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Bently Nevada Coiled Interconnect Cable | 80705-01

Bently Nevada Coiled Interconnect Cable | 80705-01

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Bently Nevada 80705-01 Coiled Interconnect Cable The Bently Nevada 80705-01, also cataloged as the 80705-01 Coiled Interconnect Cable, operates as... Read more

SKU: 80705-01
Country of origin: USA

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    Description

    Bently Nevada 80705-01 Coiled Interconnect Cable

    The Bently Nevada 80705-01, also cataloged as the 80705-01 Coiled Interconnect Cable, operates as a dedicated hardware component for dynamic vibration signal transmission between field sensors and BNC-equipped diagnostic instruments in Bently Nevada vibration monitoring systems.

    Hardware Specifications

    Parameter Specification
    Model 80705-01
    Brand Bently Nevada
    Origin USA
    Product Type Coiled 2-Conductor Interconnect Cable
    Connector A Industrial 2-Pin Sensor Socket
    Connector B BNC Male Connector
    Cable Configuration Shielded 2-conductor coiled cable assembly
    Signal Type Dynamic analog vibration signals
    Supported Measurements Acceleration, velocity, displacement
    Retracted Length 0.5 m
    Extended Length Up to 2.0 m
    Cable Jacket Material Polyurethane (PU)
    Environmental Resistance Oil, chemical, moisture, and abrasion resistance
    Weight Approximately 300 g
    Power Consumption Passive cable assembly; no external power consumption

    Rotor Dynamics Signal Transmission and Vibration Interface Characteristics

    The Bently Nevada 80705-01 cable assembly provides a shielded signal path for vibration measurement circuits connected to portable analyzers and monitoring equipment. Moreover, the cable construction maintains electrical shielding between the sensor output and external interference sources in high-vibration machinery areas.

    The assembly supports vibration transducer connections commonly used in machinery condition monitoring applications. In addition, the coiled polyurethane jacket reduces mechanical strain during portable measurement operations and maintains cable flexibility during repeated deployment.

    For Bently Nevada vibration systems, signal integrity depends on proper sensor matching, cable shielding, and connection quality. Therefore, technicians should maintain correct sensor polarity and connector engagement when installing the 80705-01 assembly with vibration measurement equipment.

    Frequently Asked Questions

    Q: Does the Bently Nevada 80705-01 cable require external power during operation?
    A: No. The 80705-01 is a passive interconnect cable assembly and does not consume electrical power. It transfers analog vibration signals between connected sensor devices and monitoring instruments.

    Q: What type of sensors can connect to the 80705-01 cable?
    A: The cable uses a 2-pin sensor interface designed for compatible vibration sensors, including moving-coil velocity transducers and related vibration measurement devices.

    Q: How should the cable shield be handled during installation?
    A: The shield connection should follow the grounding requirements of the connected monitoring system. Technicians should avoid improper grounding paths that may introduce electrical noise into vibration signals.

    Field Installation Guidelines

    • Verify that the sensor connector type matches the 2-pin socket interface before installation.
    • Ensure the BNC connector is fully seated on the diagnostic instrument input to prevent intermittent signal transmission.
    • Route the coiled cable away from rotating shafts, coupling guards, and high-temperature surfaces.
    • Maintain proper cable separation from high-current power wiring to reduce electromagnetic interference.
    • Inspect the polyurethane jacket and connectors before field use to confirm there is no physical damage.
    • Avoid excessive stretching of the coiled section beyond its intended extension range.

    Specifications

    • Brand: Bently Nevada

    Advantages

    • High reliability in industrial environments
    • Supports continuous operation
    • Compatible with major PLC/DCS systems

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