1 de 3

Bently Nevada 330881-16-00-200-06-02 PROXPAC XL Proximity Transducer

Bently Nevada 330881-16-00-200-06-02 PROXPAC XL Proximity Transducer

Apenas 3 item(ns) restante(s) em estoque
  • Fabricante: Bently Nevada

  • Nº do Produto: 330881-16-00-200-06-02

  • País de origem:Estados Unidos

  • Tipo de Produto: Proximity Transducer Assemblies

  • Código de barras: 8537101190

  • Pagamento: T/T, Western Union

  • Peso: 1400g

  • Dimensões: 300 mm x 300 mm x 200 mm

  • Porto de embarque: Xiamen

  • Garantia: 12 meses

Quantidade
Ver detalhes completos

Description

Providing critical non-contact shaft displacement measurements in severe machinery environments, the Bently Nevada 330881-16-00-200-06-02 integrates a specialized proximity probe and electronic assembly inside a highly durable, weather-resistant PROXPAC XL protective enclosure. Designed to bypass the physical vulnerabilities of standard exposed sensors, this assembly shields sensitive coaxial connections from process moisture, corrosive fluids, and physical impacts. It operates as part of the 3300 XL transducer platform, delivering continuous, linear voltage outputs proportional to the distance between the probe tip and the observed target shaft.

Features

  • All-in-One Ruggedized Housing: Combines the proximity probe and connector elements into an environmental junction box designed for aggressive chemical and wet environments.
  • Coaxial Connection Shielding: Internal routing prevents the penetration of water, oils, and particulate matter into critical signal junctions.
  • High-Linearity Output: Provides exceptional accuracy for dynamic vibration and static position monitoring.
  • Broad Compatibility: Interfaceable with Bently Nevada 3500/40M and 3500/42M machinery protection systems.

Applications

  • Wet-end rolls, press sections, and dryer zones in paper mills.
  • Hydroelectric generator shaft vibration and axial position sensing.
  • Cooling tower fan gearboxes and long-span transmission shaft monitoring.
  • Wastewater treatment aerators and industrial pumping stations.

Technical Specifications Table

Parameter Value / Specification
Manufacturer Bently Nevada (Baker Hughes)
Model Number 330881-16-00-200-06-02
Product Line PROXPAC XL Proximity Transducer Assembly
Output Range Typically -2 to -18 Vdc depending on calibration gap
Mounting Thread Option Standard NPT connection options for rigid conduit deployment
Operating Temperature Limit -35 to 85 Celsius (standard housing threshold)
Country of Origin United States
Shipping Weight (Calculated) 2.80 kg / 6.17 lbs
Package Dimensions (Calculated) 300 mm x 300 mm x 200 mm

Connections and Interfaces

Terminal / Port Signal Assignment Description
Terminal A / VT -24 Vdc Power Negative high-stability power input supply from monitor card
Terminal B / COM Signal Common Reference return line to monitoring rack
Terminal C / OUT Proximitor Signal Output Analogue output voltage corresponding to the dynamic gap

Empirical Engineering Insights

Alternative Models & Compatibility

When replacing older 330800 series PROXPAC models, verify that the existing field conduit entries match the mounting thread layout of the 330881-16-00-200-06-02. This model utilizes modern 3300 XL Proximitor internals, requiring proper configuration of the receiving 3500 series input modules to match its 8V/mm (or 200 mV/mil) scale factor.

Application Pitfalls & Engineering Notes

Moisture accumulation is a common point of failure in washdown environments. If mounting the PROXPAC horizontally or vertically, ensure the conduit connection includes a physical drip loop and a low-point drain seal to prevent water from collecting inside the enclosure over long operating cycles. Thermal stabilization is required before performing final gap measurements; do not perform calibration immediately after starting thermal cycle tests on adjacent gearboxes.

Commissioning & Wiring Tips

To protect against electromagnetic interference (EMI) from high-power variable frequency drives (VFDs) running adjacent machinery, ensure the outer shielding is terminated correctly at the monitor rack common ground only. Grounding the shield at both the PROXPAC enclosure and the rack will introduce ground loops, corrupting the vibration waveforms with 50/60 Hz line harmonics.

