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Epro PR9600/014-000 Eddy Current Sensor

製品紹介 The Epro PR9600/014-000 Eddy Current Sensor is a high-precision non-contact measurement device designed for monitoring displacement, vibration, and shaft position in industrial ro

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Epro PR9600/014-000 Eddy Current Sensor

製品仕様

発売時期Jul 07, 2026
メーカー Epro PLC
モデル PR9600/014-000
型番 IN4073
状態100%新品
出荷港中国廈門
リードタイム1-3営業日
認証COO
配送パートナーDHL, UPS, TNT, FedEx and EMS.
保証 1年間
単価
$1,929.00
USD / ユニット
-
+
最小注文: 1 台
0.0


配送情報
一定金額以上のご注文で送料無料 $5,000
東部標準時午後3時までのご注文は当日発送いたします。
国際配送可能
Epro PR9600/014-000 Eddy Current Sensor Epro PR9600/014-000 Eddy Current Sensor Epro PR9600/014-000 Eddy Current Sensor Epro PR9600/014-000 Eddy Current Sensor

製品紹介

The Epro PR9600/014-000 Eddy Current Sensor is a high-precision non-contact measurement device designed for monitoring displacement, vibration, and shaft position in industrial rotating machinery. This model is part / Epro’s advanced PR9600 series, known for its accuracy, stability, and rugged construction, ensuring consistent performance in critical process industries such as power generation, petrochemical refining, and heavy machinery manufacturing.

Using the eddy current principle, the PR9600/014-000 detects the change in electromagnetic field generated between the probe tip and the conductive target surface. The output signal is directly proportional to the displacement or vibration amplitude, allowing real-time monitoring / shaft dynamics and equipment behavior. The sensor’s robust stainless steel construction and hermetically sealed design make it suitable for long-term use under extreme industrial environments with high temperature, oil contamination, or mechanical stress.


Product Parameters

Parameter 説明
Product モデル PR9600/014-000
メーカー Epro GmbH
Product Type Eddy Current Displacement and Vibration Sensor
Measuring Principle Electromagnetic Induction (Eddy Current)
Measurement Range 0.25 mm to 4.0 mm (typical)
Sensitivity 8.0 mV/μm (nominal)
Frequency Range DC to 10 kHz
Linear Deviation ±1% / full scale
Output Type Voltage proportional to displacement
Power Supply Provided via compatible Proximitor (CON021, MMS6000)
Target Material Conductive (typically steel, aluminum, or similar)
Operating Temperature -35°C to +180°C
Storage Temperature -40°C to +200°C
Probe Housing Material Stainless Steel
Probe Tip Material Ceramic (non-corrosive and wear-resistant)
Mounting Thread M10 × 1.0 (custom threads optional)
Cable Type Coaxial, low-noise, oil-resistant
Environmental Protection IP67, resistant to oil and moisture ingress
Shock Resistance 500 g for 1 ms half-sine
Vibration Resistance 50 g, 10–2,000 Hz
Output Impedance < 100 Ω
Compatible Electronics Epro CON021, MMS6000, MMS6800 modules
Sensor Head Diameter Optional (depends on configuration)
配送 重量 3 kg

Product Applications

The Epro PR9600/014-000 Eddy Current Sensor is used extensively in condition monitoring and machine protection systems. Its high linearity and non-contact sensing capability allow it to deliver precise readings in environments where other sensors fail. It is suitable for:

  • Steam and Gas Turbines: Continuous shaft vibration and displacement measurement for critical protection systems.

  • Compressors and Pumps: Detection / shaft dynamic movement and bearing clearance variation for predictive maintenance.

  • Electric Motors and Generators: Measurement / rotor-stator concentricity and eccentricity monitoring.

  • Gearboxes and Couplings: Monitoring gear mesh vibration and mechanical wear patterns.

  • Industrial Machinery Diagnostics: Integration into plant-wide monitoring systems for machinery health diagnostics.

  • High-Speed Rotating Equipment: Reliable for detecting transient events, imbalance, and misalignment during operation.


