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330102 00 28 05 02 05 3300 xl 8 mm proximity probes-0

3300 System

Home >  Products >  For Bently Nevada >  3300 System

330102-00-28-05-02-05 3300 XL 8 mm Proximity Probes

  • Overview
  • Quick Detail
  • Description
  • Applications
  • Specifications
  • Competitive Advantage
  • Recommended Products
Overview

Place of Origin:

USA

Brand Name:

Bently Nevada

Model Number:

330102-00-28-05-02-05

Minimum Order Quantity:

1

Packaging Details:

Original new Factory Sealed

Delivery Time:

5-7 days

Payment Terms:

T/T

Supply Ability:

In stock

Quick Detail

Agency Approval Option:

CSA, ATEX, IECEx Approvals

Unthreaded Length Option :

0 mm

Overall Case Length Option :

2.8 in

Total Length Option:

0.5 meter (1.6 feet)

Connector and Cable-Type Option:

Miniature coaxial ClickLoc connector with connector protector, standard cable

Dimension:

1.5x1.1x105cm

Weight:

0.11kg

Description

The 330102-00-28-05-02-05 3300 XL 8 mm Proximity Probe represents the pinnacle of non-contact displacement sensing technology, expertly engineered by Bently Nevada for the most critical machinery monitoring applications in heavy industry. As a distinguished component of the renowned 3300 XL series, this specific 8 mm diameter probe is meticulously designed to deliver unparalleled measurement precision for shaft vibration, radial position, and axial thrust monitoring in high-value rotating assets. Built to endure, this industrial-grade proximity probe features a rugged AISI 301/304 stainless steel case and a durable Polyphenylene Sulfide (PPS) probe tip, ensuring exceptional resistance to corrosion, wear, and chemical exposure in hostile operational environments. Its compact design, with a 2.8-inch overall case length and a minimal weight of 0.11kg, allows for versatile and straightforward installation even in space-constrained machinery housings and tight bearing assemblies.

A cornerstone of its design is the incorporation of Bently Nevada's proprietary TipLoc and CableLoc technologies. The patented TipLoc molding process creates an indestructible bond between the probe tip and body, virtually eliminating the risk of separation under extreme vibration and thermal cycling. Complementing this, the robust CableLoc attachment provides an industry-leading 330 N (75 lbf) pull strength, securing the 0.5-meter standard cable and its Miniature Coaxial ClickLoc connector against accidental disconnection and ensuring uninterrupted signal integrity. This probe is further certified with a comprehensive suite of global safety approvals, including CSA, ATEX, and IECEx, authorizing its safe deployment in hazardous locations and explosive atmospheres across oil & gas platforms, refineries, and chemical processing plants.

Applications

This probe is fundamental for continuous shaft vibration and position monitoring in critical high-speed turbomachinery such as steam turbines, gas compressors, and large generators. Its 2 mm linear range and high sensitivity enable precise detection of minute radial displacements and dynamic vibration, essential for identifying early signs of unbalance, misalignment, and bearing degradation, thereby preventing catastrophic failures and enabling condition-based maintenance.

Certified with CSA, ATEX, and IECEx approvals, the probe is ideally suited for safety-critical monitoring in hazardous areas like offshore production platforms, natural gas compressor stations, and petrochemical reactor feed pumps. Its robust stainless steel construction and wide operating temperature range (-52°C to +167°C) ensure dependable performance and long-term durability in these challenging, corrosive, and potentially explosive environments.

The probe's compact 2.8-inch case length and integrated 0.5-meter cable with a secure ClickLoc connector make it an excellent choice for retrofitting and upgrading existing monitoring systems on pumps, fans, and motors where space is limited. Its plug-and-play compatibility with 3300 XL system components allows for easy installation and reliable integration, providing high-fidelity displacement data to enhance the predictive maintenance capabilities of legacy infrastructure without major modifications.

Specifications

Operating Temperature Range:

-52°C to +167°C (-62°F to+350°F)

Linear Range:

2 mm (80 mils)

Output Resistance:

45 Ω

Supply Sensitivity:

Less than 2 mV change in output voltage per volt change in input voltage.

Power:

Requires -15.5 Vdc to -25 Vdc

Probe Tip Material:

Polyphenylene sulfide (PPS)

Probe Case Material:

AISI 301 or 304 stainless steel(SST)

Competitive Advantage

1.Unmatched Mechanical Integrity with Patented TipLoc & CableLoc

The probe's core advantage lies in its proprietary TipLoc and CableLoc technologies. The TipLoc process creates a permanent, vibration-proof bond between the tip and body, eliminating a common failure point. Simultaneously, the CableLoc design guarantees an exceptional 330 N cable pull strength, preventing signal interruptions from mechanical stress. This dual-fortification ensures long-term reliability and reduced maintenance costs in high-vibration machinery, far surpassing conventional probes that use adhesives or weaker mechanical fastenings.

2.Global Hazardous Area Certification for Universal Deployment

Holding the triple certification of CSA, ATEX, and IECEx, this probe is pre-approved for global use in classified hazardous locations. This universal compliance simplifies procurement, inventory management, and deployment for multinational corporations, allowing them to standardize on a single, trusted probe model for explosive atmosphere applications worldwide, ensuring both operational safety and regulatory adherence without compromise.

3.Extreme Environment Performance with Precision Accuracy

Engineered to perform where others cannot, the probe boasts an exceptional operating temperature range from -52°C to +167°C and features a corrosion-resistant PPS tip and stainless steel case. This ruggedness, combined with a precise 2 mm linear range and low supply sensitivity (<2 mV/V), ensures stable, accurate measurements in the most demanding conditions—from freezing offshore platforms to high-temperature turbine casings—delivering reliable data for critical protection decisions without signal drift.

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