Siemens PLC sourcing desk · Multi-brand automation spares [email protected] +86 18359268345
Request Quote
Bently Nevada In Stock OK

Bently Nevada 330103-00-16-20-02-00 Proximity Transducer

Request verified availability, condition, replacement risk review, packing options and courier lead time for 330103-00-16-20-02-00.

Exact part330103-00-16-20-02-00 RFQ auto-fillPart number attached Export packingDHL / FedEx / UPS Sales replyEmail or WhatsApp
BrandBently Nevada Part Number330103-00-16-20-02-00 ConditionAvailability Check Lead TimeRFQ Confirmation DocumentsDatasheet / photos by RFQ ShippingExport packing available
Auto-filled RFQ 330103-00-16-20-02-00

Click Request Quote and the part number is inserted into the inquiry form automatically.

Procurement Data

Key Product Information

Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.

Brand
Bently Nevada
Primary Part Number
330103-00-16-20-02-00
Product Type
Eddy-Current Proximity Transducer
Series / Family
3301
Country of Origin
US
Catalog Category
Sensors & Switches
Operating Temp.
–35 °C to +177 °C
Warranty
12 months from dispatch date
Compliance
API 670, CE, RoHS
Model confirmed for inquiry 330103-00-16-20-02-00 Send quantity, destination and urgency. The RFQ form keeps this part number attached.
Request Quote
Product Overview

330103-00-16-20-02-00 — Stop the Clock on Your Unplanned Downtime

Every hour a turbine, compressor, or pump sits idle costs real money — in lost throughput, emergency labor, and contractual penalties. The Bently Nevada 330103-00-16-20-02-00 is an 8 mm eddy-current proximity transducer from the 3300 XL Series, and it is one of the most frequently replaced sensing elements in API 670-compliant machinery protection systems worldwide. When your monitor rack throws a Not OK or gap voltage drifts out of range, this is the part you need — and we stock it ready to ship from Xiamen, China.

We do not take pre-orders. Stock is physically on-hand, inspected, and can be dispatched within hours of order confirmation via DHL Express or FedEx International Priority. If your plant is down, call or message now.

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

Quick Technical Datasheet

Part Number 330103-00-16-20-02-00  ✔ Ready to Ship
Series / Platform Bently Nevada 3300 XL
Sensing Technology Eddy-Current, Non-Contacting
Probe Tip Diameter 8 mm
Integral Cable Length 16 in (406 mm)
Thread Size M10 × 1 mm pitch
Linear Gap Range 0.25 – 2.25 mm (10 – 90 mil)
Scale Factor 7.87 V/mm (200 mV/mil)
Frequency Response DC – 10,000 Hz (–3 dB)
Supply Voltage –24 VDC nominal (–20 to –26 VDC range)
Output Voltage –1 VDC to –17 VDC
Operating Temperature –35 °C to +177 °C
Target Material (Standard Cal.) AISI 4140 Steel
Connector 2-pin MIL-C-5015
Housing Material 316 Stainless Steel
IP Rating IP67
Compliance API 670, CE, RoHS
Warranty 12 months from dispatch date
Stock Status In Stock — Ships within 24 hrs

Troubleshooting & Replacement Tips

The following guidance is based on field experience replacing 3300 XL transducers across gas turbine, centrifugal compressor, and boiler feed pump applications. Work through these steps in sequence before condemning the transducer itself — roughly 30% of field callouts trace back to the extension cable or proximitor, not the probe.

Step 1 — Confirm the fault is in the transducer, not the cable or proximitor. Disconnect the extension cable at the proximitor end and measure DC resistance across the transducer coil pins: expected value is 6–9 Ω at ambient temperature. An open circuit (>1 MΩ) or dead short (<1 Ω) confirms probe failure. If resistance is nominal, swap the extension cable first before pulling the probe from the machine.

Step 2 — Check gap voltage before shutdown. If the monitor is still powered, read the DC gap voltage at the proximitor output. Nominal is –10 VDC ± 1 V at the midpoint of the linear range (~1.4 mm gap). A reading of –24 VDC (rail) indicates an open circuit in the probe or cable. A reading of 0 VDC indicates a short. Either condition will trigger a Not OK relay on the 3500 monitor card.

Step 3 — Removal procedure. De-energize the proximitor supply (–24 VDC). Disconnect the extension cable at the field junction box. Using a 17 mm open-end wrench on the lock nut, back off the probe from the bracket. Count and record the number of turns from the bracket face — this is your re-gap reference for the replacement unit. Do not use an impact tool; the M10 × 1 thread is fine-pitch and the housing is 316 SS, which work-hardens under impact.

