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This model is a high-precision non-contact displacement and vibration measurement probe designed for continuous monitoring of rotating machinery.
It is part of an eddy current-based sensing system that detects shaft movement without physical contact, ensuring long-term stability and minimal wear.
The configuration code defines key characteristics such as probe type, cable length, connector style, and mounting structure.
It is widely used in critical machinery protection systems where early detection of vibration, misalignment, and shaft instability is required.
This product belongs to the 3300 XL 8mm Proximity Probe System Series.
This series is well known for its high reliability, stable signal output, and strong performance in harsh industrial environments such as oil mist, high vibration, and extreme temperatures.
Brand: Industrial condition monitoring instrumentation manufacturer
This product line is produced by a globally recognized manufacturer specializing in machinery protection, vibration monitoring, and predictive maintenance systems.
The proximity probe operates using eddy current sensing technology.
It measures the distance between the probe tip and a conductive rotating shaft by generating an electromagnetic field and detecting changes in that field caused by shaft movement.
The system converts these variations into an electrical signal, allowing real-time monitoring of vibration and axial displacement.
It is designed for continuous operation in industrial environments where machine reliability and early fault detection are critical.
| Parameter | Specification |
|---|---|
| Model | 330104-13-20-50-02-00 |
| Technology | Eddy current displacement sensing |
| Measurement Type | Shaft vibration & axial displacement |
| Probe Diameter | 8 mm |
| Measurement Range | 0 – 2 mm linear range (typical) |
| Operating Principle | Electromagnetic field variation |
| Output Signal | Analog voltage signal |
| Frequency Response | Up to 10 kHz (system dependent) |
| Operating Temperature | -52°C to +177°C |
| Cable Type | High-temperature coaxial cable |
| Mounting Type | Threaded probe installation |
| Material | Stainless steel probe tip + insulated cable |
| Protection Level | Industrial vibration and oil-resistant design |
| Dimensions | Probe length ~100 mm, cable diameter ~5 mm |
| Weight (kg) | 0.34 kg |
This model is commonly applied in rotating machinery condition monitoring systems, including:
It is especially important in predictive maintenance systems where continuous monitoring of shaft behavior is required.
| Parameter | Value |
|---|---|
| Model Number | 330104-13-20-50-02-00 |
| System Type | Proximity probe system |
| Sensing Method | Eddy current technology |
| Probe Size | 8 mm |
| Measurement Range | 0–2 mm |
| Output Type | Analog voltage |
| Operating Environment | Industrial harsh conditions |
| Temperature Range | -52°C to +177°C |
| Cable Construction | High-temperature coaxial cable |
| Signal Stability | High long-term stability |
| Probe Length | ~100 mm |
| Cable Length | Configurable (based on part code) |
| Dimensions | Compact industrial probe form factor |
| Weight (kg) | 0.34 kg |
| Model |
|---|
| 330101-00-10-10-02-00 |
| 330102-12-20-50-02-00 |
| 330103-08-15-10-02-00 |
| 330105-13-25-50-02-00 |
| 330106-20-30-50-01-00 |
These models belong to the same 8mm proximity probe family, with variations in cable length, sensitivity configuration, and mounting design.
| Model |
|---|
| 3300 XL 8mm Standard Proximity Probe Series |
| 3300 XL 11mm High Sensitivity Probe Series |
| 3300 XL Extension Cable Series |
| 3300 XL Proximitor Sensor Module Series |
| 3300 XL High Temperature Probe Series |
These models are widely used in industrial rotating machinery protection systems and support different monitoring configurations.
A: It measures shaft vibration and displacement without physical contact.
A: It uses eddy current sensing technology.
A: No, it operates completely without contact.
A: Power generation, oil and gas, petrochemical, and heavy industry.
A: Around 0–2 mm linear displacement range.
A: Yes, it can operate up to approximately 177°C.
A: It outputs an analog voltage signal proportional to distance.
A: Yes, it is designed for continuous industrial operation.
A: No, it requires minimal maintenance due to its non-contact design.
A: It enables early detection of vibration and mechanical faults before failure occurs.