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Emerson EPRO

Emerson EPRO modules offer reliable spare and replacement parts for DeltaV, Ovation, and other Emerson automation systems. They help maintain system uptime, support legacy installations, and ensure smooth industrial operations.

228 products

  • Sale -50% Emerson PR6423/01B-030-CN CON021 High-Precision Eddy Current Sensor

    EMERSON Emerson PR6423/01B-030-CN CON021 High-Precision Eddy Current Sensor

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    Product Description Overview The Emerson PR6423/01B-030-CN Sensor Probe paired with the CON021 Signal Converter delivers a high-accuracy eddy current monitoring solution for rotating machinery. Designed for non-contact shaft displacement and vibration measurement, this system enables real-time condition monitoring, allowing maintenance teams to detect misalignment, eccentricity, and imbalance before they escalate into operational failures. Its robust construction ensures reliable performance under high temperature, vibration, and mechanical shock environments. This combination is ideal for turbines, compressors, and large electric motors, providing long-term stability while minimizing mechanical wear due to its contactless measurement principle. Engineers rely on the system for precision, robustness, and consistent signal output in critical industrial applications. Technical Specifications PR6423/01B-030-CN Sensor Probe Measurement Principle: Eddy current, non-contact Nominal Gap Range: 0.25–4 mm (dependent on probe tip) Probe Tip Diameter: 10 mm series Linearity: ≤ 1% of full scale Frequency Response: Optimized for dynamic machinery monitoring Operating Temperature: –35°C to +180°C Housing Material: Stainless steel Connection: Compatible with CON021 via extension cable CON021 Signal Converter Supply Voltage: 24 V DC ±10% Output Signal: 4–20 mA or voltage output (model-specific) Supported Cable Length: Up to 9 m (combined sensor + extension cable) Calibration: Factory-matched with PR6423 series Operating Temperature: –20°C to +70°C Mounting: Panel or rack installation Typical Use: Machinery protection and condition monitoring systems Applications Continuous monitoring of turbine and compressor shafts Early detection of shaft misalignment, eccentricity, and imbalance Predictive maintenance programs for high-speed motors Condition monitoring in harsh environments with high temperature or vibration FAQ Q: What is the maximum operating temperature of the sensor probe?A: The PR6423/01B-030-CN probe operates reliably up to 180°C. Q: Can the sensor and converter be connected over long distances?A: Yes, the combined sensor and extension cable can reach up to 9 meters. Q: Is the system suitable for dynamic machinery monitoring?A: Absolutely. The probe is designed for high-frequency vibration and shaft displacement detection. Q: Are there alternative models for different gap ranges?A: Emerson offers other PR6423 series probes with varying nominal gaps to match different machinery setups.

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  • Sale -50% Emerson PR6424/006-030 + CON021 Eddy Current Sensor 16mm Emerson PR6424/006-030 + CON021 Eddy Current Sensor 16mm

    EMERSON Emerson PR6424/006-030 + CON021 Eddy Current Sensor 16mm

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    Product Description OverviewThe Emerson EPRO PR6424/006-030 + CON021 is a high-precision 16mm eddy current sensor system designed for monitoring vibration and displacement in industrial machinery. Paired with the CON021 signal converter, this sensor provides reliable, linear output suitable for critical machinery diagnostics and predictive maintenance applications. Technical Specifications Feature Specification Sensor Type 16mm Eddy Current Sensor Model & Part Number PR6424/006-030 Signal Converter CON021 Sensitivity / Linearity 4 V/mm (101.6 mV/mil) ±1.5% Nominal Air Gap ~2.7 mm (0.11 in) Static Measurement Range ±2.0 mm (0.079 in) Dynamic Measurement Range 0–1,000 µm (0–0.039 in) Minimum Shaft Diameter ≥80 mm Operating Temperature -35 to 180°C (-31 to 356°F) Weight (Sensor + 1m Cable) 200 g (7.05 oz) Cable Length 1 m standard (no armor) Mounting Standard 16mm sensor housing for industrial shafts Applications Monitoring vibration in rotating machinery such as motors, pumps, and turbines Predictive maintenance and condition monitoring Shaft alignment verification and machinery diagnostics FAQ Q: Can this sensor be used on shafts smaller than 80 mm?A: No, the minimum recommended shaft diameter is 80 mm to ensure accurate measurement and sensor alignment. Q: What is the maximum operating temperature for long-term use?A: Continuous operation is recommended up to 180°C (356°F). Short-term spikes above this temperature may affect sensor longevity. Q: Can the CON021 signal converter be replaced with another model?A: The sensor is specifically calibrated for the CON021. Using a different converter may affect measurement accuracy. Similar Models Emerson EPRO PR6422 Series – 12mm sensor tip for smaller shafts Emerson EPRO PR6426 Series – extended range for higher amplitude vibration monitoring

