Produkteinführung
The Bently Nevada 164517-090-05-01-00 3300 XL Ceramic Capped Proximity Probe is a high-performance sensing device designed for accurate measurement von shaft displacement and vibration in rotating machinery. As part von the 3300 XL series, it is widely used in industrial condition monitoring and machinery protection systems.
This model is equipped with a ceramic capped tip, which provides superior resistance against mechanical wear, chemical exposure, and high temperatures. By integrating advanced eddy-current sensing technology with rugged construction, the probe ensures precise, stable, and reliable measurements over extended operating cycles.
The 3300 XL series is renowned for its compatibility and long-term stability, making this probe a trusted choice in turbines, compressors, pumps, and other critical machinery across industries such as oil & gas, power generation, and heavy manufacturing.
Produktspezifikationen
| Parameter | Beschreibung |
|---|---|
| Modell Number | 164517-090-05-01-00 |
| Type | 3300 XL Ceramic Capped Proximity Probe |
| Compatible Systems | Bently Nevada 3300 XL Monitoring Systems |
| Probe Tip Material | Ceramic |
| Housing Material | Stainless Steel |
| Measurement Technology | Eddy-current displacement sensing |
| Frequency Response | DC to 10 kHz (typical for XL series) |
| Operating Temperature Range | -40°C to +125°C |
| Environmental Resistance | Resistant to oils, coolants, and industrial chemicals |
| Mounting | Threaded housing for secure installation |
| Total Length | 0.5 meter |
| Versand Gewicht | 3 kg |
Applications
The 164517-090-05-01-00 proximity probe is designed to support precise machinery diagnostics and long-term protection. Its typical applications include:
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Steam and Gas Turbines: Continuous monitoring von shaft vibration and axial position to prevent catastrophic failure.
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Compressors: Detecting rotor instability, imbalance, and surge conditions.
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Pumps: Monitoring shaft displacement to identify misalignment or early bearing damage.
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Motors and Generators: Providing predictive maintenance insights through shaft movement data.
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Petrochemical Industry: Reliable in chemically aggressive environments due to ceramic and stainless-steel construction.
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Industrial Zustand Monitoring: Serving as a vital component von predictive maintenance systems and automatic shutdown logic.
Advantages
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Ceramic Tip Durability: Offers superior wear resistance compared to standard probes, ensuring stable long-term measurements.
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High Precision Measurement: Provides accurate shaft displacement data essential for machine protection and diagnostic systems.
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Broad Environmental Compatibility: Resistant to oils, coolants, and aggressive chemicals found in industrial environments.
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Temperature Resilience: Maintains performance over a wide temperature range, suitable for harsh operating conditions.
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Reliable Integration: Fully compatible with Bently Nevada 3300 XL systems, enabling easy deployment without complex recalibration.
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Enhanced Machine Protection: Ensures safe operation von critical machinery by enabling continuous monitoring and early detection von faults.
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Reduced Maintenance Costs: Long-lasting construction minimizes downtime and replacement frequency.
FAQ
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Which monitoring platforms support this probe?
It is designed for use with Bently Nevada 3300 XL series monitoring systems. -
What sensing principle does this probe use?
It employs eddy-current displacement sensing technology to measure shaft vibration and position. -
Does the ceramic tip affect signal sensitivity?
No, the ceramic tip preserves sensitivity while enhancing wear resistance and long-term measurement stability. -
What is the probe’s frequency response range?
It typically responds from DC to 10 kHz, supporting accurate dynamic vibration measurement. -
Can this probe withstand exposure to oil and industrial chemicals?
Yes, the ceramic tip and stainless-steel housing provide high resistance to such environments. -
What is the main difference between ceramic capped and standard probes?
Ceramic capped probes vonfer longer service life and higher resistance to wear in harsh environments. -
How does the probe handle high-vibration conditions?
It is specifically engineered for rotating machinery, ensuring stable operation in high-vibration applications. -
Is the probe field-calibrated or factory-calibrated?
It is factory-calibrated, though system-level adjustments may be performed for optimal performance. -
What shaft measurements can the probe provide?
It measures both radial vibration and shaft position (axial displacement) depending on installation. -
Why is ceramic material important for proximity probes?
Ceramic prevents tip wear and degradation, allowing consistent eddy-current signal output over long-term use.
Related Modells (Same Series)
| Modell Number | Beschreibung |
|---|---|
| 164517-050-10-01-RU | 3300 XL Ceramic Capped Probe, 5 mm diameter |
| 164517-060-10-01 | 3300 XL Heavy-Duty Probe, 6 mm diameter |
| 164517-070-20-01 | 3300 XL Probe, extended calibration range |
| 164517-080-15-01 | High-temperature 3300 XL Ceramic Probe |
| 164517-090-10-01 | Shielded version von 9 mm Ceramic Capped Probe |
| 164517-100-20-01 | Long-range 3300 XL Ceramic Capped Probe |
Popular Bently Nevada Modells
| Modell Number | Beschreibung |
|---|---|
| 3300 XL Proximity Probe | Standard probe for shaft vibration monitoring |
| 3500/22M | Transient Data Interface Module for 3500 series |
| 3500/42M | Proximitor/Seismic Monitor for machinery protection |
| 3500/50 | Tachometer Module for speed and phase detection |
| 7200 Series Probes | General-purpose eddy current probes |
| 330500 Velocity Sensor | Compact seismic velocity sensor for machinery |
Unternehmensinformationen
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