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SKU:330901-08-21-10-02-00
330901-08-21-10-02-00 Bently Nevada - Proximity Probe
Manufacturer: Bently Nevada
Product No.: 330901-08-21-10-02-00
Product Type: 3300 NSv Probe
Product Origin: USA
Payment:T/T, Western Union
Weight: 150g
Shipping port: Xiamen
Warranty: 12 months
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Description
Bently Nevada 330901-08-21-10-02-00 3300 NSv Proximity Probe
The module functions as a highly specialized eddy current proximity sensor engineered for vibration, position, and oil-film monitoring within industrial turbomachinery and confined plant spaces. Featuring a 1/4-28 UNF unarmored thread profile, this precision sensor provides an unthreaded barrel length of 0.8 inches and a total 1.0-meter integrated FEP coaxial cable terminated with a miniature ClickLoc connector, allowing robust fluid-sealed displacement tracking across extreme -52°C to +177°C thermal boundaries.
Technical Specifications
| Manufacturer | Bently Nevada (Rockwell Automation / Baker Hughes compatible) |
| Full Product Number | 330901-08-21-10-02-00 |
| Product Transducer Series | 3300 NSv Proximity Transducer System |
| Thread Configuration Matrix | 1/4-28 UNF structural thread path (Without protective armor) |
| Dimensional Profile | Unthreaded length: 0.8 in (08) | Overall case length: 2.1 in (21) |
| Total Cable Length Target | 1.0 Meter / 39 inches (10) continuous media trace |
| Connector and Cable Profile | Miniature coaxial ClickLoc connector, standard 75 Ω FEP insulated cable (02) |
| Core Structural Materials | Case: AISI304 Stainless Steel (SST) | Tip: Polyphenylene Sulfide (PPS) |
| Internal DC Resistance Loop | 4.2 ± 0.5 ohms from center conductor to outer shield layer |
| Mechanical Torque Constraints | Recommended installation: 5.1 N•m (45 in•lb) | Maximum limit: 7.3 N•m (65 in•lb) |
| Thread Engagement Limit | 0.375 inches maximum mechanical contact depth |
| Environmental Temperature Span | Operating & Storage: -52°C to +177°C (-62°F to +351°F) continuous |
| Differential Pressure Sealing | Integrated Viton O-ring seal between probe tip and outer steel housing |
| Estimated Weight Boundaries | Approximately 14 to 150 g (0.5 to 5.3 oz) based on lead layout density |
| Agency Approval Option | Standard version; Approvals not required (00) |
Quick Installation Guide
- Isolate the machine control monitor and ensure the target shaft assembly is completely stationary before screwing in the proximity tracking sensor.
- Carefully thread the 1/4-28 UNF stainless steel body of the sensor into the mounting bracket, verifying that the total thread engagement does not exceed the 0.375-inch safety boundary.
- Use an accurate torque wrench to lock the casing to a recommended hold of 5.1 N•m (45 in•lb), making sure not to cross the 7.3 N•m (65 in•lb) maximum threshold to avoid shearing the housing.
- Route the 1.0-meter unarmored FEP cable smoothly along passive machine pathways, click-lock the coaxial ClickLoc interface firmly into the extension line, and lock the system bracket down.
Technical FAQs
Q1: Why is the choice of Polyphenylene Sulfide (PPS) critical for the tip material of the 3300 NSv probe?
A1: Polyphenylene Sulfide (PPS) is a high-performance engineering thermoplastic that offers outstanding chemical resistance and dimensional stability at temperatures reaching up to +177°C. This ensures the probe tip remains rigid and unaffected by aggressive industrial lubricants or synthetic fluids, preserving the air gap calibration necessary for precision eddy current tracking.
Q2: What operational hazards occur if the probe faces sustained low temperatures below -34°C?
A2: Although the core electronics function down to -52°C, exposing the sensor to sustained temperatures below -34°C (-30°F) compromises the elastomeric properties of the integrated Viton O-ring seal. This hardening can lead to a premature failure of the internal differential pressure barrier, potentially allowing process oils or vapors to migrate into the probe case body.
Q3: How does the internal 4.2 ohm DC resistance metric guide diagnostic verification in the field?
A3: Measuring a nominal loop resistance of 4.2 ± 0.5 ohms between the center conductor and the outer shield of the 1.0-meter cable confirms the copper core is intact and free of internal micro-breaks. A reading substantially lower indicates an internal short circuit within the 75 Ω coaxial path, while an open circuit measurement confirms a fractured conductor line or a damaged ClickLoc connector junction.
Spécifications supplémentaires
Scalaire (V/f)
Vecteur
Alimenté par courant alternatif
Guide d'achat
- Confirmez le modèle exact, le numéro de pièce et les spécifications avant de commander.
- Assurez-vous de la compatibilité avec votre machine ou vos systèmes de contrôle actuels.
- Contactez-nous via sale@etowonauto.com ou au +8617859788089 pour une assistance technique.
- Examinez les options de livraison, les délais et les exigences d’expédition.
- Suivez les instructions du fabricant et les bonnes pratiques lors de l’installation.
Expédition et retour
Les articles en stock sont généralement expédiés le jour même. Pour les produits actuellement en rupture de stock, les délais d'expédition peuvent varier en fonction de la disponibilité. La livraison internationale est disponible, et les frais de port sont calculés selon la destination, le poids et le transporteur choisi.
Les retours sont acceptés dans un délai de 30 jours après réception, à condition que les articles soient inutilisés et en état d'origine. Les frais de retour sont à la charge du client. Veuillez nous contacter avant de retourner un article afin d'obtenir une autorisation de retour.
Pour plus de détails, veuillez consulter notre Politique d'expédition et de retour.

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Pièces d'automatisation industrielle d'origine disponibles pour expédition rapide dans le monde entier.
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Support de retour sous 30 jours avec une garantie de 12 mois pour une protection après-vente fiable.
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