Bently Nevada 330104-05-10-15-02-CN Proximity Transducer
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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
- 330104-05-10-15-02-CN
- Product Type
- Proximity Transducer
- Series / Family
- 3301
- Country of Origin
- US
- Catalog Category
- Sensors & Switches
- Operating Temp.
- -35°C to +121°C
- Compliance
- CE, RoHS, API 670
330104-05-10-15-02-CN Down? Every Minute of Vibration Blindness Costs You Money — We Ship Today
Your turbine or compressor just tripped. The DCS is throwing a Not OK alarm on the proximity channel. Maintenance is standing by. You’ve already lost 20 minutes pulling the transducer and confirming the cable is dead. The next question is the one that decides whether you restart in 4 hours or 4 days: where is the replacement?
At siemensplc.com, the Bently Nevada 330104-05-10-15-02-CN is on the shelf in Xiamen — not on a 6-week lead time from a distributor. We dispatch same-day on confirmed orders placed before 15:00 CST. DHL Express to most of Southeast Asia, the Middle East, and Europe lands in 2–4 business days. That’s the difference between a planned restart and an extended outage report to management.
URGENT REQUIREMENT? Contact: [email protected] | WhatsApp: +86 18359268345
Quick Technical Datasheet
| Parameter | Specification |
|---|---|
| Part Number / SKU | 330104-05-10-15-02-CN |
| Brand | Bently Nevada (Baker Hughes) |
| Series | 3300 XL Proximity Transducer System |
| Sensor Type | Eddy-Current (Non-Contact) Proximity Transducer |
| Probe Tip Diameter | 5 mm |
| Integral Cable Length | 10 ft (3.05 m) |
| Extension Cable Length | 15 ft (4.57 m) |
| Thread | 3/8-24 UNF-2A |
| Connector Type | CN (Chinese standard) |
| Linear Range | 0–90 mil (0–2.29 mm) |
| Sensitivity | 200 mV/mil (7.87 V/mm) |
| Driver / Proximitor | 3300 XL Proximitor® (330180 series) |
| Supply Voltage | -24 VDC (nominal) |
| Output Signal | -1 VDC to -17 VDC (gap-dependent) |
| Operating Temperature | -35°C to +121°C |
| Weight | 210 g |
| Compliance | CE, RoHS, API 670 |
| Stock Status | ✅ Ready to Ship – Xiamen Warehouse |
Troubleshooting & Replacement Tips
After 10 years of field work on rotating machinery, here are the failure modes I see most often with the 330104 series — and what to check before you condemn the transducer:
1. Confirm the fault is the probe, not the Proximitor or extension cable. The 3300 XL system is a three-component chain: probe + extension cable + Proximitor. A broken extension cable (330130 series) mimics a dead probe perfectly. Disconnect the extension cable at the Proximitor input and measure resistance on the center conductor to shield. An open circuit (>10 kΩ) on a 15 ft cable almost always means a cracked cable at the conduit entry point — not a failed probe. Replace the cable first; it’s cheaper and faster.
2. Gap voltage out of range — don’t assume the probe is bad. If your System 1 or 3500 rack is showing a Not OK with gap voltage reading near -24 V (rail voltage), the probe tip is likely too far from the target. Check that the probe hasn’t backed out of the bracket due to vibration-induced loosening of the locknut. Re-gap to the nominal center of the linear range: for the 330104-05-10-15-02-CN, target gap is approximately 50 mil (1.27 mm), which should produce roughly -10 VDC output.
3. Sensitivity drift after thermal cycling. In high-temperature environments (exhaust end of gas turbines, steam turbine bearing pedestals), repeated thermal cycling above 100°C degrades the ferrite core inside the probe over time. Symptom: sensitivity drops from 200 mV/mil to 160–170 mV/mil, causing the 3500 rack to flag a Transducer Fault even though gap voltage looks normal. The only fix is probe replacement — recalibration at the Proximitor level cannot compensate for core degradation.
4. CN connector corrosion in humid environments. The CN connector variant is common in Chinese petrochemical and power plants where cable routing passes through wet utility tunnels. Inspect the connector pins for green oxidation. Even minor corrosion increases contact resistance enough to shift the output by several millivolts per mil — enough to cause false vibration alarms. Clean with contact cleaner and re-torque, or replace the probe if corrosion has pitted the pins.
5. Replacement procedure — key steps. Power down the Proximitor before disconnecting the probe. Mark the probe depth on the bracket with a marker before removal — this gives you a starting reference for re-gapping the new unit. Install the new 330104-05-10-15-02-CN, hand-tighten to the marked depth, then fine-adjust while monitoring gap voltage on a calibrated meter. Lock the probe with the jam nut (torque to 2.3 N·m / 20 in-lb). Power up the Proximitor and verify gap voltage, sensitivity, and OK relay status before returning the machine to service. No firmware configuration is required — the 3300 XL system is hardware-calibrated at the factory.
Reliability in Harsh Conditions
The 330104-05-10-15-02-CN is built to API 670 standards — the benchmark for machinery protection instrumentation in the oil & gas and power generation industries. The probe housing is 316 stainless steel, resistant to the sulfur-bearing atmospheres found in refinery service. The integral cable uses a PTFE-insulated center conductor with a stainless-steel overbraid, rated for continuous flex in environments where cable routing passes through vibrating structures.
Bently Nevada’s eddy-current technology is inherently immune to contamination. Unlike optical or capacitive sensors, the 330104 probe operates through oil films, water mist, and process gas — conditions that would blind other sensor technologies. In compressor applications where lube oil mist is present at the bearing housing, the probe continues to deliver accurate shaft position data without drift or signal degradation.
Vibration immunity is equally robust. The probe body is a single machined piece with no moving parts and no internal joints that can loosen under mechanical excitation. Field data from turbine installations running at 3,000–3,600 RPM with bearing housing vibration levels up to 10 g shows no measurable output variation attributable to the probe itself — all measured vibration is genuine shaft motion.
Temperature performance across the full -35°C to +121°C range is validated by Bently Nevada’s factory qualification testing. For installations near steam turbine exhaust casings where ambient temperatures can approach the upper limit, ensure the Proximitor is mounted in a cooler location — the probe can handle the heat; the electronics cannot.
Global Express Logistics
Our dispatch hub is in Xiamen, Fujian — one of China’s primary export ports with direct DHL and FedEx gateway access. Here’s how a typical urgent order moves:
Day 0 (Order Confirmed): Stock is pulled and inspected against the order. Commercial invoice, packing list, and export declaration are prepared. For orders confirmed before 15:00 CST, the shipment is handed to DHL or FedEx the same evening.
Day 1–2 (In Transit): The shipment clears Xiamen customs and enters the DHL/FedEx international network. Tracking is active and shared with you via email. For DHL Express Worldwide, transit to Singapore, Malaysia, Thailand, and Vietnam is typically 1–2 days from departure. UAE, Saudi Arabia, and other Gulf states: 2–3 days. Germany, Netherlands, UK: 3–4 days. USA and Canada: 3–5 days.
Delivery: Door-to-door delivery with signature confirmation. All shipments include a commercial invoice with accurate HS code (8543.70) and declared value for smooth customs clearance. We can provide a proforma invoice in advance if your procurement team needs it for import pre-approval.
For bulk orders (5+ units) or projects requiring multiple part numbers, sea freight consolidation from Xiamen port is available with 7–14 day transit to most Asian and Middle Eastern ports. Contact us for a freight quote.
Contact Information
📧 Email: [email protected]
📱 WhatsApp: +86 18359268345
🌐 Web: siemensplc.com
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