Proximitor doblado Nevada 3500/42M-A09-B00 - contactor,cortacircuitos,sensor,Codificador,SOCIEDAD ANÓNIMA,Convertidor

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Proximitor doblado Nevada 3500/42M-A09-B00

 Bently Nevada 3500/42M-A09-B00 Proximitor/Seismic Monitor (Dynamic Data Acquisition Module)

Bently Nevada 3500/42M-A09-B00 Proximitor/Seismic Monitor (Dynamic Data Acquisition Module)

Marca: Bently Nevada (Baker Hughes), part of the 3500 Series TSI Machinery Protection System. Official Name: Proximitor/Seismic Monitor. Base Order Part Number: 143694-01. It is a 4-channel programmable card supporting both protection alarming and dynamic waveform acquisition, serving as the core monitoring card for steam turbine units.

  1. Explicación del código del modelo: 3500/42M-A09-B00

3500: 3500 TSI Machinery Protection System

/42METRO: 4-channel Proximitor/Seismic Monitor card. el sufijo “METRO” means dynamic waveform acquisition is supported. The legacy 3500/42 does not support dynamic data acquisition.

A09: Segment A = Sensor Input Option. 09 = Supports both Proximitor (Eddy Current) and Seismic sensors (velocity / aceleración).

B00: Segment B = Certification Option. 00 = Without CSA NRTL/C certification; B01 is the version with CSA certification.

Distinction Notes

A01: Eddy current input only; A02: Seismic sensor input only; A09 hybrid type can connect to 3300XL eddy current probes for shaft vibration / axial displacement measurement, and also piezoelectric velocity sensors for bearing housing vibration measurement.

3500/40METRO: Speed and keyphase only; 3500/45: Temperature card; 3500/42M is the primary monitoring card for vibration and displacement.

  1. Especificaciones técnicas básicas
ArtículoEspecificación
Número de canales4 canales independientes. Channels are configured in pairs (1&2 as one group, 3&4 as another group). Each group can be set for one measurement type.
Sensor Input (A09)Eddy current Proximitor (3300XL series) + Seismic sensors (velocity / aceleración)
Measurable ParametersRadial shaft vibration, axial thrust displacement, differential expansion, eccentricity, REBAM, bearing housing velocity/acceleration, shaft absolute vibration, CAA (Circular Acceptance Area)
Signal Frequency Rangecorrientes de Foucault: 10Hz~10kHz; Seismic:1Hz~10kHz
Static Measurement Accuracy±0,5% FS; Dynamic waveform acquisition for System1 spectrum analysis
Configuración de alarmaAlert warning available per channel; Each group supports 2 Danger trip setpoints to drive hardwired protection relays via 3500/33 card
Temperatura de funcionamiento-30℃~+65℃ (inside cabinet)
Consumo de energíaMax 10W, powered by rack backplane
IndicadoresDE ACUERDO, TX/RX backplane communication LEDs, independent status LED for each of 4 canales
SILThe complete system meets SIL2 (subject to full loop assessment); Compliant with API670 machinery protection standard
InstalaciónFull-height card, fits any monitoring slot in 3500 estante; intercambiable en caliente (interlock must be removed before operation)

III. Funciones principales

  1. Paired channel configuration: Channels 1&2 can be configured for shaft vibration while channels 3&4 for bearing housing vibration. The same card can mix eddy current and seismic sensors.
  2. Static protection measurement: Calculate vibration amplitude and displacement values in real time, compare with setpoints to trigger Alert / Danger alarms, and send signals to 3500/33 relay card for hardwired unit trip protection.
  3. Dynamic waveform acquisition (core feature of M version): Capture raw vibration waveforms, 1X/2X amplitude and phase, upload to System1 for spectrum and orbit analysis to diagnose faults such as rotor unbalance, misalignment and rub.
  4. Sensor self-diagnosis: Detect probe open circuit, short circuit and excessive gap deviation; sensor faults are directly logged into rack event history.
  5. REBAM® Bearing Condition Monitoring: Bently patented algorithm to evaluate bearing oil film stability.
  6. Event logging: Alarms and sensor faults are recorded with timestamps, which can be uploaded to DCS through 3500/92 communication gateway card.
  7. Escenarios de aplicación típicos

Steam turbines, centrifugal compressors, axial fans, motores grandes; TSI systems in thermal power, coal chemical and oil & gas refining industries.

