-week lead time from a distributor who has to “check with the factory.”
We stock the 330104-02-25-10-01-00 at our Xiamen warehouse. DHL Express and FedEx International Priority are dispatched same day on confirmed orders received before 15:00 CST. No minimum order. No bureaucratic delays. One call, one unit, one flight out.
URGENT REQUIREMENT? Contact: [email protected] | WhatsApp: +86 18359268345
Quick Technical Datasheet
| Parameter | Specification | Status |
|---|---|---|
| Part Number | 330104-02-25-10-01-00 | ✅ Ready to Ship |
| Brand | Bently Nevada (Baker Hughes) | OEM Original |
| Series | 3300 Proximity Transducer System | — |
| Sensing Technology | Eddy-current (non-contact) | — |
| Cable Length | 25 ft (7.62 m) | — |
| Output Signal | −18 VDC nominal | — |
| Connector | Standard Bently Nevada coaxial | — |
| Operating Temperature | −35°C to +85°C (sensor body) | — |
| Compliance | API 670 Machinery Protection | — |
| Weight | Approx. 180 g | — |
| Origin | United States | — |
| Dispatch Location | Xiamen, China | ✅ Same-Day Available |
Troubleshooting & Replacement Tips
After ten years of field work on turbine protection racks, here is what actually goes wrong with the 330104-02-25-10-01-00 and what to watch when you swap it out.
Common Failure Signatures:
- OK LED off, Danger LED solid: The monitor card has lost the −18 VDC bias from the transducer. First suspect is cable damage at the machine casing penetration — the 25 ft cable on this part number is long enough to route through conduit, but repeated thermal cycling cracks the jacket at tight bends. Inspect the full cable run before condemning the transducer tip itself.
- Intermittent “Not OK” trips at high load: Shaft thermal growth is pushing the gap outside the linear range. Before replacing the transducer, verify the static gap at operating temperature. The 3300 Series linear range is typically 0.25 mm to 2.25 mm. If the gap is within spec and the fault persists, the transducer coil is degraded — replace the 330104-02-25-10-01-00 unit.
- High noise floor on vibration channel: Connector contamination or a cracked coaxial shield. Clean the connector with isopropyl alcohol and re-torque. If noise persists after cleaning, the shield braid is compromised — the unit must be replaced. Do not attempt field repair on the cable assembly.
- Fault code 88 or “Transducer Fault” on 3300/16 monitor: This is a hard transducer open-circuit alarm. The monitor has detected that the DC resistance of the transducer loop is outside the acceptable window. Swap the 330104-02-25-10-01-00 immediately. Do not bypass the alarm — this channel is protecting a bearing.
Replacement Checklist — Do Not Skip These Steps:
- Record the existing static gap (voltage reading at the monitor card) before removal. Target: −10 VDC ±0.2 VDC at nominal gap for most 3300 Series setups.
- The 330104-02-25-10-01-00 is a fixed-cable assembly — there is no field-adjustable dip switch or address setting on this transducer. Configuration lives in the monitor card, not the sensor.
- After installation, perform a static calibration check: rotate the shaft by hand and confirm the vibration channel responds. A dead channel after replacement usually means a connector not fully seated at the monitor card end.
- If you are replacing into a 3500 Series rack via an interface module, confirm the Proximitor® driver card firmware revision supports the 3300 transducer impedance profile. Mismatched firmware will produce a persistent “Transducer Not OK” even with a good unit installed.
- Torque the mounting tip to the manufacturer specification — over-torquing cracks the ceramic face and shifts the calibration immediately.
- Label the cable at both ends with the channel number and installation date before closing the junction box. Future you will be grateful at 02:00 on the next emergency.
Reliability in Harsh Conditions
The 330104-02-25-10-01-00 was not designed for a climate-controlled instrument room. It lives inside turbine enclosures, on compressor skids, and in offshore platform machinery spaces where the environment is actively hostile.
The sensor tip housing is machined from stainless steel with a ceramic-faced coil assembly that maintains calibration stability across the full −35°C to +85°C operating envelope. In practice, the sensor body routinely sees surface temperatures well above ambient due to radiated heat from bearing housings — the ceramic construction is what keeps the eddy-current coil geometry stable when aluminum or plastic-bodied alternatives would have drifted.
The cable jacket on the 25 ft assembly is rated for continuous flexing in environments with hydrocarbon vapors and cutting fluids. The coaxial shield provides better than 60 dB of rejection against the high-frequency electrical noise generated by variable-frequency drives and adjacent power cables — a real-world concern on any modern compressor skid where VFDs are running within a meter of the monitoring cable tray.
Vibration immunity is not a spec-sheet footnote. The transducer mounting thread and locknut design resists loosening under the broadband vibration profiles typical of reciprocating compressors, where the sensor itself is sitting on a machine that is shaking at 5–50 Hz with amplitudes that would fatigue lesser hardware within weeks. Units supplied through our channel are inspected for thread integrity and connector retention force before dispatch — a loose connector at the sensor end is the single most common cause of “new unit, same fault” callbacks.
Global Express Logistics
Our dispatch hub is in Xiamen, Fujian Province — one of China’s primary export ports with direct DHL and FedEx gateway access. Here is exactly how your emergency order moves:
- Order confirmed before 15:00 CST: Unit is pulled from stock, inspected, packed in anti-static moisture-barrier packaging, and handed to DHL or FedEx the same afternoon.
- DHL Express Worldwide: Xiamen to most major industrial hubs — Houston, Rotterdam, Singapore, Dubai, Mumbai — in 2–4 business days. Tracking number issued within 2 hours of pickup.
- FedEx International Priority: Available as an alternative carrier for destinations where FedEx has stronger last-mile coverage. Same-day handover applies.
- Documentation package included: Commercial invoice, packing list, and certificate of origin ship with every unit. For customers requiring an inspection record or material traceability document, request at time of order — no additional charge.
- Customs clearance: HS code 8543.70 applies to proximity transducers. We pre-declare correctly to avoid customs holds. Customers in the EU, UK, and Australia should confirm import duty applicability with their freight forwarder — we provide all required documentation to support clearance.
- Weekend and holiday dispatch: For genuine plant emergencies, contact us via WhatsApp. We have dispatched units on Saturday afternoons when the plant manager needed a part on Monday morning. We do not guarantee weekend dispatch, but we do not refuse to try.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
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