1 von 1

Bently Nevada 330193-00-02-10-00 3300 XL 8 mm ETR Proximity Probe

Bently Nevada 330193-00-02-10-00 3300 XL 8 mm ETR Proximity Probe

Nur noch 7 Artikel auf Lager verfügbar
  • Hersteller: Bently Nevada

  • Produkt-Nr.: 330193-00-02-10-00

  • Herkunftsland:Vereinigte Staaten

  • Produkttyp: Proximity Probes

  • Zahlung: T/T, Western Union

  • Gewicht: 320g

  • Versandhafen: Xiamen

  • Garantie: 12 Monate

Menge
Vollständige Details anzeigen

Description

As a critical component in machinery protection systems, the Bently Nevada 330193-00-02-10-00 provides precise, non-contact displacement and vibration measurements under challenging thermal conditions. Engineered specifically for the 3300 XL 8 mm Extended Temperature Range (ETR) series, this proximity probe operates reliably in extreme high-temperature environments where standard sensors degrade. The system utilizes Eddy Current technology to monitor key mechanical parameters, including shaft vibration, radial position, and thrust position on critical rotating machinery.

Features

  • Extended Temperature Range (ETR): Built to endure higher temperature cycles without sacrificing signal stability or accuracy.
  • 8 mm Tip Diameter: Optimized sensor head geometry for standard high-resolution proximity measurements.
  • Unthreaded Length Option (00): Configured with 0 mm unthreaded portion for specialized low-profile mounting profiles.
  • Overall Case Length Option (02): Features a compact 20 mm case length for integration into standard probe holders and housings.
  • Total Length Option (10): Equipped with a 1.0-metre (3.3 feet) integrated cable, ideal for direct coupling to connection boxes.
  • Gold-Plated Click-Loc Connectors: Corrosion-resistant termination ensuring high-signal integrity and vibration-resistant physical connections.

Applications

  • Steam and Gas Turbines: Monitoring shaft alignment and dynamic vibration levels in high-temperature zones.
  • Industrial Compressors: Radial and axial shaft displacement tracking on high-pressure casing designs.
  • Boiler Feed Pumps: Continuous health diagnostics in high thermal cycling and fluid-intensive operations.
  • Heavy-Duty Fans & Blowers: Real-time unbalance detection in power generation and petrochemical plants.

Ordering Information

Option Code Configuration Parameter Value / Description
00 Unthreaded Length 0 mm
02 Overall Case Length 20 mm
10 Total Length 1.0 metre (3.3 feet)
00 Agency Approval Not required

Technical Specifications

Manufacturer Bently Nevada
Part Number / SKU 330193-00-02-10-00
Product Series 3300 XL 8 mm ETR
Tip Diameter 8 mm
Case Thread Option Unthreaded (0 mm length)
Physical Case Length 20 mm
Integrated Cable Length 1.0 metre
Connector Style Miniature coaxial Click-Loc
Sensor Type Eddy Current Proximity Probe
Country of Origin USA
Shipping Weight (Calculated) 1.5 kg (3.3 lbs)

Connections and Interfaces

Connector Element Type Functional Assignment / Requirements
Coaxial Center Pin Signal / High-Frequency RF Carries RF excitation signal from Proximitor Sensor and returns modulated voltage.
Coaxial Outer Shield Return Path / Common Establishes reference ground path. Must remain isolated from machine ground.
Click-Lock Joint Mechanical Coupler Locking mechanism. Requires connector protectors if exposed to fluids or oil.

Empirical Engineering Insights

Alternative Models & Compatibility

The 330193-00-02-10-00 probe is strictly designed for integration within the 3300 XL 8 mm Extended Temperature Range system. It must be paired with an ETR extension cable and an ETR-compatible Proximitor Sensor. Mismatching this probe with standard, non-ETR 3300 XL extension cables or Proximitor Sensors introduces substantial linearity deviations and calibration shifts, rendering scale factors unreliable.

Application Pitfalls & Engineering Notes

When deploying the probe in high-temperature fluid boundaries, assure that the probe case thread interface is securely sealed. Since this unit features a 0 mm unthreaded portion, the case body is fully threaded up to the tip, demanding careful depth calculation within the bracket to prevent internal mechanical interference with the target shaft.

Commissioning & Wiring Tips

Always check the insulation resistance of the probe before and after installation to confirm that the sensor tip and the coaxial shield have not shorted directly to the machine casing. Connectors must be finger-tightened until the positive Click-Loc detent engages. Do not use pliers or heavy wrenches, as excessive torque will damage the internal coaxial termination.