Step 4 — Installation of 330103-00-16-20-02-00. Thread the replacement probe into the bracket by hand until the tip is approximately 1.5 mm from the shaft surface. Re-energize the proximitor and read gap voltage. Adjust probe depth in 0.25 mm increments until gap voltage reads –10 VDC ± 0.5 V. Tighten the lock nut to 5 N·m. Do not exceed 8 N·m — over-torque will crack the ceramic tip insert.

Step 5 — System verification. With the machine at rest, confirm gap voltage is stable (±20 mV drift over 5 minutes). Perform a static calibration check by inserting a feeler gauge at 0.5 mm and 2.0 mm increments and verifying output matches the 7.87 V/mm scale factor. Log the as-left gap voltage in the maintenance record.

Common fault codes on Bently Nevada 3500/42M:

  • OK LED off, –24 V at output: Open circuit — probe coil or cable break. Replace 330103-00-16-20-02-00 or extension cable.
  • OK LED off, 0 V at output: Short circuit — check cable jacket for pinch damage before replacing probe.
  • Intermittent OK trips at speed: Loose lock nut causing probe migration; re-gap and re-torque.
  • High 1× vibration after replacement: Verify target material — non-4140 alloys require a correction factor applied at the proximitor or monitor card.

Configuration note: The 330103-00-16-20-02-00 carries no internal DIP switches or firmware. All channel configuration (alarm setpoints, full-scale range, OK limits) resides in the 3500 monitor card. No re-configuration is required at the card level for a like-for-like probe replacement, provided the extension cable length and proximitor model remain unchanged.

Reliability in Harsh Conditions

The 3300 XL platform was designed for continuous, unattended operation in environments that would degrade most industrial sensors within months. The 330103-00-16-20-02-00 addresses each failure mode systematically:

  • Vibration fatigue: The integral cable is strain-relieved at the probe body with a stainless steel armor braid. The coil assembly is epoxy-potted inside the 316 SS housing, eliminating resonant movement of internal components under broadband vibration up to 20 g.
  • Thermal cycling: The ceramic tip insert has a matched coefficient of thermal expansion to the stainless housing, preventing tip cracking across the –35 °C to +177 °C operating range. This is critical in steam turbine applications where probe temperatures cycle with each start-stop sequence.
  • Chemical exposure: 316 SS housing resists H₂S, chloride-bearing process gas, and hydrocarbon condensate. The IP67 rating ensures no ingress of wash-down water or steam purge during maintenance windows.
  • EMI immunity: The coil operates at a carrier frequency set by the proximitor (typically 1.0 MHz for 8 mm probes). This frequency is well above the 50/60 Hz power-line interference band and above most VFD switching harmonics, providing inherent rejection of common industrial EMI sources without additional shielding.
  • Long-term drift: Factory calibration data shows scale factor drift of less than 0.5% over 5 years of continuous operation in standard steel targets, meeting the API 670 requirement for calibration interval extension.

Global Express Logistics

Our warehouse is located in Xiamen, Fujian Province, China — a major export hub with direct access to DHL, FedEx, and UPS international gateways. Transit times to major industrial regions are as follows:

  • Southeast Asia (Singapore, Thailand, Malaysia): 2–3 business days via DHL Express
  • Middle East (UAE, Saudi Arabia, Qatar): 3–4 business days via FedEx International Priority
  • Europe (Germany, Netherlands, UK): 3–5 business days via DHL Express Worldwide
  • North America (USA, Canada): 4–5 business days via FedEx International Priority
  • South America (Brazil, Chile): 5–7 business days; customs clearance documentation provided
  • Africa & Oceania: 5–8 business days; DHL preferred for customs coverage

Every shipment includes a commercial invoice with accurate HS code classification (8543.70 for eddy-current transducers), packing list, and Certificate of Conformance. For ATEX or IECEx documentation requirements, notify us at order placement — we will include the relevant certificates in the shipment package. Expedited same-day dispatch is available for orders confirmed before 14:00 CST.

Contact Information

For stock confirmation, pricing, and urgent dispatch:

© 2026 siemensplc.com. All rights reserved.

Ready to quote

Send This Part Number to Sales

[email protected]
RFQ workflow

Confirmation Process

Quality workflow ->
01Model confirmation

We check the full part number, brand, series and visible nameplate information before quotation.

02Availability reply

Sales confirms stock path, condition option, quantity and realistic lead time for export dispatch.

03Packing & courier

DHL, FedEx, UPS or buyer courier arrangements can be reviewed with packing requirements.