Eddy current channels: Rotor radial vibration, axial displacement, differential expansion

Seismic channels: Bearing housing casing vibration (velocity / aceleración)

  1. Instalación & Configuration Guidelines
  2. Alambrado: Eddy current probe extension cable + proximitor. Cable length must be matched (3300XL system uses fixed-length cables, must not be arbitrarily cut). Seismic sensor shielded cable with single-point grounding.
  3. Configuration Procedure

Connect rack via Rack Configuration software and add 3500/42M card.

Channel grouping: Set channel1/2 to eddy current radial vibration; channel3/4 to seismic velocity.

Set sensor sensitivity, measurement range, Alert warning value and Danger trip setpoint.

Enable dynamic acquisition and configure waveform sampling parameters.

Download configuration to rack; confirm channel OK LED steady on, perform probe gap verification and simulate alarms to test relay operation.

  1. Puesta en servicio: Verify eddy current probe gap voltage (around -10V DC); calibrate seismic sensor sensitivity.
  2. Common Troubleshooting Checklist
  3. OK LED flashing: Desaparecido / invalid card configuration, re-download rack configuration.
  4. Channel reports sensor fault: Abnormal proximitor power supply, open/short circuit of cable, worn probe or out-of-range gap; check gap voltage output from proximitor.
  5. Fluctuating vibration readings: Multi-point grounding of proximitor shield, cable routed near power cables causing interference; loose probe mounting.
  6. Normal static value but no dynamic waveform in System1: Dynamic acquisition not enabled in configuration, or missing 3500/22M transient interface module.
  7. Danger alarm fails to trigger relay: Verify alarm voting logic and configuration mapping between 3500/33 relay card.

VII. Comparación de series & Selección de modelo

ModeloTipo de entradaDynamic AcquisitionProceso de dar un título
3500/42M-A09-B00Hybrid Eddy Current + SeismicApoyadoNo CSA
3500/42M-A09-B01Hybrid Eddy Current + SeismicApoyadoWith CSA
3500/42M-A01-B00Eddy Current OnlyApoyadoNo CSA
3500/42-A01-B00Eddy Current OnlyNo dynamic acquisitionNo CSA (legado, eliminado gradualmente)

Metrix ST5484E-123-434-22 Seismic Velocity Vibration Transmitter

Marca: Metrix (EE.UU). ST5484E is an integrated 2-wire loop-powered velocity vibration transmitter. It adopts built-in piezoelectric accelerometer core, integrating circuit and true RMS processing, directly outputs 4–20mA signal for bearing housing casing vibration monitoring. Different from Bently eddy current probes which measure shaft vibration.

  1. Explicación del código del modelo: ST5484E-123-434-22

Model format: ST5484E AAA BBCC EF

123: Código de rango, 2.0 in/s (50.8 mm/s RMS), 4mA=0; 20mA=full scale 50.8mm/s

434: Filter, mounting thread, material de la vivienda

4: Filter option

3: Rosca de montaje 1/4-28 UNF stud mounting

4: 316 stainless steel housing

22: Conexión eléctrica + certificación a prueba de explosiones

2: 2-terminal block wiring

2: Ex ia IIC T4 intrinsically safe version

Distinction Notes

ST5484E: Casing vibration velocity transmitter; ST5491E with local display; SW5484E with built-in relay vibration switch.

