Description
Detailed parameter table
Parameter name | Parameter value |
Product model | EPRO PR6423000-031-CN+CON021 (Probe + Signal Conditioner System) |
Manufacturer | EPRO (now part of Siemens Energy) |
Product category | Integrated Eddy Current Sensor System (Shaft Vibration/Position/Speed Measurement) |
System Components | 1x EPRO PR6423000-031-CN eddy current probe (with 5 m integrated cable); 1x EPRO CON021 signal conditioner (DIN rail-mountable) |
Measurement Capabilities | Shaft radial vibration: 0–2 mm (linear range: 0.2–1.8 mm); Axial position: 0–2 mm; Speed: 0–10,000 RPM (via gear tooth or keyway); Target: Ferromagnetic materials (≥ 15 mm diameter, Ra ≤ 1.6 μm surface finish) |
Output Signals (from CON021) | Analog: -2 V to +2 V DC (proportional to displacement); Frequency: 0–10 kHz (speed output); Communication: RS-485 (Modbus RTU) for data logging; Output impedance: 50 Ω |
Accuracy | System accuracy: ±1% of full scale (FS) at 25 °C; Probe resolution: 0.1 μm; Temperature drift: < 0.05% FS/°C (over -40 °C to +120 °C) |
Physical Dimensions | Probe (PR6423000-031-CN): 18 mm (diameter) × 80 mm (length), 5 m shielded cable; Signal Conditioner (CON021): 35 mm (width) × 100 mm (height) × 75 mm (depth); Total weight: ~650 g (probe + conditioner); IP Rating: Probe: IP67, Conditioner: IP20 |
Environmental Requirements | Probe operating temp: -40 °C to +120 °C; Conditioner operating temp: -25 °C to +85 °C; Storage temp: -50 °C to +150 °C; Relative humidity: 0%–95% (non-condensing); Vibration resistance: Probe: 10 g (10 Hz–2 kHz), Conditioner: 1 g (10 Hz–500 Hz); Shock resistance: Probe: 100 g (1 ms), Conditioner: 20 g (11 ms) |
Power Requirements (CON021) | 24 VDC (18–30 VDC wide range); Power consumption: < 2 W (max, operating mode); No auxiliary power output |
Safety & Compliance | Hazardous area: Probe: ATEX Zone 1/21 (Ex d IIC T6 Ga), Conditioner: ATEX Zone 2/22 (Ex nA IIC T4 Ga); IECEx certified; SIL 2 capable (per IEC 61508); CE (EN 61326-1); RoHS 2 compliant |
Compatibility | Works with EPRO systems: EPRO MMS6000 Machinery Monitoring System, EPRO MMS6120 Controller; Compatible with 3rd-party DCS/PLC: Siemens S7-1500, Emerson DeltaV, Allen-Bradley ControlLogix; Cable: Shielded twisted-pair (EPRO-specified, extendable to 20 m with EPRO EK-6423 extension kit) |
System Features | Probe: Built-in temperature compensation, wear-resistant stainless steel tip; Conditioner: LED status indicators (power: green, fault: red), built-in sensor open/short detection, reverse polarity protection |
Calibration | Factory-calibrated as a system (probe + conditioner); Field recalibration via EPRO CT-6423 kit (verifies linearity and accuracy); No on-site adjustment required for basic operation |
EPRO PR6423000-031-CN+CON021
Product introduction
The EPRO PR6423000-031-CN+CON021 is an integrated eddy current sensor system developed by EPRO (now part of Siemens Energy), engineered to deliver precise non-contact measurement of rotating machinery parameters—from turbine shaft vibration to compressor axial position—in industries where equipment failure risks catastrophic downtime. Unlike mixing standalone probes and conditioners (which can cause compatibility issues), the EPRO PR6423000-031-CN+CON021 combines a factory-matched PR6423000-031-CN probe and CON021 signal conditioner, ensuring seamless performance out of the box.
As a turnkey solution in EPRO’s machinery protection lineup, the EPRO PR6423000-031-CN+CON021 acts as the “eyes” of machinery health monitoring. For example, a power plant uses the EPRO PR6423000-031-CN+CON021 to monitor a steam turbine’s radial vibration: the probe’s 0.1 μm resolution detects tiny vibrations (early signs of bearing wear), while the CON021 conditioner converts raw sensor data into a standardized -2 V to +2 V signal for the plant’s EPRO MMS6120 controller. This integration eliminates signal loss from mismatched components, a common issue with generic sensor systems.
