1 von 1

330905-00-12-10-12-00 Bently Nevada 3300 XL NSv Proximity Probe

330905-00-12-10-12-00 Bently Nevada 3300 XL NSv Proximity Probe

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

  • Produkt-Nr.: 330905-00-12-10-12-00

  • Herkunftsland:Vereinigte Staaten

  • Produkttyp: Proximity Probes

  • Zahlung: T/T, Western Union

  • Gewicht: 320g

  • Abmessungen: 220 mm x 180 mm x 45 mm

  • Versandhafen: Xiamen

  • Garantie: 12 Monate

Menge
Vollständige Details anzeigen

Description

Optimized for high-precision machinery vibration monitoring in confined environments, the Bently Nevada 330905-00-12-10-12-00 is an unarmored proximity probe engineered specifically for applications with tight mechanical clearances. Serving as a core sensor component of the 3300 XL NSv Proximity Transducer System, this unit features a metric M10 x 1 thread configuration with a 12 mm case length. It is supplied with a 1.0-meter integrated FluidLoc cable terminating in a miniature coaxial ClickLoc connector. Designed to replace or integrate into systems measuring radial vibration, axial position, or speed, this narrow-system probe excels where standard-sized transducers face severe physical mounting limitations.

Key Features

  • M10 x 1 Threaded Body: Threaded unarmored brass construction optimized for direct-thread installation into thin-walled machine casings.
  • Compact NSv Design: Specifically calibrated for small-target applications and narrow spaces where standard 8mm probes experience severe side-viewing/proximity interference.
  • FluidLoc Cable Technology: Prevents lubricating oils, moisture, and synthetic process fluids from migrating through the internal cable core into the junction box or sensor housing.
  • ClickLoc Miniature Coaxial Connector: Ensures low-loss signal transmission and secure mechanical coupling with standard extension cables.
  • High Temperature Durability: Constructed using high-performance PPS (polyphenylene sulfide) tip material to withstand demanding industrial fluid and thermal environments.

Applications

  • Radial shaft vibration and displacement monitoring on small centrifugal compressors.
  • Thrust position measurements on high-speed turbochargers and auxiliary steam turbines.
  • Rotor dynamics analysis in narrow-clearance gearboxes and micro-turbines.
  • Industrial pump shaft motion tracking and speed sensing in harsh hydrocarbon environments.

Ordering Configuration

Option Code Specification Type Configured Value
A: 00 Unthreaded Length 0 mm
B: 12 Overall Case Length 12 mm
C: 10 Total Cable Length 1.0 meter (39 in)
D: 12 Connector & Cable Type Miniature coaxial ClickLoc connector, FluidLoc cable
E: 00 Agency Approval Not Required / Standard

Technical Specifications

Manufacturer Bently Nevada
Model / Series 3300 XL NSv (Narrow System) Proximity Transducer
Part Number 330905-00-12-10-12-00
Thread Profile M10 x 1 (brass body)
Armor Option Without Armor
Operating Temperature Range -34 degC to +177 degC
Fluid Leakage Resistance FluidLoc sealed internal cable (up to 6.89 bar / 100 psi structural resistance)
Linear Range (Nominal) 1.5 mm (60 mils) when paired with matching NSv Proximitor Sensor
Shipping Weight (Calculated) 1.0 kg
Packaging Dimensions (Calculated) 220 mm x 180 mm x 45 mm

Empirical Engineering Insights

Alternative Models & Compatibility: The 3300 XL NSv series is electrically distinct from the standard 3300 XL 8mm series. Attempting to match this probe with a standard 8mm Proximitor sensor will yield incorrect voltage output curves, resulting in severe calibration offsets. Ensure you only couple this probe with a dedicated 3300 XL NSv Proximitor Sensor (e.g., 330900 series).

Application Pitfalls & Engineering Notes: Because this probe lacks mechanical armor, the outer jacket of the FluidLoc cable is vulnerable to sharp bends, abrasion, and crushing if run through open trays. Always run unarmored cable inside flexible liquid-tight conduits when routing through highly abrasive machine frames or near mechanical components.

Commissioning & Wiring Tips: Utilize the official ClickLoc connector coupling tools to mate the connector ends. Hand-tightening or using standard pliers can damage the delicate gold-plated center pins or strip the miniature threads. Ensure a minimum target diameter of 3.1 times the probe tip size to prevent severe edge-of-target scaling errors.

Installation Guidelines

CRITICAL SAFETY WARNING

Ensure the host machinery is fully de-energized, locked out, and tagged out (LOTO) prior to probe installation. Ensure the system pressure has been vented completely before threading the probe into a machine casing or bearing block to prevent uncontrolled process fluid discharge.

1

Inspect the machine casing mounting hole. Clean out any debris, old thread sealant, or metal filings from the M10 x 1 threads using a precision tap before inserting the probe.

2

Carefully thread the probe body into the casing by hand to avoid cross-threading. Once threaded, use a calibrated torque wrench on the hex flats and torque strictly within OEM tolerances to prevent tip deformation.

3

Use a digital voltmeter connected to the Proximitor output during installation to visually monitor the voltage gap. Stop tightening and lock the jam nuts once the target bias voltage (typically -9 Vdc for central linear range) is achieved.

Loading product navigation…

Can I use the 330905-00-12-10-12-00 probe with a standard 8mm Proximitor Sensor?

No. The 3300 XL NSv probe is specifically calibrated for the NSv narrow-system proximity transducer system and must be paired with an NSv Proximitor Sensor to output correct, linear vibration readings.

What is the physical function of the FluidLoc cable configuration on this probe?

The FluidLoc cable option prevents machine oil and other high-pressure process fluids from migrating through the internal jacket of the probe cable into safe areas or junction boxes.

What is the thread specification of this particular Bently Nevada probe model?

This probe features a metric M10 x 1 thread size with a 12 mm overall case length and is unarmored (00 unthreaded option).

What are the spacing guidelines to prevent crosstalk with other probes?

Because of the compact NSv target design, ensure adjacent proximity probes are spaced apart by at least 3 probe tip diameters to avoid magnetic cross-coupling and measurement distortion.

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...