1 de 1

Bently Nevada 330854-040-25-CN 3300 XL 25 mm Extension Cable

Bently Nevada 330854-040-25-CN 3300 XL 25 mm Extension Cable

Apenas 8 item(ns) restante(s) em estoque
  • Fabricante: Bently Nevada

  • Nº do Produto: 330854-040-25-CN

  • País de origem:Estados Unidos

  • Tipo de Produto: Proximity Probe Extension Cables

  • Pagamento: T/T, Western Union

  • Peso: 320g

  • Dimensões: 8.89 cm x 11.70 cm x 24.10 cm (3.50 in x 4.60 in x 9.50 in)

  • Porto de embarque: Xiamen

  • Garantia: 12 meses

Quantidade
Ver detalhes completos

Description

Serving as a critical signal transmission link within turbine supervisory instrumentation architectures, the Bently Nevada 330854-040-25-CN bridges the gap between proximity probes and sensor housings to deliver precise displacement data. Engineered specifically for the 3300 XL 25 mm Proximity Transducer System, this cable provides impedance-matched signal paths to guarantee optimal calibration stability and prevent signal loss over distance. It features a robust Armored High Temperature FluidLoc design, preventing environmental fluids from wicking through the cable shield while ensuring maximum physical protection in severe industrial environments.

Features

  • Impedance-Matched Engineering: Constructed as a 75 ohm triaxial cable to preserve transducer calibration integrity.
  • FluidLoc Cable Technology: Prevents process fluids, moisture, and oils from migrating internally through the cable structure.
  • High-Temperature Durability: PFA-insulated core capable of withstanding extreme environmental shifts.
  • Integral Armor: Protective stainless steel armor sheath prevents mechanical pinching, abrasions, and routing damage.

Applications

  • Steam, gas, and hydro turbine shaft vibration monitoring systems.
  • Thrust and radial bearing displacement measurements in heavy industrial rotating machinery.
  • High-temperature and fluid-exposed balance-of-plant auxiliary equipment monitoring.

Technical Specifications

Specification Parameter Value / Rating
Manufacturer Bently Nevada
Model Reference 330854-040-25-CN
System Compatibility 3300 XL 25 mm Proximity Transducer System
Cable Length Option 4.0 meters (13.1 feet)
Cable Construction 75 ohm Triaxial, Perfluoroalkoxyethylene (PFA) insulated FluidLoc
Armor Option Armored High Temperature FluidLoc Cable
Capacitance 69.9 pF/m (21.3 pF/ft) typical
Operating & Storage Temp -35 degC to +200 degC (-31 degF to +392 degF)
Agency Approvals CN (Country-Specific Approvals)
Net Weight 0.140 kg (0.31 lbs)
Shipping Weight (Calculated) 1.50 kg (3.30 lbs)
Package Dimensions (Calculated) 8.89 cm x 11.70 cm x 24.10 cm (3.50 in x 4.60 in x 9.50 in)
Country of Origin United States (U.S.A.)

Empirical Engineering Insights

Alternative Models & Compatibility

This cable is highly specialized for 25 mm systems. You must avoid attempting to pair this with 5 mm, 8 mm, or 11 mm proximity systems. Subsystem component mismatches alter the overall system impedance and capacitance, which will generate major calibration errors. Ensure that the combined length of your proximity probe and this extension cable perfectly matches the targeted system length (typically 5.0 or 9.0 meters total) as designated by your Proximitor sensor calibration parameters.

Application Pitfalls & Engineering Notes

Although the FluidLoc option offers excellent resistance to process fluid wicking, care must be taken during cable routing. The minimum bend radius of the armored outer sheath must be strictly maintained (minimum of 25.4 mm or 1.0 inch) to prevent structural kinking. Mechanical stress or over-bending can lead to shielding fractures, showing up as high-frequency intermittent spikes or false vibration trips on the turbine monitoring rack.

Commissioning & Wiring Tips

Before locking the miniature coaxial connectors, thoroughly clean the connection interfaces with an approved electrical contact cleaner or isopropyl alcohol. Moisture or dirt trapped in the connector will degrade isolation resistance, leading to calibration drifts. Ensure the connectors are hand-tightened until a physical "click" is felt, then slide a protective connector boot or wrap with self-fusing silicone tape to prevent ground loops and ambient contaminant ingress.

Installation Guidelines

CRITICAL WARNING

Isolate and de-energize the machine and monitoring rack before starting extension cable replacement or installation. Failure to disconnect active proximity circuits can result in unexpected monitoring system trips or electrostatic damage to sensitive internal transducer components.

1 Route the armored cable through dedicated protective conduit paths away from high-power alternating current (AC) cables to eliminate electromagnetic interference.
2 Connect the extension cable to the proximity probe's integral lead cable. Tighten until the positive locking mechanism engages fully.
3 Insulate the coaxial connector junction from the surrounding machine metal or conduit structure using a connector protective boot or self-fusing tape to prevent unwanted ground loop interference.
4 Verify total loop capacitance using a calibrated multimeter before re-energizing the Proximitor sensor for operation.
Loading product navigation…

Can this extension cable be used with standard 8 mm proximity systems?

No, this cable is specifically matched to the impedance and electrical characteristics of the 3300 XL 25 mm proximity transducer series. Intermixing components with other probe diameters will cause severe calibration shift.

What protection does the FluidLoc option provide?

The FluidLoc cable construction prevents moisture, oil, and other industrial process fluids from migrating through the internal spaces of the triaxial cable shield, protecting both the connection points and the transducer electronics.

How should the coaxial connections be secured during commissioning?

Connections should be hand-tightened until a distinct mechanical click is felt. To prevent ground loops and environmental ingress, apply self-fusing silicone tape over the mated connector junction.

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...