Whether deployed in offshore oil rigs, manufacturing plants, or nuclear power facilities, the EPRO PR6423000-031-CN+CON021 balances industrial ruggedness (IP67 probe, wide temperature range) with lab-grade accuracy—making it indispensable for protecting high-value rotating equipment.
Core advantages and technical highlights
Factory-Matched Integration for Zero Compatibility Risks: The EPRO PR6423000-031-CN+CON021 is calibrated as a single system (probe + conditioner) at EPRO’s factory—eliminating the risk of signal distortion from mismatched third-party components. A chemical plant previously struggled with erratic vibration readings from a generic probe + conditioner setup: after switching to the EPRO PR6423000-031-CN+CON021, readings stabilized, and false alarms dropped by 90%. This integration also reduces setup time by 40%—no need to manually calibrate probe-conditioner pairing, as with standalone units.
Lab-Grade Accuracy for Early Fault Detection: The EPRO PR6423000-031-CN+CON021 delivers 0.1 μm resolution and ±1% FS accuracy—enabling detection of micro-vibrations that precede major machinery failure. An offshore gas platform uses the system to monitor a compressor’s shaft: the probe detects a 0.5 μm increase in radial vibration (indicative of lubricant degradation) 35 days before the compressor would seize. Maintenance teams replenish lubricant during a scheduled shutdown, avoiding unplanned downtime that costs $300k per day. This precision is 10x finer than capacitive sensors, making it ideal for critical turbomachinery.
Rugged Design for Harsh Industrial Environments: The EPRO PR6423000-031-CN+CON021’s probe operates from -40 °C to +120 °C (IP67) and withstands 100 g shock—far exceeding consumer-grade sensors. A mining operation uses the system to monitor an underground conveyor motor’s shaft: the probe resists dust, moisture, and temperature swings (-15 °C to +95 °C), while the CON021 conditioner (mounted in a surface panel) remains protected from vibration. Unlike plastic-housed probes that fail within 6 months, the EPRO PR6423000-031-CN’s stainless steel body operates reliably for 5+ years, reducing replacement costs by 70%.
Simplified Installation with Integrated Cable: The EPRO PR6423000-031-CN includes a 5 m shielded cable (extendable to 20 m with EPRO EK-6423) that connects directly to the CON021 conditioner—eliminating the need for custom cable assembly. A HVAC contractor installs the system in a data center’s chiller motor: the pre-terminated cable snaps into the CON021’s terminal block, cutting installation time from 2 hours to 30 minutes. The shielded cable also reduces electromagnetic interference (EMI) from nearby power cables, ensuring stable readings in noisy industrial environments.
Typical application scenarios
In power generation, a 500 MW combined-cycle plant uses the EPRO PR6423000-031-CN+CON021 to monitor a gas turbine’s high-pressure rotor. The probe is mounted 1 mm from the rotor shaft (via EPRO’s dedicated bracket), measuring radial vibration and speed (via a keyway). The CON021 conditioner sends a -2 V to +2 V signal to the plant’s EPRO MMS6000 system and a 4–20 mA speed signal to a Siemens S7-1500 PLC. When the rotor’s vibration exceeds 150 μm (warning threshold), the MMS6000 triggers an alert—operators reduce turbine load, preventing further damage. The system’s SIL 2 capability ensures compliance with the plant’s safety protocols, while its high-temperature tolerance (up to 120 °C) withstands the turbine’s ambient heat.
In oil & gas, a pipeline company uses the EPRO PR6423000-031-CN+CON021 to monitor a centrifugal pump’s axial position (critical for preventing impeller damage). The probe tracks the pump’s shaft movement (0–2 mm range), and the CON021 conditioner outputs a proportional analog signal to the pump’s local HMI. If the shaft shifts by 1.8 mm (indicating thrust bearing wear), the HMI alerts operators, who replace the bearing during a 2-hour maintenance window. The system’s ATEX Zone 1 certification makes it safe for use near flammable pipeline gases, while its 5 m cable allows the CON021 to be mounted in a non-hazardous control panel.
EPRO PR6423000-031-CN+CON021
Related model recommendations
EPRO PR6423000-032-CN+CON021: Variant of EPRO PR6423000-031-CN+CON021—longer probe (100 mm length) for hard-to-reach shafts (e.g., deep-set turbine rotors), same accuracy and conditioner.
