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Comprehensive Product Specification, Applications, Advantages, and Related Models
The 330104‑00‑14‑10‑11‑00 is a high‑precision eddy current proximity probe designed for non‑contact measurement of shaft vibration and position in rotating machinery. This is a core sensing element used in condition monitoring and machinery protection systems where accurate detection of shaft movement is critical.
Using eddy current principles, the probe generates a voltage signal that varies with the distance between the probe tip and a conductive target surface. That signal is processed by a monitoring module to determine shaft vibration levels, shaft position, and dynamic characteristics of the rotating equipment.
The specific configuration code “14‑10‑11‑00” reflects the cable length, connector variation, and internal assembly options tailored for industrial installations. The robust construction provides long‑term reliability, and the probe is suited for operation in challenging environments with mechanical vibration, oil contamination, dust, and temperature extremes.
This product is widely used in heavy industries where equipment uptime is critical and early detection of mechanical faults can prevent costly downtime.
The 3300 XL series is a trusted family of industrial proximity probes with stable outputs, rugged mechanical strength, and high repeatability. Probes in this series are compatible with industrial monitoring systems used for vibration analysis, predictive maintenance, and machinery protection.
Bently Nevada is a globally recognized supplier of machinery protection and condition monitoring equipment. Its products are widely used in power plants, petrochemical facilities, heavy manufacturing plants, and other industrial settings where precise vibration and position measurement are essential.
| Parameter | Specification |
|---|---|
| Model | 330104‑00‑14‑10‑11‑00 |
| Probe Type | Eddy current non‑contact proximity probe |
| Probe Diameter | 8 mm |
| Thread Type | 3/8‑24 UNF |
| Measurement Range | Approx. 2 mm |
| Sensitivity | 7.87 V/mm |
| Frequency Response | 0 – 10 kHz |
| Operating Voltage | Standard proximity monitor supply |
| Operating Temperature | ‑35°C to +177°C |
| Cable Length | 14 ft (approx. 4.27 m) |
| Connector Type | Coaxial connector (industrial standard) |
| Probe Tip Material | Stainless steel |
| Mounting Method | Threaded installation |
| Environmental Resistance | Resistant to oil, dust, vibration |
| Dimensions | Probe diameter 8 mm; length approx. 120 mm |
| Weight (kg) | ~0.36 kg |
The 330104‑00‑14‑10‑11‑00 probe is designed for continuous machinery monitoring in a wide range of industrial environments. Typical applications include:
By capturing accurate shaft vibration and displacement data, the probe supports early fault detection related to imbalance, misalignment, bearing degradation, shaft looseness, and other mechanical anomalies. This information is vital for predictive maintenance strategies and reducing unplanned outages.
Non‑Contact Measurement
The eddy current principle ensures non‑contact sensing, eliminating wear on both the probe tip and the shaft, resulting in longer service life and consistent readings.
High Sensitivity and Accuracy
Precisely detects very small changes in displacement and vibration, providing dependable data for accurate machinery health analysis.
Rugged Construction
Stainless steel probe tip and industrial cable insulation allow operation in harsh environments with oil, vibration, dust, and temperature extremes.
Stable Signal Output
Designed to resist electrical noise and maintain consistent performance in electrically harsh environments.
Wide Operating Range
Supports a broad temperature range, ensuring flexibility for installations in different industrial conditions.
Flexible Cable Length
The 14‑foot cable enables installation in systems where the monitoring module is positioned at a distance from the sensor location.
| Model | Probe Diameter | Cable Length | Temp Range | Sensitivity | Weight (kg) |
|---|---|---|---|---|---|
| 330104‑00‑14‑10‑02‑00 | 8 mm | 14 ft | ‑35°C to 177°C | 7.87 V/mm | 0.35 |
| 330104‑00‑14‑10‑02‑05 | 8 mm | 14 ft | ‑35°C to 177°C | 7.87 V/mm | 0.35 |
| 330104‑00‑15‑10‑02‑05 | 8 mm | 15 ft | ‑35°C to 177°C | 7.87 V/mm | 0.36 |
| 330104‑00‑13‑10‑11‑00 | 8 mm | 13 ft | ‑35°C to 177°C | 7.87 V/mm | 0.32 |
| 330105‑02‑14‑10‑11‑00 | 11 mm | 14 ft | ‑35°C to 177°C | 3.94 V/mm | 0.41 |
| Model | Type | Measurement Range | Frequency Response | Temp Range | Weight (kg) |
|---|---|---|---|---|---|
| 330180‑90‑00 | Proximitor sensor | ~2 mm | 0–10 kHz | ‑35°C to 85°C | 0.50 |
| 330130‑040‑00‑05 | Extension cable | N/A | N/A | ‑35°C to 177°C | 0.60 |
| 3500/42M | Multi‑channel monitor | Multi‑input | 0–20 kHz | 0°C to 65°C | 1.20 |
| 3500/22M | Interface module | High‑speed interface | N/A | 0°C to 65°C | 1.00 |
| 1900/65A | Multi‑parameter monitor | Multi‑channel | 0–5 kHz | ‑20°C to 70°C | 0.80 |
Q1: What does this probe measure?
A: It measures shaft vibration and displacement without physical contact.
Q2: Why use a non‑contact probe?
A: Non‑contact measurement prevents wear on both the probe and shaft, improving durability and accuracy over time.
Q3: What is the measurement range?
A: Typically around 2 mm of linear displacement measurement.
Q4: Can it operate in harsh environments?
A: Yes, it can withstand oil, dust, heat, and mechanical vibration.
Q5: What industries use this type of probe?
A: Power generation, petrochemical, heavy manufacturing, and industrial processing plants.
Q6: What kinds of faults can this probe help detect?
A: Imbalance, misalignment, bearing wear, shaft looseness, and other mechanical anomalies.
Q7: How is installation typically performed?
A: The probe is mounted with a threaded fitting near the rotating shaft to ensure accurate gap and alignment.
Q8: What does the “11‑00” designation indicate?
A: It typically refers to specific connector and internal configuration variations.
Q9: Does this probe require frequent calibration?
A: No, its design provides stable calibration over extended periods.
Q10: Why is a 14‑foot cable beneficial?
A: It allows flexibility in locating the monitoring electronics at a distance from the probe installation point.