Product Advantages

The Epro PR9600/014-000 /fers advanced sensing performance optimized for demanding industrial conditions. Its construction and signal stability make it a preferred choice for engineers requiring consistent, maintenance-free operation:

  • Non-お問い合わせ Measurement: No mechanical friction or wear, ensuring long-term measurement stability.

  • High Linearity and Sensitivity: Accurately measures small displacements and vibrations with minimal signal drift.

  • Wide Operating Range: Performs effectively in both low- and high-frequency applications.

  • 優良 Environmental Protection: IP67-rated design provides complete protection from oil, dust, and moisture.

  • Vibration and Shock Resistance: Engineered for high mechanical reliability under dynamic industrial conditions.

  • Thermally Stable Materials: Maintains measurement accuracy across wide temperature variations.

  • Compatibility with Epro Systems: Fully integrates with CON021 and MMS modules for enhanced signal processing.

  • Low-Noise Output: Coaxial cable design minimizes interference in electrically noisy environments.

  • Easy Installation and Maintenance: Optional probe diameters and mounting options support flexible setup.

  • Reliable Long-Term Operation: Ensures continuous performance in continuous-process machinery and critical assets.


FAQ

  1. What principle does the PR9600/014-000 operate on?
    The sensor works on the eddy current principle, where displacement is measured through changes in magnetic field strength due to target proximity variations.

  2. What type / signal output does this model provide?
    It provides a voltage output proportional to the target displacement or vibration amplitude, which is processed by a Proximitor or monitoring module.

  3. Can this sensor measure both static and dynamic motion?
    Yes, it can measure both static displacement (DC) and dynamic vibration (AC) signals, making it suitable for multiple monitoring scenarios.

  4. What materials are compatible as target surfaces?
    The sensor is designed for conductive materials, typically steel or aluminum, which allow consistent eddy current generation.

  5. How is the sensor connected to the monitoring system?
    It connects through a coaxial cable to an Epro CON021 converter or compatible proximitor module that processes the output signal.

  6. Is it resistant to electromagnetic interference from nearby equipment?
    Yes, its low-noise coaxial design and shielded housing minimize the impact / EMI and ensure signal integrity.

  7. What happens if the probe is installed too close to the target?
    Over-ranging may occur, leading to saturation / the output signal. Proper installation distance calibration is recommended.

  8. Can the sensor be used in high-vibration applications like turbines?
    Absolutely. It is designed to withstand vibrations up to 50 g and shocks up to 500 g, making it ideal for heavy-duty machinery.

  9. Does the sensor require external signal conditioning?
    Yes, it must be used with a proximitor or signal converter (e.g., Epro CON021) for accurate signal scaling and filtering.

  10. How stable is the sensor output with temperature changes?
    The PR9600/014-000 maintains excellent thermal stability, with minimal drift across its specified temperature range, ensuring reliable readings.


Related モデルs (Same Series or Similar Type)

モデル 説明
PR9600/010-000 Standard eddy current probe for general displacement monitoring
PR9600/011-000 High-sensitivity version for fine vibration detection
PR9600/012-000 Extended range variant for larger displacement measurement
PR9600/013-000 High-temperature version suitable for turbine monitoring
PR9600/015-000 Armored cable design for harsh or hazardous environments
PR9600/016-000 Compact probe for limited-space installations

Popular モデルs from the Same ブランド

モデル Product Type 説明
PR6423/010-010 Eddy Current Proximity Probe Measures shaft displacement and vibration with high accuracy
PR6424/010-030 Velocity Transducer Converts mechanical vibration into a proportional electrical signal
MMS3120/022-100 Monitoring Module Signal processing and machine condition monitoring 台
MMS6823 Overspeed Protection Module Real-time overspeed detection for rotating machinery
CON021 Proximitor Converter Converts eddy current probe signals into standard monitoring outputs
PR9376/010-021 Speed/Proximity Sensor Measures rotational speed and proximity in rotating systems

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