Bently Nevada 190065-00-01-03-01-01

¥999.00

The Bently Nevada 190065-00-01-03-01-01 is a 4-channel high-temperature accelerometer input module for the Bently Nevada 3500 series monitoring system, designed for precision vibration measurement in high-temperature rotating machinery applications. This module provides 4 independent accelerometer input channels with signal conditioning, frequency filtering, and integration for displacement, velocity, or acceleration outputs. The Bently Nevada 190065-00-01-03-01-01 is optimized for gas turbine casing vibration monitoring, steam turbine bearing housing vibration, and high-temperature compressor applications where standard sensors cannot operate. Each channel includes IEPE constant current excitation, programmable band-pass filtering, and alarm/trip setpoints. The module communicates via the 3500 rack backplane with configurable scan rates.

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Description

Parameters

Parameter Specification
Input Channels 4, independent (IEPE accelerometer)
Sensor Type IEPE accelerometers (2–20mA constant current, 18–30VDC compliance)
Input Range ±5V (standard), ±10V (extended)
Frequency Response 0.5Hz–20kHz (±5%)
Integration Programmable (displacement, velocity, acceleration)
Filtering Low-pass: 1kHz, 5kHz, 10kHz, 20kHz; High-pass: 0.1Hz, 0.5Hz, 1Hz
Output Signal 0–10V DC (buffered), 4–20mA (scaled)
Alarm/Trip Setpoints 4 per channel (alert/danger, programmable)
Accuracy ±0.5% FS at 25°C; ±1% over -40°C to +70°C
Temperature Range (Sensor) Up to +250°C (with compatible sensor)
Diagnostics Sensor open/short detection, bias voltage monitoring, cable integrity
Isolation 500VDC (input-to-backplane)
Power Supply 5VDC (backplane), 250mA; 24VDC (sensor excitation), 200mA
Operating Temp -40°C to +70°C
Mounting 3500 series rack (Eurocard)
Certifications CSA, ATEX, SIL 2 capable

Advantages & Features

  • High-Temperature Capability – The Bently Nevada 190065-00-01-03-01-01 supports accelerometers rated up to +250°C, ideal for gas turbine casings and steam turbine bearing housings.

  • High Channel Density – 4 channels in a single slot, reducing rack space for large monitoring systems.

  • Flexible Integration – Programmable output for displacement, velocity, or acceleration to suit different machine types.

  • Advanced Filtering – Selectable low-pass and high-pass filters isolate specific frequency bands for fault diagnosis.

  • Comprehensive Diagnostics – Continuous sensor bias voltage monitoring and open/short detection ensure signal integrity.

  • SIL 2 Capable – Suitable for safety-critical vibration protection with appropriate voting.


Application Cases

  • Gas Turbine Casing Vibration – Monitors high-temperature casing vibration on gas turbines using high-temp accelerometers.

  • Steam Turbine Bearing Housing – Measures bearing housing vibration at elevated temperatures.

  • Compressor High-Temperature Monitoring – Tracks vibration on high-temperature compressor stages.

  • Exhaust Fan Monitoring – Monitors vibration on high-temperature exhaust fans and blowers.


Competitor Comparison

Feature Bently Nevada 190065-00 GE DS3860HSAA Vibro-Meter VM600 Rockwell XM-120
Channels 4 8 4 1
Sensor Support IEPE (high-temp) Voltage only IEPE IEPE
Max Sensor Temp +250°C N/A +250°C +150°C
Integration Yes (prog.) No Yes No
Frequency Response 0.5Hz–20kHz 0–10kHz 0.5Hz–20kHz 0–5kHz
SIL Rating SIL 2 SIL 2 SIL 2 SIL 1
Integration Bently 3500 GE Mark VIe Vibro-Meter Rockwell Logix

The Bently Nevada 190065-00-01-03-01-01 is specifically optimized for high-temperature accelerometer applications with 4-channel density, making it ideal for gas turbine and steam turbine vibration monitoring.


Selection Suggestions

  • Choose for Bently Nevada 3500 series systems requiring 4-channel high-temperature accelerometer monitoring for gas turbines, steam turbines, or compressors.

  • Ensure the accelerometer is compatible with high-temperature operation (up to +250°C).

  • For SIL 2 applications, use with voting logic (2-out-of-3) and proof-testing every 24 months.

  • Configure integration based on application: displacement (µm) for bearing vibration, velocity (mm/s) for casing vibration.

  • Pair with compatible high-temperature IEPE accelerometers (e.g., Bently Nevada 330500 series).


Precautions

  • Sensor Compatibility – The Bently Nevada 190065-00-01-03-01-01 is designed for IEPE accelerometers. Ensure the sensor has 2–20mA constant current capability.

  • Cable Temperature Rating – Use cables rated for the same temperature as the sensor. Standard cables degrade above +150°C.

  • Grounding – Proper grounding is critical to prevent noise pickup. Connect sensor cable shields to the module common terminal at the module end only.

  • Filter Selection – For high-temperature applications, use the 0.5Hz high-pass filter to remove DC offset. Low-pass filter should be set based on machine speed (10kHz for high-speed turbines, 1kHz for slow-speed equipment).

  • Bias Voltage Monitoring – The Bently Nevada 190065-00-01-03-01-01 monitors sensor bias voltage (typically 10–12V). A deviation >10% indicates a sensor or cable fault.

  • Calibration – Factory calibration valid for 24 months. Recalibrate using a certified shaker table or signal calibrator.

  • ESD Handling – Use ESD-safe practices when handling the module. High-temperature accelerometer inputs are sensitive to electrostatic discharge.

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