Installation Guidelines

CRITICAL WARNING: Prior to probe installation or physical adjustment, fully de-energize and lock out all machinery. High-speed shaft rotation can cause catastrophic mechanical impact with the probe tip if clearance parameters are set incorrectly. Use calibrated non-magnetic feeler gauges or electric micrometer spindles to verify structural clearances before starting the system.
1
Calculate the required insertion depth based on the machine housing layout and the 20 mm overall case length.
2
Slowly thread the probe into the mounting bracket or sleeve, monitoring gap voltage using a digital multimeter connected to the Proximitor Sensor output.
3
Adjust the probe body until the output reads the nominal gap voltage specified by your monitoring system (typically -10.0 VDC for standard midrange calibration).
4
Secure the probe outer locknut to lock the assembly in place, then re-verify the static gap voltage to ensure the probe did not rotate during tightening.
Loading product navigation…

What does the ETR designation mean for the 330193-00-02-10-00 probe?

ETR stands for Extended Temperature Range. It indicates that the probe is engineered with advanced insulation and materials capable of withstanding higher temperatures and wider thermal cycles than standard proximity probes without losing structural integrity or signal accuracy.

Can I use standard 3300 XL cables with this ETR series probe?

No. To maintain system accuracy and temperature rating, you must pair the 330193-00-02-10-00 probe with a matching 3300 XL ETR extension cable. Intermixing standard and ETR components degrades calibration linearity.

What physical mounting configuration does the 00 unthreaded option represent?

The '00' unthreaded length option indicates that the probe case is fully threaded along its entire length, with 0 mm of smooth shaft. This configuration is typically used in thin-walled housings or specialized mounting blocks.

Is an external terminal block required for connecting this probe?

No. The probe features an integrated 1.0-metre cable terminated with a miniature coaxial Click-Loc connector, which connects directly to a compatible extension cable running to the Proximitor Sensor.

Globaler Expressversand

  • Standardlieferung: 4-6 Werktage via DHL, FedEx und UPS.
  • Expressversand: Versand am selben Tag für vorrätige Bestellungen, die vor 14:00 Uhr (GMT+8) aufgegeben werden.
  • Weltweite Abdeckung: Wir bedienen über 150 Länder, einschließlich schneller Lieferung nach Saudi-Arabien und in die VAE.

Rückgaben & Garantie

  • 30-Tage-Garantie: Rückgaben werden für vorrätige Produkte in originaler, werkversiegelter Verpackung akzeptiert.
  • 12-Monats-Garantie: Jede Industriekomponente ist durch unsere professionelle technische Garantie abgesichert.

Bestellungen werden Montag bis Freitag bearbeitet und geliefert (außer an Feiertagen).


Für vollständige Anspruchsvoraussetzungen, Wiedereinlagerungsgebühren und internationale Rückgabedetails, sehen Sie bitte unsere offizielle Seite ein Rückerstattungs- & Rückgabebedingungen .

TECHNICAL SPECIFICATIONS

Country of origin
Vereinigte Staaten

Kürzlich angesehene Produkte

Technisches Wissen

Elektrische Antriebe zur Ablösung von Fluidkraftsystemen: Ein praktischer Leitfaden für die industrielle Automatisierung

Dieser Artikel erklärt, wie integrierte elektrische Antriebe, wie die e-Actuator-Serie von SMC, die industrielle Bewegungssteuerung revolutionieren, indem sie herkömmliche pneumatische und...

Mathematische Operationen mit OpenPLC für industrielle Automatisierungsanwendungen

Dieser Artikel erklärt, wie SPS-Systeme grundlegende mathematische Operationen wie Addition, Subtraktion, Multiplikation, Division, Modulo und Exponentiation in der industriellen Automatisierung...

Fortgeschrittene Boolesche Logik mit FBD-SPS-Programmierung: Praktische industrielle Anwendungen über die Grundlogik hinaus

Der Artikel erklärt mehrere erweiterte Boolesche Logikfunktionen, die in der SPS-Programmierung über die grundlegenden AND-, OR- und NOT-Operationen hinaus verwendet werden. Er behandelt, wie...

Boolesche Logik in der SPS-Programmierung: Verständnis von FBD-Logikgattern

Boolesche Logik ist die Grundlage jedes SPS-Programms. Von einfachen Maschinensteuerungen bis hin zu komplexen industriellen Automatisierungssystemen bestimmen Logikgatter, wie Steuerungen auf sich...

Umfassender Leitfaden zu industriellen Firewalls und OT-Netzwerksegmentierung

Industrielle Firewalls spielen eine entscheidende Rolle in der OT-Cybersicherheit, indem sie SPS-, DCS- und SCADA-Netzwerke durch Segmentierung, Ein- und Ausgangskontrolle sowie IDS/IPS-Integration...

Leitfaden für Roboter-Greifer: Von der schonenden Handhabung bis zur Schwerlastautomatisierung

Moderne robotische Greifer entwickeln sich über traditionelle mechanische Greifbacken hinaus. Von gecko-inspirierten Haftsystemen und weichen, lebensmittelechten Greifern bis hin zu KI-gestützten...