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9200-06-01-11-04

Two-Wire Seismoprobe Velocity Transducer
In Stock
Ships by Saturday, September 12
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Product Describe:

Bently Nevada 9200-06-01-11-04 is a two-wire Seismoprobe velocity transducer with an isolated M10 base. It measures absolute machine-case velocity for approved hazardous-area monitoring channels.

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Technical specifications for 9200-06-01-11-04

Technical specifications for 9200-06-01-11-04

  • Manufacturer:
    Bently Nevada
  • Product Category:
    Machinery Monitoring System
  • Spare Part Number:
    9200-06-01-11-04
  • Estimated shipping dimensions:
    10.2x4x4cm
  • Weight:
    0.42 kg
  • Tariff Code:
    8537101190
  • Counliy of origin:
    USA
  • Sensitivity:
    20 mV/mm/s (500 mV/in/s), +/-5%
  • Load resistance:
    10 kOhm
  • Frequency response:
    10 to 1000 Hz, +0/-3 dB
  • Dynamic displacement range:
    2.54 mm peak-to-peak
  • Amplitude linearity:
    +/-5% from 0.254 to 127 mm/s at 100 Hz
  • Coil resistance:
    1.25 kOhm +/-5%
  • Locked inductance:
    125 mH
  • Non-sensitive-axis shock:
    50 g
  • Transverse sensitivity:
    +/-10% maximum
  • Maximum lead length:
    305 m
  • Operating temperature:
    -29 to +121 degC
  • Relative humidity:
    95% non-condensing
  • Case material:
    Anodized A204 aluminum
  • Mounting orientation:
    0 degrees +/-100 degrees
  • Minimum operating frequency:
    10 Hz (600 cpm)
  • Cable option:
    Top mount, no cable
  • Mounting base:
    Isolated circular M10 x 1
  • Mounting torque:
    5.6 N m
  • Approval option:
    ATEX and IECEx

Information

Information

Overview Manuals Common Applications Product Precautions
Bently Nevada 9200-06-01-11-04 is a two-wire Seismoprobe velocity transducer with an isolated M10 base. It measures absolute machine-case velocity for approved hazardous-area monitoring channels.
  • Generates a two-wire signal proportional to absolute vibration velocity
  • Uses an isolated M10 base for the approved installation
  • Supports a top-connected field cable
  • Measures low-frequency machine-case motion from 10 Hz

9200-06-01-11-04 installs with compatible high-impedance velocity input, 84510 armored cable where specified, isolated M10 mounting point, approved hazardous-area wiring system in an engineered 9200 Seismoprobe System configuration.

The commissioning workflow covers installed-hardware matching, controlled start-up and functional verification for this two-wire seismoprobe velocity transducer.

Important Notice: Confirm the complete 9200-06-01-11-04 marking, installed-system configuration, field connections and controlled functional test before commissioning or replacement.

Apter Power 9200-06-01-11-04 Manuals and Guides
Apter Power 9200-06-01-11-04 Product Technical Reference PDFBently Nevada 9200-06-01-11-04 Official Manual PDF
The first document is an Apter Power model-specific technical reference. The second supports model-specific installation, configuration and engineering verification.
Turbine casing velocityGenerates a two-wire signal proportional to absolute vibration velocity
Compressor bearing-housing vibrationUses an isolated M10 base for the approved installation
Large pump low-frequency vibrationSupports a top-connected field cable
Hazardous-area machine monitoringMeasures low-frequency machine-case motion from 10 Hz
Read the applicable Bently Nevada installation instructions before work. Verify 9200-06-01-11-04 and the installed 9200 Seismoprobe System configuration.
1Confirm the complete 9200-06-01-11-04 marking and approvals before work.
2Follow the applicable hazardous-area permit and isolation procedure.
3Prepare a rigid flat M10 mounting point and preserve base isolation.
4Apply the specified mounting torque without twisting the transducer body.
5Use the correct top connector and maintain conductor polarity.
6Keep total lead length within the published limit.
7Verify coil continuity and insulation before energizing the monitor input.
8Prove velocity direction and alarm response under controlled conditions.

Technical notes

Technical notes

Orient 9200-06-01-11-04 within its specified angular range, torque the isolated M10 base and preserve field-cable polarity and hazardous-area wiring before verifying velocity response.

FAQS

  • How is 9200-06-01-11-04 checked during commissioning?
    Apply the approved controlled test for turbine casing velocity, verify polarity or direction where applicable, and compare the measured response with the configured channel.
  • Can parameters from a similar model be used for 9200-06-01-11-04?
    No. Retain only values and configuration details that apply directly to the complete 9200-06-01-11-04 ordering code and installed system.
  • What maintenance evidence should be retained for 9200-06-01-11-04?
    Retain the full 9200-06-01-11-04 identity, as-left mounting and connections, continuity or bias checks, diagnostics and the final functional-test result.
  • What should be verified before returning 9200-06-01-11-04 to service?
    Confirm secure mounting, connector integrity, restored configuration, stable signal behavior and the intended response of the associated monitoring channel.
  • What must be matched before replacing 9200-06-01-11-04?
    Match the complete 9200-06-01-11-04 marking, two-wire seismoprobe velocity transducer, installed mounting or connector execution and the approved equipment record before removal.
  • Which system components should be checked with 9200-06-01-11-04?
    Confirm the installed compatible high-impedance velocity input, 84510 armored cable where specified and the assigned monitoring or connection point are the documented combination for 9200-06-01-11-04.
  • How should wiring or cabling for 9200-06-01-11-04 be recorded?
    Record conductor identity, shield termination, connector orientation, cable route and the as-found diagnostic state before disconnecting 9200-06-01-11-04.
  • What installation control is important for 9200-06-01-11-04?
    Use the model-specific mounting arrangement, protect mating surfaces and maintain the documented cable support and mechanical clearance for 9200-06-01-11-04.
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Disclaimer: We are not an authorized distributor or distributor of the product manufacturer of this website, The product may have older date codes or be an older series than that available direct from the factory or authorized dealers. Because our company is not an authorized distributor of this product, the Original Manufacturer`s warranty does not apply.While many DCS PLC products will have firmware already installed, Our company makes no representation as to whether a DSC PLC product will or will not have firmware and, if it does have firmware, whether the firmware is the revision level that you need for your application. Our company also makes no representations as to your ability or right to download or otherwise obtain firmware for the product from our company, its distributors, or any other source. Our company also makes no representations as to your right to install any such firmware on the product. Our company will not obtain or supply firmware on your behalf. It is your obligation to comply with the terms of any End-User License Agreement or similar document related to obtaining or installing firmware.

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