Bently Nevada 330104-00-13-10-02-00 8mm Proximity Sensor

Bently Nevada 330104-00-13-10-02-00 8mm Proximity Sensor

— Bently Nevada 330104-00-13-10-02-00 8 mm Proximity Sensor delivers high-precision shaft position and vibration sensing for industrial condition monitoring systems
— Precision-engineered 8 mm sensor design ensures accurate displacement measurement under demanding operational conditions
— Built for continuous operation with robust thermal and electrical stability in harsh industrial environments
— Fully compatible with Bently Nevada 3300 XL monitoring platforms for seamless integration and optimized machine protection performance
— Rugged industrial-grade construction minimizes maintenance needs and extends service life in critical rotating equipment applications
— Ideal for system upgrades or replacements while maintaining sensing accuracy and operational reliability
— Sales Manager: Silver
— Email: [sales1@askplc.com](mailto:sales1@askplc.com)
— Phone (WhatsApp): +86-18020714492
— WeChat: +86-18020714492
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Description
 

Products Description

Bently Nevada 330104-00-13-10-02-00 8mm Proximity Sensor

 

The Bently Nevada 330104-00-13-10-02-00 is an 8 mm proximity sensor designed to establish a dependable electrical representation of mechanical clearance within rotating equipment. Its function is rooted in maintaining a stable sensing boundary between a metallic target and the monitoring system, even as mechanical loads, temperature, and operating speed fluctuate during normal service.

Rather than emphasizing signal processing or diagnostics, this sensor focuses on measurement integrity at the physical interface, ensuring that downstream systems receive a consistent and interpretable input throughout the equipment lifecycle.

How To Contact Us?

With over 50 million in inventory, PLC EXPORT delivers only brand-new, authentic components- ready to ship,
rigorously tested, and backed by professional technical support.

Our address

32D Guomao Building, Siming District, Xiamen, Fujian, China

Phone Number(Whatsapp)

+86-18020714492

E-mail

sales1@askplc.com


product-800-520

Functional Role / System Position

 

This proximity sensor defines the mechanical reference plane of a monitoring loop:

Target Surface Dynamics


→ 330104-00-13-10-02-00 Proximity Sensor
→ Signal Conditioning Electronics
→ Monitoring Logic and Operator Visualization

 

Because it operates at the transition point between motion and electronics, the sensor's dimensional stability and electromagnetic behavior directly influence the reliability of all subsequent monitoring functions.

 

Key Features / Functional Capabilities

 

◆ 8 mm sensing geometry suitable for compact bearing and casing layouts
◆ Eddy current principle enables contact-free detection of metallic targets
◆ Controlled electromagnetic field ensures predictable output behavior
◆ Mechanical construction resists deformation under sustained vibration
◆ Electrical characteristics aligned with matched signal conditioning units
◆ Designed for long-duration exposure to oil mist and industrial atmospheres
◆ Stable sensing behavior reduces baseline drift over extended service periods

 

Application Areas / Typical Use Cases

 

This sensor is typically selected for installations where measurement continuity is more important than short-term responsiveness:

  • Establishing shaft position reference points in rotating machinery
  • Monitoring radial displacement in compressors with varying load profiles
  • Providing consistent clearance measurement in turbine bearing housings
  • Supporting long-term trend baselines in machinery protection systems
  • Upgrading sensing points where mechanical wear has compromised legacy probes

 

Product Identification

 

Parameter Specification
Model Number 330104-00-13-10-02-00
Product Type 3300 XL 8 mm Proximity Probe, M10 × 1 thread, with armor
Unthreaded Length 0 mm
Overall Case Length 130 mm
Total Length 1.0 m (3.3 ft)
Connector & Cable Type Miniature coaxial ClickLoc connector, standard cable
Agency Approval Not required
 

Installation / Handling

 

Proper installation depends on mechanical positioning accuracy rather than electronic calibration. The sensor tip must be aligned perpendicular to the target surface and set within the recommended clearance range to preserve linear response. Care should be taken to avoid mechanical preload on the probe body and to route cabling away from high-energy conductors. Functional verification through the connected conditioning unit should be performed before commissioning.

 


Advantages / Value Highlights

 

This proximity sensor contributes value by preserving measurement credibility over time. Its non-contact design minimizes wear-related degradation, while its controlled sensing characteristics help maintain consistent reference data. This reduces the need for frequent baseline adjustments and improves confidence in long-term machinery behavior assessment.

 


Supply & Warranty Information

 

The product is supplied in standard industrial packaging with identification and handling documentation.
A One-year warranty is provided, covering defects in materials and workmanship under normal industrial operating conditions.

 

MORE OPTIONS

 

SIEMENS 505-6108A TRICONEX 3805EN
SIEMENS 505-6108 TRICONEX 3805E
SIEMENS 505-4916A TRICONEX 3721
SIEMENS 505-4832 TRICONEX 3708E
SIEMENS 505-4732 TRICONEX 3706A
SIEMENS 505-4632 TRICONEX 3703E
SIEMENS 505-4532 TRICONEX 3700A
SIEMENS 505-4532 TRICONEX 3664
SIEMENS 505-4232A TRICONEX 3636R

Common problems

Q1: What is the main purpose of this proximity sensor in a monitoring system?

It establishes a stable electrical representation of mechanical clearance between the sensor tip and a rotating or stationary metallic target.

Q2: Does this sensor perform signal processing or analysis?

No, it only generates the primary measurement signal, which is processed by external conditioning and monitoring equipment.

Q3: Is the sensor suitable for environments with continuous oil exposure?

Yes, it is designed to operate reliably in industrial environments where oil mist and contaminants are present.

Q4: What installation factor most affects measurement quality?

Accurate mechanical alignment and correct probe-to-target spacing are the most critical factors.

Q5: Why is long-term stability important for proximity sensors?

Stable behavior ensures that changes observed by the monitoring system reflect actual machine conditions rather than sensor drift.

 

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