1 de 3

Bently Nevada 991-25-50-02-05 991 Transmetteur de poussée

Bently Nevada 991-25-50-02-05 991 Transmetteur de poussée

Il ne reste que 6 article(s) en stock
  • Fabricant : Bently Nevada

  • N° de produit : 991-25-50-02-05

  • Pays d'origine :États-Unis

  • Type de produit : Transmetteur de poussée 991

  • Code-barres : 8537101190

  • Paiement : Virement bancaire, Western Union

  • Poids : 430g

  • Dimensions : 81,3 mm x 61,2 mm x 103,4 mm

  • Port d'expédition : Xiamen

  • Garantie : 12 mois

Quantité
Voir les détails complets

Description

The 991 Thrust Transmitter converts axial shaft displacement signals into a proportional 4 to 20 mA output for machinery control and protection systems. The unit is designed for centrifugal air compressors, pumps, motors, and fans requiring continuous thrust position monitoring through a simple loop-powered interface.

The Bently Nevada 991-25-50-02-05 is a 2-wire loop-powered transmitter compatible with the 3300 NSv proximity probe system using a 5 m extension cable configuration. The transmitter conditions the probe signal into engineering units proportional to shaft axial position and transmits the signal directly to PLC, DCS, or machinery protection systems.

The transmitter integrates the Proximitor sensor internally and does not require an external signal conditioning module. Diagnostic access is available through non-isolated PROX OUT and COM terminals together with a coaxial connector for vibration and gap voltage monitoring.

The unit supports bulkhead mounting and includes non-interacting zero and span adjustments for loop calibration. A dedicated test input pin allows verification of loop output using a variable DC voltage source.

The potted housing design supports installation in high-humidity industrial environments. The transmitter is commonly used in OEM rotating machinery packages where compact thrust monitoring is required.

Features

  • 2-wire loop-powered transmitter
  • 4 to 20 mA proportional thrust output
  • Compatible with 3300 NSv proximity probes
  • Integrated Proximitor sensor design
  • Dynamic vibration and gap voltage output
  • Bulkhead mounting configuration
  • Non-interacting zero and span adjustments
  • Power-up inhibit circuit
  • NOT OK signal defeat protection
  • Supports diagnostic signal access
  • Potted construction for humid environments
  • Suitable for compressors, pumps, motors, and fans

Applications

  • Centrifugal air compressors
  • Industrial pumps
  • Electric motors
  • Rotating machinery packages
  • OEM skid systems
  • Turbomachinery thrust monitoring
  • Machinery protection systems
  • PLC and DCS monitoring interfaces

Ordering Information

Code Description
991 Thrust Transmitter
25 +/-25 mils full-scale range
50 5.0 m system length
02 Bulkhead mounting screws
05 Agency approval option

Technical Specifications

Category Specification
Manufacturer Bently Nevada
Product Type Thrust Transmitter
Model 991-25-50-02-05
Series 991
Country of Origin USA
Input Type 3300 NSv proximity probe and extension cable
System Length 5.0 m
Signal Output 4 to 20 mAdc
Power Supply 12 to 35 Vdc
Loop Accuracy +/-1.5% full scale
Maximum Loop Resistance 1000 Ohm at 35 Vdc
Frequency Response DC to 10 kHz
Current Limiting 23 mA typical
Response Time <100 us fault response
Operating Temperature -35 degC to +85 degC
Storage Temperature -51 degC to +100 degC
Relative Humidity 100% condensing, non-submerged
Transmitter Weight 0.43 kg
Total System Weight 0.82 kg typical
Dimensions 100 x 74 x 53.3 mm
Mounting Method Bulkhead mounting screws
Probe Cable Type 75 Ohm coaxial FEP insulated
Transducer Case Material AISI 303 or 304 stainless steel
Transducer Tip Material Polyphenylene sulfide (PPS)

Connections/Interfaces

Connector Pin Function
E1-E2 Power supply and 4-20 mA output
E3-E4 Proximitor connection
J2 PROX OUT diagnostic connection
J3 Probe connection
PROX OUT Dynamic vibration signal output
COM Common diagnostic terminal

Installation Guidelines

Install the transmitter in a dry control enclosure or protected machinery panel area. Maintain proper shielding and grounding practices for all probe and signal cables to reduce EMI and RFI interference.

Route proximity probe cables separately from high-voltage power wiring. Avoid excessive bending or mechanical stress on coaxial cables during installation.

Verify probe gap adjustment according to the machinery shaft position requirements before commissioning. Incorrect probe positioning may prevent full-scale measurement operation.

Use isolated diagnostic equipment when accessing the PROX OUT signal. The diagnostic output is non-isolated from the 4 to 20 mA loop.

Provide sufficient ventilation around the transmitter when installed in enclosed cabinets with elevated ambient temperatures.

