• PR6423/002-130 CON021 EPRO Eddy Current Sensor
  • PR6423/002-130 CON021 EPRO Eddy Current Sensor
  • PR6423/002-130 CON021 EPRO Eddy Current Sensor
  • PR6423/002-130 CON021 EPRO Eddy Current Sensor
  • video

PR6423/002-130 CON021 EPRO Eddy Current Sensor

  • Emerson
  • USA
  • 2024
  • In Stock
The model code refers to the Emerson EPRO PR6423/002-130 Eddy Current Sensor paired with the CON021 Signal Converter Module. EPRO PR6423/002-130 CON021(Eddy Current Sensor) is manufactured by Emerson Process Management (originally under the EPRO brand) and is used for non-contact machine health measurements.

EMERSON PR6423/002-130 CON021 Technical Details

PR6423/002-130 Sensor Probe

Eddy Current Sensor Probe Size: 8 mm diameter.

Eddy Current Sensor Linear Range: 2 mm (80 mils).

Eddy Current Sensor Sensitivity: 8 V/mm (203.2 mV/mil).

Eddy Current Sensor Temperature: -35 deg C to +180 deg C.

Eddy Current Sensor Connection: 1-meter integrated cable with a LEMO connector.

CON021 Signal Converter

EMERSON Eddy Current Sensor Output Signal: -4V to -20V DC negative voltage.

EMERSON Eddy Current Sensor Frequency: 0 Hz to 20,000 Hz.

EMERSON Eddy Current Sensor Power Supply: -23V to -32V DC.

Eddy Current Sensor Mounting: IP20 aluminum housing for DIN rail installation.

If you want to more details about EMERSON Eddy Current Sensor,please contact me without hesitate.Email:sales@sparecenter.com

EPRO PR6423/002-130 CON021 Static Calibration Test

1. EMERSON Eddy Current Sensor Setup

Target: Standard 4140 carbon steel disk in a micrometer calibrator.

Power: Supply -24V DC to the CON021 converter.

Output: Connect a digital multimeter to measure the CON021 output voltage.

2. EMERSON Eddy Current Sensor Test Procedure

Zeroing: Bring the probe tip to touch the target disk. Zero the micrometer.

Step Test: Back off the probe from 0.50 mm to 2.50 mm in 0.20 mm increments.

Voltage Data: Record the output voltage at each step.

3. EMERSON PR6423/002-130 CON021 Core Reference Values

0.50 mm Gap-4.00V DC

1.50 mm Gap-12.00V DC

2.50 mm Gap-20.00V DC

4. EPRO PR6423/002-130 CON021 Pass Criteria

Sensitivity: Must be -8.00 V/mm (tolerance ±5%).

Linearity: Maximum deviation must not exceed ±0.025 mm.


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EPRO PR6423/002-130 CON021 FAQ


Q1: How do I correctly set up and power the EPRO PR6423/002-130 CON021 system during a field installation?
A: Mount the probe onto the machine bracket and run its integrated cable to the local junction box. Wire the converter inside the cabinet using a stable industrial negative -24V DC power supply to activate the complete PR6423/002-130 CON021 loop. Connect the sensor LEMO plug to the driver input terminal, and always measure the raw DC voltage across the output terminals with a multimeter before routing the PR6423/002-130 CON021 EPRO signal to your DCS or PLC.
Q2: What are the exact physical gap distances and voltage readouts needed to calibrate the EPRO PR6423/002-130 CON021?
A: When performing a static calibration check on a standard 4140 steel target, look for these precise millivolt check points on your EPRO PR6423/002-130 CON021 loop:
  • 0.50 mm gap: The EMERSON Eddy Current Sensor system must output -4.00V DC (the linear starting point).

  • 1.50 mm gap: The PR6423/002-130 CON021 EPRO system must output -12.00V DC (the ideal physical installation midpoint).

  • 2.50 mm gap: The PR6423/002-130 CON021 EPRO system must output -20.00V DC (the linear endpoint).

Every 0.10 mm of physical movement should change the PR6423/002-130 CON021 output voltage by exactly -0.80V.
Q3: Why is my PR6423/002-130 CON021 EPRO assembly showing a flat -21V DC or an unstable 0V output signal?
A: A flat -21V DC output (saturation) on the PR6423/002-130 CON021 assembly means the target steel is completely out of the sensor's physical range, or there is an open circuit in the probe cable. If the PR6423/002-130 CON021 EPRO reads a constant 0V, verify that the -24V DC power supply wires are not reversed on the terminal block, or check for a dead short circuit inside the LEMO coaxial connector.
Q4: Can I use a random extension cable between the probe and driver within the PR6423/002-130 CON021 EPRO configuration?
A: No. The components in the PR6423/002-130 CON021 EPRO configuration form a tuned radio frequency circuit that requires a specific total system length (typically 5 meters or 9 meters total). If you need to span a longer distance, you must use a genuine EPRO matching extension cable. Mixing unmatched lengths or third-party cables will ruin the calibration impedance, making the PR6423/002-130 CON021 readings highly inaccurate.


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PR6423/002-130 CON021

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