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IQS900 204-900-000-011 A1-B21-C1-H10-I0

Proximity measurement system
In Stock

Product Information:

Non-contact measurement based on

eddy-current principle

Conforms to API 670 5th edition

Temperature-compensated design

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Technical specifications for IQS900 204-900-000-011 A1-B21-C1-H10-I0

  • Manufacturer:
    Vibro-Meter
  • Product Category:
    General Automation
  • Estimated shipping dimensions:
    8x5.3x3.5cm
  • Weight:
    0.2 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Frequency response:
    DC to 20 kHz (−3 dB)
  • Linear measurement range:
    2 or 4 mm
  • Temperature range (sensor):
    −40 to 180 °C
  • Target material:
    VCL 140 steel (1.7225)
  • Sensitivity:
    8 mV/μm (203.2 mV/mil)
  • Stock:
    30

Information

Overview Manuals Principle

Features:

  • IQS900 signal conditioner
  • IQS900 proximity measurement system
  • Very wide frequency range (DC to 20000 Hz), with configurable sensitivity and measurement range
The IQS900 signal conditioner is a versatile and configurable device that performs all required signal processing and generates the output signal (current or voltage) for input to a machinery monitoring system such as a VM600Mk2/VM600 or VibroSmart®. In addition, the IQS900 supports optional diagnostic circuitry (that is, built-in self-test (BIST)) that automatically detects and remotely indicates problems with a measurement chain.

The IQS900 signal conditioner contains a highfrequency modulator/demodulator that supplies a driving signal to a TQ9xx sensor. This generates an electromagnetic field in the tip of the sensor, which generates eddy-currents in the metallic target. When the target moves, the eddy-currents change, which causes a change in the electrical characteristics of the TQ9xx that the signal conditioner converts into a signal that is proportional to the distance to the target.

The IQS900 204-900-000-011 A1-B21-C1-H10-I0 VIBRO METER Proximity measurement system may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
VIBRO METER IQS900 204-900-000-011 A1-B21-C1-H10-I0 proximity measurement system Information(INFO), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
The IQS900 signal conditioner’s output is a dynamic signal suitable for spectral analysis. As such, the IQS900 is recommended for machinery protection and/or advanced condition monitoring applications. For more basic applications, a slowly-varying output signal such as that provided by the IQS910 signal conditioner could be more suitable. Refer to the IQS910 signal conditioner data sheet for more information.

Ask our team:

  • What functional metrology principles govern the operation of IQS900 204-900-000-011 A1-B21-C1-H10-I0 within eddy-current displacement measurement systems?
    The IQS900 204-900-000-011 A1-B21-C1-H10-I0 operates as a high-precision signal conditioner designed for non-contact eddy-current proximity probes. It excites the probe with a high-frequency carrier signal and demodulates impedance variations caused by conductive target displacement. The IQS900 204-900-000-011 A1-B21-C1-H10-I0 thereby converts minute shaft position changes into a linearized voltage output suitable for vibration and axial position monitoring.
  • How does IQS900 204-900-000-011 A1-B21-C1-H10-I0 ensure linearity and calibration fidelity across its specified measurement range?
    The IQS900 204-900-000-011 A1-B21-C1-H10-I0 integrates factory-calibrated compensation networks matched to specific probe and extension cable combinations. Through controlled oscillator stability, temperature-compensated circuitry, and precision demodulation stages, the IQS900 204-900-000-011 A1-B21-C1-H10-I0 maintains strict linear transfer characteristics across its calibrated displacement span.
  • Why is the probe–extension–conditioner matching imperative when deploying IQS900 204-900-000-011 A1-B21-C1-H10-I0?
    The IQS900 204-900-000-011 A1-B21-C1-H10-I0 is engineered as part of a calibrated measurement chain. Any deviation in probe type, cable length, or impedance characteristics can compromise scale factor accuracy and phase response. Therefore, the IQS900 204-900-000-011 A1-B21-C1-H10-I0 must be paired exclusively with its designated proximity probe system to ensure traceable metrological performance.
  • What frequency response characteristics define IQS900 204-900-000-011 A1-B21-C1-H10-I0 in dynamic vibration monitoring applications?
    The IQS900 204-900-000-011 A1-B21-C1-H10-I0 is optimized for both static displacement and high-frequency dynamic vibration measurements. Its bandwidth supports accurate tracking of shaft vibration phenomena, including subsynchronous and synchronous components. The signal integrity provided by the IQS900 204-900-000-011 A1-B21-C1-H10-I0 ensures minimal phase distortion within the specified frequency domain.
  • What output signal configuration is provided by IQS900 204-900-000-011 A1-B21-C1-H10-I0, and how does it integrate into machinery protection systems?
    The IQS900 204-900-000-011 A1-B21-C1-H10-I0 delivers a calibrated analog voltage output proportional to displacement. This output can be directly interfaced with vibration monitoring modules, condition monitoring systems, or machinery protection racks. The signal scaling of the IQS900 204-900-000-011 A1-B21-C1-H10-I0 supports standardized engineering units such as µm/V.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.