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Dual Vibration Monitor Bently Nevada 3300/20-12-01-00-00-00 135322-01

Dual Vibration Monitor Bently Nevada 3300/20-12-01-00-00-00 135322-01

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Bently Nevada 3300/20 Dual Vibration Monitor Configured for radial shaft vibration measurement in the 3300 Series Turbine Supervisory Instrumentation (TSI)... اقرأ المزيد

رمز المنتج: 3300/20-12-01-00-00-00 135322-01
بلد المنشأ: USA

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    وصف

    Bently Nevada 3300/20 Dual Vibration Monitor

    Configured for radial shaft vibration measurement in the 3300 Series Turbine Supervisory Instrumentation (TSI) network, the Bently Nevada 3300/20-12-01-00-00-00 (3300/20 Dual Vibration Monitor) provides direct physical execution of dynamic proximity probe signal processing and alarm relay switching.

    Suffix Breakdown & Model Matrix

    Option Code

    Description

    Specification

    -12

    Full-Scale Range

    0 - 5 mils Peak-to-Peak

    -01

    Transducer Input

    3300 or 7200 5mm/8mm Proximitor Sensor (200 mV/mil)

    -00

    Agency Approval

    FM Ordinary Locations

    -00

    Intrinsically Safe

    None

    -00

    Relay Execution

    Standard Relays

    -00

    Resistor Mod

    Standard

    Hardware Specifications

    Parameter

    Specification

    Model Brand

    Bently Nevada 3300/20

    Origin

    United States

    Weight

    Approx. 0.5 kg (estimated)

    Dimensions

    Standard 3300 Series Half-Rack Module

    Operating Temp

    0 degC to +65 degC

    Power Consumption

    5 W typical

    Input Signal

    2 independent eddy-current probe channels

    Input Impedance

    10 kOhm nominal

    Frequency Response

    10 Hz to 1000 Hz @ -3 dB

    Accuracy

    +/-0.5% of full scale

    Output Signals

    4-20 mA recorder outputs, Buffered outputs

    Eddy-Current Probe Scaling and Gap Validation

    The module utilizes a fixed scaling factor of 200 mV/mil derived from the Proximitor sensor input. System integrity relies on maintaining a target gap voltage validation point of -10 VDC to ensure linear transducer operation. The monitor incorporates inherent cross-talk suppression between Channel A and Channel B to prevent signal interference during high-vibration events, ensuring accurate representation of rotor dynamics without adjacent channel contamination.

    Frequently Asked Questions

    Q: Does the 3300/20 support hot-swap replacement while the rack is powered?

    A: No. The 3300/20 does not support hot-swapping. Rack power must be removed before removing or inserting the module to prevent damage to the backplane interface and internal relay circuitry.

    Q: What is the required gap voltage for the 3300/20-12 configuration?

    A: For the 200 mV/mil scaling, the standard static gap voltage should be set to -10 VDC relative to the common reference to ensure the dynamic vibration signal remains within the linear range of the probe.

    Q: Is the spare part 135322-01 pre-configured for the -12-01 options?

    A: No. The 135322-01 is a bare main circuit board. It requires manual configuration of jumper settings and EPROM insertion to match the specific suffix codes of the original 3300/20 unit.


    Field Installation Guidelines

    Install the module into the 3300 rack by aligning the card guides and applying even pressure until the front panel mates with the backplane connector. Ensure the chassis ground lug is securely fastened to the panel earth. When wiring the transducer inputs, use shielded twisted pair cable. Terminate the shield drain wire directly to the ground terminal on the I/O module block; do not connect the shield at the probe end to avoid ground loops. Verify the gap voltage at the probe termination point prior to energizing the system.

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