Bently Nevada 3300/16-12-01-02-01-02-00 3300 Series XY/Gap Dual Vibration Monitor

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Category: SKU: 3300/16-12-01-02-01-02-00 Tags: ,
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Purchase authentic Bently Nevada 3300/16-12-01-02-01-02-00 XY/Gap Dual Vibration Monitors. Brand New in original factory packaging with Original Stock and Global Shipping.

Description

The Bently Nevada 3300/16-12-01-02-01-02-00, also cataloged as the 3300/16 Dual Vibration Monitors, operates as a dedicated hardware component for processing continuous radial vibration signals and tracking average shaft radial position gap within 3300 Series monitoring racks.

Suffix Breakdown & Model Matrix

OptionSpecification
3300/16Base model: XY/Gap Dual Vibration Monitor
-12Full-Scale Range Option: 0-150 um pp
-01Transducer Input Option: 3300 8 mm, 3300 XL 8 mm, or 7200 5 mm and 8 mm Proximitor Sensor (200 mV/mil)
-02Alarm Relay Option: Hermetically-sealed relays
-01Agency Approval Option: CSA / NRTL / C
-02Safety Barrier Option: Internal safety barriers
-00Trip Multiply Option: None

Hardware Specifications

ParameterSpecification
Model3300/16-12-01-02-01-02-00
BrandBently Nevada
OriginUSA
Weight8.0 kg (Shipping weight)
DimensionsStandard 3300 Rack Module Slot (Full-Height)
Operating Temp0 deg C to +65 deg C
Power Consumption1.0 W typical (Backplane bus draw)
Product TypeDual Vibration Monitors
Channel Capacity2 independent radial vibration and position channels
Scale Range0-150 um peak-to-peak (Option -12)
Sensor Input Rating200 mV/mil (7.87 V/mm)
Relay ContactsHermetically-sealed relays (Option -02)
Barrier ConfigurationInternal safety barriers included (Option -02)

Eddy-Current Probe Scaling and Rotor Dynamics Processing

The Bently Nevada 3300/16-12-01-02-01-02-00 conditions high-frequency raw AC and DC signals from dual eddy-current proximity transducers. By maintaining tight input impedance matching, the module preserves calibrated eddy-current probe scaling at 200 mV/mil across the full 0-150 um peak-to-peak range. Furthermore, the internal processing circuitry splits the incoming waveform to track dynamic vibration components alongside average DC gap voltage changes. Consequently, this precise signal separation enables accurate real-time tracking of rotor dynamics, radial shaft positioning, and structural alignment inside machine bearing housings.

Frequently Asked Questions

Q: How does the internal safety barrier option (Option -02) impact field transducer loop connections?

A: Internal barriers limit energy output to the field, which allows direct connection to Proximitor sensors installed in hazardous areas without requiring external galvano-isolated barriers.

Q: How do technicians perform gap voltage validation on this monitoring module?

A: Technicians connect a calibrated digital multimeter to the front panel coaxial test jacks to read the raw DC bias voltage directly, confirming that target -10 VDC gap settings align with the shaft position midpoint.

Field Installation Guidelines

  • First, insert the 3300/16-12-01-02-01-02-00 module into its designated slot in the 3300 system rack and tighten the rear panel retaining screws securely.
  • Next, wire the field cable conductors from the Proximitor sensor directly to the corresponding rear terminal block points.
  • Additionally, route the cable shields through the designated ground bus to maintain single-point shield isolation and eliminate cross-talk noise.
  • Finally, apply backplane power, execute channel self-tests, and verify that the front panel LED meters show stable readings under normal operating conditions.

Additional information

Weight8.00 kg
Dimensions65 × 71 × 38 mm

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