1 de 3

Bently Nevada 21000-34-10-00-085-04-02 21000 Series Proximity Probe Housing Assembly

Bently Nevada 21000-34-10-00-085-04-02 21000 Series Proximity Probe Housing Assembly

Apenas 5 item(ns) restante(s) em estoque
  • Fabricante: Bently Nevada

  • Nº do Produto: 21000-34-10-00-085-04-02

  • País de origem:Estados Unidos

  • Tipo de Produto: Proximity Probe Housing Assemblies

  • Código de barras: 8537101190

  • Pagamento: T/T, Western Union

  • Peso: 1080g

  • Dimensões: 350 mm x 180 mm x 150 mm

  • Porto de embarque: Xiamen

  • Garantia: 12 meses

Quantidade
Ver detalhes completos

Description

Designed for harsh industrial environments, the Bently Nevada 21000-34-10-00-085-04-02 mechanical enclosure provides robust environmental protection and precise positioning for proximity transducer probes within critical machinery monitoring paths. This 21000 series aluminum housing facilitates the external installation and adjustment of proximity probes, allowing engineers to calibrate probe-to-shaft clearance without dismantling the machine casing. Constructed from high-grade, copper-free aluminum, it delivers outstanding structural integrity and defense against corrosive atmospheres in modern industrial plants.

Features

  • Robust Enclosure Protection: Epoxy-coated, copper-free aluminum body designed to shield proximity probes from mechanical impact, dust, moisture, and chemical exposure.
  • External Adjustability: Enables precise mechanical gapping and sensor adjustment from outside the machinery case.
  • Explosion-Proof Certified: Meets strict industrial safety standards for deployment in hazardous areas when installed with approved fittings.
  • Integrated Standoff Adapter: Simplifies mounting configurations on curved or insulated machinery casings.

Applications

  • Steam, gas, and hydro turbine shaft vibration monitoring.
  • Centrifugal and reciprocating compressor bearing housing protection.
  • Large-scale industrial pumps, gearboxes, and electric motors.
  • Axial thrust and radial position measurement systems in petrochemical plants.

Technical Specifications Table

Parameter Specification
Manufacturer Bently Nevada
Model Number 21000-34-10-00-085-04-02
Housing Material Copper-free Aluminum (Epoxy-coated)
Probe Option (-34) 3300 XL 8 mm proximity probe
Probe Cable Length (-10) 1.0 meter (3.3 feet)
Connector Option (-00) Miniature coaxial connector, not installed
Standoff Adapter Length (-085) 8.5 inches (216 mm)
Thread Option (-04) M20 x 1.5
Agency Approval Option (-02) ATEX / IECEx / CSA Hazardous Area Approvals
Environmental Protection IP66 / NEMA 4X equivalent
Shipping Weight (Calculated) 2.45 kg (5.40 lbs)
Package Dimensions (Calculated) 350 mm x 180 mm x 150 mm

Connections and Interfaces

Interface Component Function and Assignment
Standoff Mount Thread M20 x 1.5 connection to the machine casing
Internal Probe Cable Coaxial transmission line routing signal to the external Proximitor Sensor
Conduit Entry Port Connection port for protective flex conduit routing the probe cable

Empirical Engineering Insights

Alternative Models & Compatibility

The 21000 series features a copper-free aluminum housing, which represents the standard mechanical protection tier. For applications involving extremely aggressive chemical environments or offshore marine installations, the stainless steel 24000 series housing is typically specified instead. Always ensure that the -34 probe option matches your installed 3300 XL Proximitor system calibration profile (8 mm probe curves) to prevent voltage-to-displacement calculation errors.

Application Pitfalls & Engineering Notes

A common issue during field retrofits is the failure to account for total thermal expansion of the standoff adapter. In high-temperature machinery such as steam turbines, an 8.5-inch standoff adapter (-085 option) can experience minor mechanical elongation. If the probe is gapped when the machine is completely cold, this thermal expansion can shift the probe's static DC voltage offset. Always cross-check the working gap at normal operating temperature.

Commissioning & Wiring Tips

When pulling the probe's coaxial cable through the conduit entry, verify that the minimum bend radius of the cable (typically 25.4 mm or 1 inch) is not violated. Ensure the internal O-ring seal within the dome is lubricated with a light coat of silicone grease before closing the housing cover. This prevents moisture ingress, which is the primary cause of signal degradation and erratic high-frequency noise spikes in proximity systems.

Installation Guidelines

CRITICAL WARNING

Isolate and lock out the machinery before mounting or adjusting the proximity probe housing. Ensure the machine shaft is completely stationary. Failure to de-energize and lock out equipment can result in catastrophic mechanical damage, probe destruction, or severe personal injury if contact occurs with rotating assemblies.

1

Mount the standoff adapter securely to the machine casing using the specified M20 x 1.5 thread. Use high-temperature thread sealant where gas containment is required.

2

Insert the proximity probe assembly through the housing sleeve until the tip makes light, non-destructive contact with the shaft target area.

3

Back off the probe to the desired physical gap (typically 1.27 mm to 2.0 mm, corresponding to approximately -10 VDC on a 3300 XL Proximitor).

4

Lock the adjustment jam nuts, feed the coaxial cable through the flexible conduit port, and securely tighten the aluminum outer protective dome cover.

Loading product navigation…

What is the primary function of the 21000-34-10-00-085-04-02 housing?

It provides mechanical and environmental protection for Bently Nevada proximity probes, allowing engineers to externally install, adjust, and gap the probe relative to the target shaft without opening the machinery casing.

What size probe and cable are compatible with this assembly?

The -34 option code indicates design compatibility with a 3300 XL 8 mm proximity probe, and the -10 code designates a 1.0-meter probe cable length.

What are the thread options for the standoff adapter on this model?

The -04 suffix on this assembly designates an M20 x 1.5 mounting thread, connecting the standoff adapter directly to the machine casing.

How long is the standoff adapter on this specific housing configuration?

The -085 code represents a standoff adapter length of 8.5 inches (approximately 216 mm) to accommodate insulated or double-walled casings.

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 Sistemas Hidráulicos: Um Guia Prático de Automação Industrial

Este artigo explica como os atuadores elétricos integrados, como a série e-Actuator da SMC, estão transformando o controle de movimento industrial ao substituir os sistemas pneumáticos e hidráulicos...

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...