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The 330180-X1-05 combined with 145004-137 is a high-precision proximity signal conditioning module used in rotating machinery protection and vibration monitoring systems.
It is designed to process eddy current probe signals and convert them into stable, linear voltage outputs that represent shaft displacement, vibration amplitude, and dynamic movement behavior in real time.
This configuration is widely used in critical industrial applications where continuous condition monitoring is required to ensure equipment reliability and prevent unexpected failures.
The 330180-X1-05 module acts as a core signal processing unit in a proximity-based vibration monitoring architecture.
It receives high-frequency eddy current signals generated by a probe installed near a rotating shaft and converts them into a calibrated analog voltage proportional to shaft displacement.
The associated module 145004-137 is typically used for system integration, configuration adaptation, or rack-level interface support within industrial monitoring systems.
The design is optimized for long-term operation in harsh industrial environments with vibration, temperature fluctuations, and electromagnetic interference.
| Parameter | Specification |
|---|---|
| Model | 330180-X1-05 |
| Associated Module | 145004-137 |
| System Series | 3300 XL Proximity Monitoring System |
| Measurement Principle | Eddy current non-contact sensing |
| Probe Compatibility | 8 mm standard proximity probe |
| Measurement Range | 0 – 2.0 mm typical |
| Output Signal | Linear voltage proportional displacement |
| Supply Voltage | 24 V DC nominal |
| Frequency Response | 0 – 10 kHz |
| Operating Temperature | -52°C to +100°C |
| Storage Temperature | -55°C to +120°C |
| Housing Material | Industrial aluminum alloy |
| Mounting Type | Rack / panel mount |
| EMI Protection | High-level electromagnetic shielding |
| Signal Stability | Long-term drift resistant design |
| Weight | ~0.23 kg |
| Dimensions | 82 × 62 × 64 mm |
This module serves as a key interface between proximity probes and industrial monitoring systems.
Its main functions include:
The system is widely used in industries requiring continuous rotating machinery monitoring, including:
It is mainly applied in vibration monitoring, shaft displacement measurement, and machinery condition analysis.
Ensures precise conversion of micro-displacement signals into stable electrical outputs.
Stable operation under vibration, heat, and electromagnetic interference conditions.
Eliminates mechanical wear and extends system lifespan.
Maintains consistent output over long-term continuous operation.
Compatible with probes, extension cables, and rack-mounted monitoring modules.
Designed for mission-critical industrial environments requiring continuous monitoring.
| Model | Description | Probe Size | Weight (kg) | Dimensions (mm) |
|---|---|---|---|---|
| 330180-X1-05 | Enhanced sensitivity proximitor module | 8 mm | 0.23 | 82×62×64 |
| 330180-X1-00 | Standard signal conditioning module | 8 mm | 0.20 | 80×61×63 |
| 330180-X0-05 | Basic sensitivity version | 8 mm | 0.21 | 80×60×62 |
| 330180-50-05 | Extended stability industrial model | 8 mm | 1.80 | 82×62×64 |
| 330180-51-05 | High EMI immunity version | 8 mm | 0.24 | 83×63×65 |
| Model | Function | System Type | Weight (kg) | Dimensions (mm) |
|---|---|---|---|---|
| 330130-045-00-00 | Standard proximity probe | 3300 XL system | 0.15 | 76×12×12 |
| 330130-040-00-00 | Short range proximity probe | 3300 XL system | 0.14 | 75×12×12 |
| 330105-02-12-10-02-00 | Vibration velocity sensor | Monitoring system | 0.45 | 90×40×40 |
| 330750-080-01-00 | Extension cable assembly | 3300 XL system | 0.30 | 8000×5×5 |
| 3300/16-01-01-00 | Multi-channel monitoring module | Rack system | 1.20 | 200×120×80 |
The 330180-X1-05 + 145004-137 configuration is a high-reliability signal conditioning solution designed for continuous monitoring of rotating machinery.
It provides stable, accurate, and interference-resistant measurement of shaft displacement and vibration signals in demanding industrial environments.
Its modular architecture and robust design make it suitable for long-term deployment in predictive maintenance and machinery protection systems where operational safety is critical.