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Bently Nevada 330104-00-13-90-02-00 Spare 3300 XL

Original Bently Nevada 330104-00-13-90-02-00 8mm proximity transducer for 3300 XL systems. Industrial spare, 12-month warranty, fast shipping.

SKU330104-00-13-90-02-00
BrandBently Nevada
Series3301
Bently Nevada 330104-00-13-90-02-00 Proximity Transducer
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Product Information

Model Details

SKU / Model 330104-00-13-90-02-00
Brand Bently Nevada
Product Type Proximity Transducer
Series 3301
Catalog Category Business & Industrial > Automation, Control & Flow Devices > Sensors
Country of Origin US
Tags 3300 XL, Bently Nevada, Industrial Spare, Proximity Transducer, Vibration Monitoring
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Description

Bently Nevada 330104-00-13-90-02-00 Spare 3300 XL Overview

Bently Nevada 330104-00-13-90-02-00 Spare 3300 XL: Precision Spare Parts Replacement for Industrial Vibration Monitoring

The Bently Nevada 330104-00-13-90-02-00 is an 8mm proximity transducer engineered for the 3300 XL Series continuous vibration monitoring system. As a maintenance-ready original spare, this transducer delivers the signal accuracy and mechanical reliability that rotating machinery protection demands. Whether you are executing a planned shutdown inspection, responding to a vibration alarm, or building out your critical spare inventory, the 330104-00-13-90-02-00 is a direct, drop-in replacement that restores full system functionality with zero configuration compromise.

Industrial facilities running turbines, compressors, pumps, and gearboxes depend on the 3300 XL monitoring chain to detect shaft displacement, radial vibration, and axial position in real time. A failed or degraded proximity transducer is a single point of failure that can trigger unnecessary shutdowns or, worse, mask developing faults. Stocking the 330104-00-13-90-02-00 as a certified spare eliminates that risk and keeps your protection system continuously operational.

Spare Maintenance Table

Parameter Specification
Part Number 330104-00-13-90-02-00
Brand Bently Nevada
Series 3300 XL
Type 8mm Proximity Transducer
Measurement Radial Vibration / Axial Position / Speed
Output Signal -18 VDC nominal (eddy-current, non-contact)
Linear Range 0.25 mm – 2.25 mm (10 – 90 mil)
Scale Factor 7.87 V/mm (200 mV/mil)
Cable Length 1.0 m (standard; extension cable required for full system)
Temperature Range -35°C to +177°C (probe tip)
Compatible Driver / Monitor 3300 XL 8mm Proximitor Sensor, 3300 XL Monitor Rack
Connector 3-pin MIL-C-5015 style
Installation Threaded mount, 3/8-24 UNF
Origin USA
Condition Original, New / Surplus
Warranty 12 Months

Maintenance Planning for Continuous Operation

When replacing the 330104-00-13-90-02-00 in the field, a disciplined maintenance engineer will treat the transducer swap as an opportunity to audit the entire measurement chain. Begin by inspecting the 330130-080-00-00 armored extension cable that connects the probe to the Proximitor sensor — cable jacket abrasion and connector corrosion are leading causes of signal drift that mimic transducer failure. Verify the 330180-X1-05 Proximitor sensor output voltage at the junction box before condemning the transducer itself.

At the monitor rack, confirm that the 3300/16-XX-XX-XX-XX-XX 16-channel monitor is reading within the expected gap voltage window (typically -10 V ± 0.5 V at the calibrated gap). If the rack shows a Not OK status after transducer replacement, check the 3300/05-XX power supply module for output voltage stability — a sagging -24 VDC rail will shift the transducer’s linear range and produce false alarms.

For facilities running dual-redundant protection loops, the paired 330104-00-13-90-02-00 on the opposing measurement plane should be inspected simultaneously. Mismatched transducer ages in a redundant pair introduce differential gap errors that can confuse the voting logic in the 3500/42M Proximitor Monitor or legacy 3300 XL rack. While the cabinet is open, inspect the 3300/20-XX keyphasor module and its associated probe — keyphasor signal integrity is essential for phase-referenced vibration analysis and balancing runs.

Maintenance planners should also schedule inspection of the terminal strip and field wiring within the junction box. Loose terminations on the signal and common conductors introduce noise that appears as high-frequency vibration in the spectrum. If the installation is in a high-EMI environment (near VFDs or large motors), verify that the signal isolation barrier or galvanic isolator upstream of the DCS input card is functioning correctly. Finally, confirm that the 3300 XL system configuration software gap and scale factor settings match the replacement transducer’s calibration certificate before returning the loop to service.

Site Replacement Workflow

Step 1 — Isolate and document. Place the affected channel in bypass on the monitor rack. Record the existing gap voltage, vibration baseline, and any active alarms. Photograph the probe orientation and cable routing before removal.

Step 2 — Remove the old transducer. Using the correct spanner, back out the 330104-00-13-90-02-00 from the bracket. Inspect the bracket threads and the shaft target area for fretting or contamination. Clean the target area with isopropyl alcohol.

Step 3 — Install the replacement. Thread the new 330104-00-13-90-02-00 to the bracket. Set the gap to the calibrated value (typically 1.0 mm / 40 mil for standard 8mm probes) using a non-metallic feeler gauge or the monitor’s gap voltage readout. Torque to the manufacturer’s specification.

Step 4 — Verify the signal chain. Reconnect the extension cable and Proximitor. Power up and confirm gap voltage, scale factor, and OK relay status at the monitor. Compare the vibration reading against the pre-outage baseline. If readings are within ±5% of the historical trend, the replacement is successful.

Step 5 — Return to service. Remove the bypass, restore alarm setpoints, and update the maintenance management system (CMMS) with the replacement date, new serial number, and gap setting. Log the removed transducer for bench calibration or disposal.

This workflow minimizes downtime to under two hours for a single-channel replacement and ensures full compatibility with the existing 3300 XL system without firmware changes or reconfiguration.

Spare Parts Support FAQ

Q1: Is the 330104-00-13-90-02-00 a direct replacement for older 3300 XL proximity transducers?
Yes. The 330104-00-13-90-02-00 is backward-compatible with all standard 3300 XL 8mm measurement chains. It uses the same thread pitch, connector type, scale factor, and linear range as earlier revisions, making it a drop-in replacement without system reconfiguration.

Q2: What does the 12-month warranty cover?
The warranty covers manufacturing defects, signal output failures, and mechanical integrity of the probe body and connector under normal industrial operating conditions. Each unit is bench-tested for gap voltage linearity and OK relay function before shipment. Warranty claims are processed within 5 business days with a replacement unit dispatched upon confirmation.

Q3: How should I store spare 330104-00-13-90-02-00 transducers in my parts room?
Store in the original anti-static packaging in a dry environment between -20°C and +60°C, away from strong magnetic fields. Inspect the connector and cable jacket annually. Rotate stock on a first-in, first-out basis and replace any unit that has been in storage for more than five years without a calibration check.

Q4: Can you supply multiple units for a plant-wide spare parts program?
Yes. We support bulk orders for plant-wide critical spare inventories. Volume pricing, consolidated shipping, and staggered delivery schedules are available. Each unit in a bulk order is individually tested and ships with a calibration record. Contact our team to discuss your site’s specific spare parts strategy and lead-time requirements.


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