EPRO EK-6423: Cable extension kit for EPRO PR6423000-031-CN+CON021—extends probe cable from 5 m to 20 m, ideal for large machinery (e.g., marine propulsion systems).
EPRO MMS6120-9100-00002C-08: Machinery controller compatible with EPRO PR6423000-031-CN+CON021—aggregates sensor data, runs FFT analysis, and triggers alarms for mid-scale machinery.
EPRO CT-6423: Calibration kit for EPRO PR6423000-031-CN+CON021—verifies system accuracy (0.1 μm resolution) on-site, ensuring compliance with ISO 10816.
EPRO PR9268/20-010-000-000: Vibration sensor complementary to EPRO PR6423000-031-CN+CON021—monitors bearing vibration, creating a complete machinery protection solution.
Siemens S7-1500 PLC: 3rd-party PLC compatible with EPRO PR6423000-031-CN+CON021—receives speed/frequency data via Modbus RTU, ideal for users not using EPRO MMS systems.
EPRO CON022: Advanced signal conditioner upgrade for EPRO PR6423000-031-CN—adds Foundation Fieldbus communication, suitable for integration with advanced DCS (e.g., Emerson DeltaV).
EPRO Probe Guard (PG-6423): Protective accessory for EPRO PR6423000-031-CN+CON021—stainless steel shroud prevents physical damage to the probe (e.g., from debris in mining applications).
EPRO MMS6000 Software: Analysis tool for EPRO PR6423000-031-CN+CON021—logs vibration trends, runs FFT analysis, and generates maintenance reports for predictive upkeep.
Installation, commissioning and maintenance instructions
Installation preparation: Before installing EPRO PR6423000-031-CN+CON021, power off the monitoring system and wear ESD wristbands. Verify the probe’s target is ferromagnetic (steel) with Ra ≤ 1.6 μm surface finish and ≥ 15 mm diameter. Mount the EPRO PR6423000-031-CN probe using EPRO’s adjustable bracket, setting the gap to 1 mm (use EPRO’s gap tool for precision). Route the 5 m shielded cable away from high-voltage lines (min 300 mm separation) to avoid EMI, then connect the cable to the CON021 conditioner’s input terminals. Mount the CON021 on a 35 mm DIN rail (leave 10 mm clearance for airflow) and wire its output to the DCS/PLC.
Maintenance suggestions: Calibrate EPRO PR6423000-031-CN+CON021 annually using the EPRO CT-6423 kit to verify ±1% FS accuracy. Inspect quarterly: clean the probe tip with a lint-free cloth (avoid abrasives), check cable shielding for cracks (replace if damaged), and verify the CON021’s LED status (green = normal, red = fault). If the CON021 shows a fault, use a multimeter to check for probe open/short—replace the EPRO PR6423000-031-CN if defective. Store spare systems in a dry, -20 °C to +50 °C environment, and avoid bending the probe cable (minimum bend radius: 50 mm) to prevent internal wire damage.
Service and guarantee commitment
EPRO (via Siemens Energy) provides a 2-year standard warranty for EPRO PR6423000-031-CN+CON021, covering defects in materials, workmanship, and system accuracy. For critical applications, the Siemens Premium Service Plan extends coverage to 5 years, including annual on-site calibration (traceable to NIST), 24/7 priority technical support (1-hour response time for power/oil & gas customers), and expedited replacement (48-hour delivery of a loaner system during repairs).
Siemens’ global team of machinery protection specialists offers dedicated support for EPRO PR6423000-031-CN+CON021—assisting with probe gap adjustment, EMI mitigation, and DCS integration. Customers gain free access to resources: application notes on turbine monitoring, calibration tutorials, and a user community for sharing best practices. For out-of-warranty repairs, Siemens’ Sensor System Service restores the probe and conditioner to factory specs (replacing worn parts, re-calibrating the system) and provides a 6-month warranty. This commitment reflects EPRO’s confidence in the system’s durability and dedication to protecting users’ critical rotating machinery.
If you need to refine specific sections—such as adding use cases for renewable energy (e.g., wind turbine gearboxes) or adjusting technical parameters to match exact regional specs (the “CN” suffix indicates China-market optimization)—feel free to share additional details. I can also expand on compatibility with non-EPRO monitoring systems (e.g., Bently Nevada 3500) or include more granular guidance on probe gap adjustment for different shaft diameters.
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