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The 330180-080-01-00 is an industrial proximity probe designed for vibration and position monitoring of rotating machinery. It is commonly used in condition monitoring systems to measure shaft displacement, vibration, and mechanical stability in critical equipment.
This probe is typically installed in turbines, compressors, pumps, and motors where continuous monitoring of shaft movement is required to prevent mechanical failure. It operates as part of a proximity transducer system that includes a probe, extension cable, and signal conditioning module.
The 80 mm length configuration provides a standardized sensing range suitable for medium to large rotating machinery applications.
| Parameter | Specification |
|---|---|
| Model | 330180-080-01-00 |
| Product Type | Proximity vibration monitoring probe |
| Series Type | 3300 XL proximity probe series |
| Sensing Technology | Eddy current displacement measurement |
| Measuring Range | Typically up to 80 mm configuration class |
| Output Signal | Proportional voltage signal |
| Probe Length | 80 mm configuration |
| Cable Type | Integrated or detachable extension cable system |
| Connector Type | Industrial BNC-type or sealed connector system |
| Operating Temperature | -35°C to +177°C |
| Material | Stainless steel probe body |
| Mounting Type | Threaded probe mounting |
| Sensitivity | High-resolution shaft displacement detection |
| Protection | Industrial vibration and oil-resistant sealing |
| Dimensions (probe body) | 8 mm × 8 mm × 120 mm |
| Weight | 0.25 kg (approx.) |
The 330180-080-01-00 proximity probe is designed for high-precision shaft vibration monitoring in rotating machinery systems. It works on the eddy current principle, where changes in distance between the probe tip and the target shaft surface generate a proportional electrical signal.
This allows real-time monitoring of shaft position, vibration amplitude, and mechanical condition without physical contact. The non-contact measurement method ensures long-term stability and eliminates mechanical wear.
It is commonly used in critical machinery protection systems where early detection of imbalance, misalignment, or bearing wear is required.
This probe is widely used in industrial condition monitoring systems such as:
It is particularly important in predictive maintenance and machinery protection systems.
This series is widely used in high-value rotating equipment protection systems across power and process industries.
The following models belong to the same proximity probe family:
| Model | Probe Length | Key Features | Dimensions (mm) | Weight (kg) |
|---|---|---|---|---|
| 330180-050-01-00 | 50 mm | Compact vibration probe | 8 × 8 × 100 | 0.20 |
| 330180-060-01-00 | 60 mm | Medium-range monitoring probe | 8 × 8 × 110 | 0.22 |
| 330180-080-01-00 | 80 mm | Standard industrial probe | 8 × 8 × 120 | 0.25 |
| 330180-100-01-00 | 100 mm | Extended range shaft probe | 8 × 8 × 140 | 0.28 |
| 330180-120-01-00 | 120 mm | Long-range monitoring probe | 8 × 8 × 160 | 0.32 |
These models are widely used in industrial condition monitoring and protection systems:
| Model | Product Type | Application | Dimensions (mm) | Weight (kg) |
|---|---|---|---|---|
| 330130-045-00-05 | Proximity probe | General vibration monitoring | 8 × 8 × 95 | 0.18 |
| 330130-040-00-00 | Proximity probe | Standard shaft displacement monitoring | 8 × 8 × 90 | 0.17 |
| 330104-00-12-10-02-05 | Proximitor sensor | Signal conditioning module | 120 × 90 × 40 | 0.45 |
| 330750-60-00 | Extension cable | Probe signal transmission | 6 mm diameter | 0.80 |
| 3300 XL NSV | Vibration system | Machinery protection system | 200 × 150 × 80 | 1.5 |
The 330180-080-01-00 is a high-precision eddy current proximity probe designed for rotating machinery vibration and displacement monitoring.
Its non-contact measurement principle, high temperature resistance, and stable signal output make it suitable for critical industrial equipment protection systems.
It is widely used in power generation, oil and gas, and heavy industrial applications where continuous machine condition monitoring is essential for operational safety and reliability.