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This model belongs to an industrial vibration monitoring and machinery protection instrumentation platform used for rotating equipment condition monitoring.
It is widely applied in high-criticality industries such as power generation, petrochemical processing, oil and gas compression systems, and heavy industrial manufacturing.
The system is designed to continuously measure shaft vibration, radial displacement, and axial position in rotating machinery, enabling predictive maintenance and early fault detection.
The coding structure defines key configuration parameters such as cable length (060 = 6.0 m), connector configuration, shielding specification, and assembly variant (10-00-05).
This product is a proximity probe extension cable assembly designed to transmit low-level eddy current signals between a proximity probe and a monitoring system.
It is a key passive component in vibration measurement systems, ensuring that displacement signals are transmitted accurately and without distortion.
The cable is factory-terminated with precision coaxial connectors, ensuring repeatable electrical performance and eliminating field wiring inconsistencies.
It is designed for long-term operation in harsh industrial environments with vibration, high temperature, oil exposure, and electromagnetic interference.
| Parameter | Specification |
|---|---|
| Model | 330851-02-000-060-10-00-05 |
| Product Type | Proximity probe extension cable assembly |
| Function | Shaft vibration and displacement signal transmission |
| Cable Length | 6.0 m |
| Signal Type | Eddy current analog displacement signal |
| Shielding Structure | Multi-layer braided + foil shielding |
| Connector Type | Industrial sealed coaxial connectors |
| Operating Temperature | -40°C to +200°C |
| Insulation Material | Fluoropolymer high-performance insulation |
| Outer Jacket | Oil-resistant, chemical-resistant industrial polymer |
| EMI Resistance | High electromagnetic interference immunity |
| Cable Diameter | 5–8 mm (approx.) |
| Minimum Bend Radius | ≥ 25 mm |
| Weight | ~0.53 kg |
| Dimensions | 6000 mm length (coiled diameter ~340 mm) |
| Mechanical Design | Continuous vibration-resistant construction |
| Installation Type | Factory pre-assembled plug-and-play |
| Configuration Code | 10-00-05 variant specification |
This cable assembly is an essential part of industrial vibration monitoring systems used for rotating machinery protection.
It connects the proximity probe to downstream signal conditioning or monitoring equipment, forming a complete measurement chain.
The product ensures stable transmission of high-frequency eddy current signals with minimal attenuation or interference.
It is fully factory-assembled to guarantee consistency, reduce installation errors, and improve operational reliability.
Its design focuses on long-term durability in demanding industrial environments with continuous vibration and harsh environmental exposure.
This model is widely used in industrial rotating machinery monitoring systems.
It is installed in steam turbine units for shaft vibration, eccentricity, and axial displacement measurement.
It is used in centrifugal and axial compressors in oil and gas facilities for rotor stability monitoring and fault detection.
It is applied in hydroelectric generator systems for rotor alignment and dynamic performance analysis.
It is commonly used in large pump systems requiring continuous vibration monitoring.
In petrochemical plants, steel mills, and paper production facilities, it supports predictive maintenance systems through real-time displacement data acquisition.
This model provides stable and reliable signal transmission over medium-to-long cable distances.
Its multi-layer shielding structure effectively reduces electromagnetic interference in industrial environments.
The outer jacket provides resistance against oil, chemicals, abrasion, and high temperature exposure.
Factory pre-termination improves installation efficiency and eliminates field wiring variability.
The cable maintains mechanical flexibility while resisting fatigue under continuous vibration conditions.
It integrates seamlessly into standardized industrial vibration monitoring systems.
This model belongs to a proximity measurement system used for rotating machinery condition monitoring.
The system consists of three main components:
A proximity probe for detecting shaft movement, an extension cable for signal transmission, and a monitoring module for signal processing.
Together, these components form a calibrated measurement chain used for real-time vibration monitoring and predictive maintenance in industrial applications.
| Model | Description | Cable Length | Weight (kg) | Dimensions |
|---|---|---|---|---|
| 330851-02-000-030-10-00-05 | Short extension cable assembly | 3.0 m | 0.36 | 3000 mm coiled |
| 330851-02-000-040-10-00-05 | Medium-short extension cable | 4.0 m | 0.42 | 4000 mm coiled |
| 330851-02-000-050-10-00-05 | Standard 5.0 m extension cable | 5.0 m | 0.48 | 5000 mm coiled |
| 330851-02-000-060-10-00-05 | 6.0 m extension cable assembly | 6.0 m | 0.53 | 6000 mm coiled |
| 330851-02-000-080-10-00-05 | Long extension cable assembly | 8.0 m | 0.70 | 8000 mm coiled |
| Model | Description | Function | Weight (kg) | Dimensions |
|---|---|---|---|---|
| 330780-90-00 | Standard proximity probe | Shaft vibration sensing | 0.12 | ~90 mm probe length |
| 330785-91-00 | High-temperature proximity probe | Turbine monitoring | 0.18 | ~100 mm probe length |
| 330876-02-00 | Signal conditioning module | Signal processing unit | 1.75 | 120 × 80 × 60 mm |
| 3500/42M | Machinery protection module | Vibration monitoring system | 2.25 | Rack-mounted module |
| 3500/92 | Communication gateway module | Data acquisition interface | 2.50 | Rack-mounted unit |
This model is a precision cable assembly used in industrial vibration monitoring systems for rotating machinery protection.
It ensures stable, low-noise transmission of displacement signals between sensing and processing equipment.
Its durability, shielding performance, and factory-assembled structure make it suitable for long-term use in harsh industrial environments.
It is widely applied in critical machinery systems where operational safety, reliability, and predictive maintenance are required.