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Emerson EPRO PR6424/010-010 Eddy Current Displacement and Vibration Sensor

Brand/Manufacturer: Emerson Epro

Order Number: PR6424/010-010

Type: Proximity Sensors

Country of Origin: France

Condition: Original Brand

Lead Time: Available in stock

Payment Term: 100% TT In Advance

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Description

The Emerson EPRO PR6424/010-010, also cataloged as the PR6424 Eddy Current Displacement and Vibration Sensor, operates as a dedicated hardware component for non-contact shaft dynamics measurement within EPRO machine condition monitoring networks. This 16 mm probe tracks micro-level radial vibration, axial displacement, and eccentricity variations across high-speed rotating shafts without inducing mechanical friction or wear.

Hardware Specifications

Parameter Specification
Model PR6424/010-010
Brand Emerson (EPRO Portfolio)
Origin Germany
Weight 0.58 kg net hardware mass profile
Dimensions 240 x 230 x 40 mm
Operating Temp -40 to +120 deg C (High-temperature tip variant up to +380 deg C)
Power Consumption Sized by peripheral converter loops
Product Type Proximity Sensors
Probe Diameter 16 mm
Linear Measurement Range Typical: +/- 2 mm; Extended variants up to 10 mm
Sensitivity Profile 4 V/mm nominal scaling factor
Linearity Deviation Less than or equal to +/- 1.5%
Frequency Bandwidth 0 to 15 kHz response window
Measurement Accuracy Less than or equal to 1.0% (with compatible signal converter)
Target Material Ferromagnetic steel (e.g., 42CrMo4)
Ingress Protection IP67 sealed assembly housing
Mechanical Interface Stainless steel threaded body with PEEK sensing tip

Process Control and TSI Monitoring Features

  • Eddy-Current Probe Scaling and Rotor Dynamics: The PR6424 series utilizes high-frequency electromagnetic induction to track the distance between the sensor tip and the conductive shaft surface. Changes in this gap are processed by a compatible EPRO signal converter, which maps impedance shifts into linear voltage curves. This enables high-fidelity monitoring of rotor dynamics, including sub-synchronous vibration, oil whirl, and axial thrust movement.
  • Hazardous Area and System Compliance: When integrated into an API 670 compliant monitoring chain with certified EPRO preamplifiers, the PR6424/010-010 provides intrinsic safety features suitable for deployment in ATEX/IECEx hazardous zones. The stainless steel housing and PEEK sensor tip are designed to maintain structural integrity under extreme vibration (up to 40 g) and thermal stress in critical turbomachinery applications.

Frequently Asked Questions

Q: Does the PR6424/010-010 require an external signal converter for operation?

A: Yes. The PR6424 is a passive induction device that must be wired into a matched EPRO signal converter (e.g., CON0xx series). The converter supplies the high-frequency carrier signal and translates the raw impedance variation into a usable voltage output for control system integration.

Q: How does the target material influence the factory-calibrated sensitivity?

A: The probe is calibrated for standard ferromagnetic steel (42CrMo4). Using targets with different magnetic properties (e.g., aluminum, stainless steel) significantly alters the reluctance of the magnetic circuit, which shifts the sensitivity away from the nominal 4 V/mm and requires a complete recalibration of the signal conditioning loop.

Field Installation Guidelines

  • Chassis Layout Alignment, Clearance Constraints, and Mechanical Seating: Install the probe into the threaded machine bore, carefully adjusting the depth until the nominal air gap is approximately 2.7 mm relative to the shaft target. Secure the hardware using the provided locknuts, ensuring the probe remains centered within its linear electrical slope to maintain measurement accuracy during machine heat-up.
  • Conductor Separation, Wireway Constraints, and Shield Grounding: Route extension leads (in 4 m to 10 m lengths) through grounded, armored conduits to minimize electromagnetic interference (EMI). The cable shield must be terminated at the remote driver enclosure ground lug only; keep the sensor-side shield floating to eliminate parasitic ground loops that could distort the low-voltage signals.
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