Compliance and Certifications

Standard Description
FCC Part 15 EMC compliance
EN 61000-6-2 EMC immunity
EN 61000-6-4 EMC emissions
EMC Directive 2014/30/EU European EMC compliance
ATEX Directive 2014/34/EU Hazardous area approval
RoHS Directive 2011/65/EU RoHS compliance
ABS 2009 Steel Vessels Rules Maritime approval
CSA/NRTL/C Class I Div 2 Hazardous location approval
ATEX/IECEx Ex ia IIC T4 Ga Intrinsically safe approval

FAQ

What does the 991 transmitter measure?
It measures axial shaft displacement and converts the signal into a proportional 4 to 20 mA output.

Which probe system is compatible with this transmitter?
The unit is designed for use with the 3300 NSv proximity probe system.

Is the transmitter loop powered?
Yes. It operates as a 2-wire loop-powered device.

Can the transmitter provide vibration diagnostics?
Yes. The PROX OUT connection provides dynamic vibration and gap voltage signals.

What mounting method does this version use?
This model uses bulkhead mounting screws.

Does the transmitter require an external Proximitor module?
No. The Proximitor sensor is integrated into the transmitter.

What is the output signal type?
The standard output is 4 to 20 mAdc.

Can the transmitter connect directly to a PLC or DCS?
Yes. The output is suitable for standard industrial control system analog inputs.

What is the supported operating temperature range?
The operating range is -35 degC to +85 degC.

Is the housing suitable for humid environments?
Yes. The potted construction supports high-humidity environments.

What happens during a probe fault condition?
The NOT OK circuit drives the output below 3.6 mA during a fault condition.

Can the loop output be tested without machinery movement?
Yes. A test input pin supports loop verification using a variable DC source.

Does the transmitter support hazardous area installations?
Yes. The unit includes CSA and ATEX/IECEx approvals depending on configuration.

What industries commonly use this transmitter?
It is widely used in compressor, pump, motor, and rotating equipment monitoring systems.

Product Documentation

Technical Datasheet (PDF) Complete specifications and technical drawings.
Download Now

Expédition express mondiale

  • Livraison standard : 4 à 6 jours ouvrables via DHL, FedEx et UPS.
  • Expédition express : Expédition le jour même pour les commandes en stock passées avant 14h00 (GMT+8).
  • Couverture mondiale : Service dans plus de 150 pays, avec livraison rapide en Arabie Saoudite et aux Émirats arabes unis.

Retours et garantie

  • Garantie de 30 jours : Retours acceptés pour les produits en stock dans leur emballage d’origine scellé en usine.
  • Garantie de 12 mois : Chaque composant industriel est couvert par notre garantie technique professionnelle.

Les commandes sont traitées et livrées du lundi au vendredi (hors jours fériés).


Pour connaître les conditions d’éligibilité complètes, les frais de restockage et les détails des retours internationaux, veuillez consulter notre site officiel Politique de remboursement et de retour .

TECHNICAL SPECIFICATIONS

Color pattern
Blanc grisâtre Noir
Country of origin
États-Unis

Produits récemment consultés

Connaissances techniques

Guide des préhenseurs robotiques : de la manipulation délicate à l'automatisation lourde

Les pinces robotiques modernes évoluent au-delà des mâchoires mécaniques traditionnelles. Des systèmes adhésifs inspirés du gecko et des pinces souples de qualité alimentaire aux outils d'entrepôt...

Retour en arrière : comment les premiers moteurs électriques ont transformé l'exploitation minière souterraine

Des compresseurs à courant continu entraînés par corde aux wagonnets de mine alimentés par batterie, les premières opérations minières ont marqué un tournant dans l’électrification industrielle. Cet...

Factory I/O : un outil moderne de simulation PLC pour la formation à l'automatisation industrielle

Factory I/O révolutionne l'enseignement des automates programmables industriels (API) en proposant des simulations industrielles 3D immersives pour les étudiants, les ingénieurs et les équipes de...

Programmation des cycles de mouvement à axe unique sur un servo-variateur CMZ

Ce tutoriel examine comment la fonctionnalité PLC intégrée dans un servo-variateur CMZ SBD peut exécuter des programmes de mouvement autonomes, y compris la logique de référencement, le contrôle de...

Configuration de contrôle de mouvement à axe unique avec les servomoteurs CMZ

Ce tutoriel explore la mise en service d'un système de mouvement servo à un seul axe utilisant un variateur CMZ SBD, couvrant l'installation matérielle, la mise à l'échelle de l'axe, la configuration...

Intégration du PLC Mitsubishi FX avec le variateur FR-D700 et le contrôle HMI

Ce tutoriel explique comment les automates programmables Mitsubishi FX s'intègrent avec les variateurs de fréquence FR-D700 et les panneaux HMI pour le contrôle avant/arrière des moteurs. Il couvre...