  1. Especificaciones técnicas básicas
ArtículoEspecificación
Principio de mediciónPiezoelectric acceleration + integración, outputs vibration velocity RMS value
Rango de medición0~2.0 in/s (0~50.8 mm/s RMS)
Señal de salida2-wire 4–20mA, loop powered; Metrix patented IPT non-polar wiring
Voltaje de suministro11~29.6 VDC (24VDC recommended)
Respuesta de frecuencia2Hz ~ 1kHz, suitable for casing vibration monitoring of pumps, fans, motors and compressors
Material de la carcasa316 acero inoxidable
Instalación1/4-28 UNF stud, directly fastened onto bearing housing surface
Explosion-proof RatingATEX/IECEx Ex ia IIC T4 Ga (intrínsecamente seguro, safety barrier required)
Protección de ingresoIP67
Temperatura de funcionamiento-40℃~+85℃
Aislamiento500Vrms isolation between loop and housing
PesoAprox.. 170gramo
CaracterísticasFactory calibrated, no zero/range potentiometer for field adjustment; 4-wire version optional with raw acceleration dynamic output

III. Funciones principales

  1. Integrated RMS processing: Built-in integration and true RMS circuit, directly output 4-20mA proportional to vibration velocity. Can be connected to DCS/PLC directly without extra proximitor.
  2. IPT non-polar loop: Wiring without positive/negative polarity distinction to reduce field wiring errors.
  3. Intrinsically safe explosion protection: Zona 0 intrínsecamente seguro, applicable for hazardous areas in chemical and petrochemical industries.
  4. Optional narrowband filter to suppress high-frequency interference, fit for rolling bearing equipment monitoring.
  5. Single-direction measurement: Measures along sensor axial direction; align monitoring direction (horizontal / vertical) during installation.
  6. Escenarios de aplicación típicos

Bearing housing casing vibration monitoring for centrifugal pumps, fans, motores, gearboxes and small compressors; petroquímico, coal chemical and power plants.

>Comparison with Bently 3500/42M: ST5484E outputs standard 4-20mA to DCS and cannot provide raw dynamic waveform for spectrum analysis. Bently 42M can capture raw waveforms for fault diagnosis.

  1. Instalación & Directrices de puesta en marcha
  2. Instalación: Stud must be tightened on flat metal surface of bearing housing, polish and remove rust on contact surface. Sensor axial direction must align with measured vibration direction. Avoid installation on thin wall or stiffener (resonance interference).
  3. Alambrado: 2-wire intrinsically safe loop, intrinsically safe safety barrier is mandatory. Shielded cable single-point grounding; do not route together with power cables in the same cable tray.
  4. Loop calculation: Maximum allowable loop resistance depends on supply voltage. Max loop resistance ≈650Ω under 24VDC supply.
  5. Calibración: Full-unit calibration on vibration shaker table. No zero or span adjustment knobs inside sensor; range cannot be modified on site.
  6. Configuración: Set in DCS: 4mA=0 mm/s, 20mA=50.8 mm/s, configure high vibration alarm and high-high interlock setpoints.
  7. Common Troubleshooting Checklist
  8. Fixed 4mA output: Broken loop, faulty safety barrier, loss of sensor power supply; damaged internal sensing element.
  9. Fixed 20mA output: Short circuit in loop, damaged internal circuit of sensor, vibration exceeds full scale.
  10. Fluctuating readings: Loose mounting, resonance on contact surface; multi-point grounding of shield; cable interference from inverter power lines.
  11. Low vibration readings: Wrong installation direction; paint/gasket on contact surface leading to weakened vibration transmission.

VII. Comparación de series & Selección de modelo

ModeloRangoAlambradoA prueba de explosionesDynamic Output
ST5484E-123-434-2250.8mm/s RMS2-core terminalIntrinsically safe Ex iaNo (4-20mA only)
ST5484E-124125mm/sLead wireOpcionalNo
ST5484E 4-wire versionOn demand4-centroOpcionalWith raw acceleration dynamic signal
ST5491ESame as ST5484EOpcionalOpcionalWith local digital display

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