Installation Guidelines

CRITICAL WARNING: De-energize all power lines associated with the rack monitor before accessing internal terminal blocks or making field electrical connections inside the PROXPAC enclosure. High static charges on adjacent machinery can cause electric shock or hardware damage. Verify that the installation area is declared non-hazardous before opening standard enclosures.
1
Secure the mechanical installation base to the machine frame, ensuring aligned clearance with the shaft target area.
2
Perform gap calibration by measuring the output voltage on terminals B and C with a digital multimeter until the desired cold-gap target is reached.
3
Tighten all internal coaxial connectors with an appropriate connector wrench to prevent loose contact under high-vibration conditions.
4
Ensure the enclosure cover gasket is fully seated and screw the cover secure to preserve the environmental seal.
Loading product navigation…

What is the primary function of the PROXPAC XL protective enclosure?

It houses both the probe and sensor components within a ruggedized junction box to protect delicate coaxial connections from water, oils, dust, and mechanical damage common in harsh wet-end paper mills or hydro applications.

How should I ground the cable shields on the 330881 transducer assembly?

Ground the shield exclusively at the monitoring rack end. Shield grounding inside the PROXPAC field housing can introduce ground loop interference, which distort high-frequency vibration readouts.

What happens if there is condensation buildup inside the housing?

Condensation can bridge high-impedance coaxial connections, causing signal drift or erratic sensor output. Always ensure conduit entries enter from below or use standard local housing drains to prevent condensation accumulation.

Envio Expresso Global

  • Entrega Padrão: 4-6 dias úteis via DHL, FedEx e UPS.
  • Despacho Expresso: Envio no mesmo dia para pedidos em estoque realizados antes das 14:00 (GMT+8).
  • Cobertura Mundial: Atendendo mais de 150 países, incluindo entrega rápida para Arábia Saudita e Emirados Árabes Unidos.

Devoluções e Garantia

  • Garantia de 30 Dias: Devoluções aceitas para produtos em estoque na embalagem original, lacrada de fábrica.
  • Garantia de 12 Meses: Cada componente industrial é coberto pela nossa garantia técnica profissional.

Os pedidos são processados e entregues de segunda a sexta-feira (exceto feriados).


Para elegibilidade completa, taxas de reposição e detalhes de devolução internacional, por favor, consulte nosso oficial Política de Reembolso e Devolução .

TECHNICAL SPECIFICATIONS

Country of origin
Estados Unidos

Produtos Visualizados Recentemente

Conhecimento técnico

Atuadores Elétricos Projetados para Substituir Fluidos: Tutorial Prático

This article explains how integrated electric actuators, such as SMC’s e-Actuator series, are transforming industrial motion control by replacing traditional pneumatic and hydraulic systems. It...

Operações Matemáticas Usando OpenPLC para Aplicações de Automação Industrial

Este artigo explica como os sistemas PLC realizam operações matemáticas básicas, como adição, subtração, multiplicação, divisão, módulo e exponenciação dentro da automação industrial. Ele mostra como...

Lógica Booleana Avançada com Programação FBD em CLP: Aplicações Industriais Práticas Além da Lógica Básica

O artigo explica várias funções avançadas de lógica Booleana usadas na programação de CLPs além das operações básicas AND, OR e NOT. Ele aborda como ferramentas como tabelas verdade, multiplexadores,...

Lógica Booleana na Programação de CLP: Entendendo Portas Lógicas FBD

A lógica booleana é a base de todo programa PLC. Desde controles simples de máquinas até sistemas complexos de automação industrial, as portas lógicas determinam como os controladores respondem a...

Guia Completo sobre Firewalls Industriais e Segmentação de Redes OT

Firewalls industriais desempenham um papel crucial na cibersegurança OT, protegendo redes PLC, DCS e SCADA por meio de segmentação, controle de entrada/saída e integração IDS/IPS alinhada aos...

Guia de Garras Robóticas: Do Manuseio Delicado à Automação Pesada

As garras robóticas modernas estão evoluindo além das tradicionais mandíbulas mecânicas. De sistemas adesivos inspirados em lagartos-gecko e garras macias de grau alimentício a ferramentas de armazém...