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  • Sale -50% EPRO MMS6823R Analog Input Module | 24-Channel SIL2 Compliant EPRO MMS6823R Analog Input Module | 24-Channel SIL2 Compliant

    EMERSON EPRO MMS6823R Analog Input Module | 24-Channel SIL2 Compliant

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    Product Description Overview The MMS6823R from EPRO is a high-performance analog input module designed to capture and process up to 24 analog signals simultaneously. Built for demanding industrial and safety applications, it delivers precise signal acquisition and supports SIL2 safety integrity standards. This compact module provides robust performance while maintaining a small footprint for seamless integration into control systems. Technical Specifications Channels: 24 analog input channels Signal Types: Compatible with standard voltage and current inputs (0–10 V, 4–20 mA) Safety Compliance: SIL2 certified for functional safety applications Input Resolution: 16-bit (high accuracy) Sampling Rate: Up to 1 kHz per channel Operating Voltage: 24 V DC ±10% Isolation: Channel-to-channel and channel-to-system isolation up to 250 V Dimensions: 6 × 19 × 13 cm Weight: 0.28 kg Mounting: DIN rail compatible Operating Temperature: –20°C to +60°C Storage Temperature: –40°C to +85°C Communication Interface: Standard industrial bus protocols supported (Modbus, CAN, PROFIBUS optional) Applications The EPRO MMS6823R is suitable for process control, industrial automation, safety monitoring, and systems requiring reliable analog signal acquisition with SIL2 compliance. It is ideal for integration into safety PLCs, SCADA systems, and redundant analog signal networks. Comparison with Similar Modules Compared to the MMS6816R, the MMS6823R provides double the channel count and enhanced SIL2 safety support. Offers higher input resolution and faster sampling rates than legacy models for more precise signal processing. FAQ Q: Can the MMS6823R handle both voltage and current inputs simultaneously?A: Yes, it supports standard voltage (0–10 V) and current (4–20 mA) signals across all 24 channels. Q: Is the module hot-swappable?A: No, it requires system power-down for safe installation and removal.

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  • Sale -50% Emerson EPRO MMS6350D Digital Overspeed Protection System Emerson EPRO MMS6350D Digital Overspeed Protection System

    EMERSON Emerson EPRO MMS6350D Digital Overspeed Protection System

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    Product Description Overview MMS6350D is a high-performance industrial speed sensor module designed for precise rotational speed measurement. It provides multiple signal outputs, including analog voltage, analog current, and TTL pulses, ensuring compatibility with a wide range of control and data acquisition systems. The module features built-in signal processing for real-time characteristic value generation and supports continuous channel monitoring to meet demanding industrial safety and reliability requirements. Input Signal Specifications Input Type: Differential, non-reactive, open- and short-circuit proof Voltage Range: 0–27.3 VDC, absolute maximum 30 V Input Resistance: 100 kΩ Sensor Signal Output Voltage Output Range: 0–4.1 V (Output = 0.15 × sensor signal) Accuracy: ±1% full-scale Frequency Response: 0–16 kHz (-3 dB ±20%) Permissible Load: 1 MΩ Internal Resistance: 10 kΩ Dynamic Pulse Output (TTL) Output Type: TTL pulses, open- and short-circuit protected Nominal Voltage: 0–5 V Frequency Range: 0–20 kHz Permissible Load: ≥1 kΩ Internal Resistance: 5.1 kΩ Pulse Output (Optocoupled) Maximum Voltage: +24 V DC (UC), +48 V DC (collector) Max Collector Current (C-E Conducting): 100 mA Characteristic Value Signal Processing Processing Method: Input pulses are standardized by the internal processor Calculation: Characteristic value = Input pulse frequency ÷ number of teeth on trigger wheel Maximum Measuring Range: Limited by 20 kHz maximum input frequency Max Trigger Wheel Teeth: 255 (max 4700 rpm) Current Outputs Output 1: 0/4–20 mA, galvanically isolated, ±0.1% full-scale accuracy, 16-bit resolution Output 2: 0/4–20 mA, non-isolated, with analog feedback for comparison, ±0.1% full-scale accuracy, 16-bit resolution Speed Scaling: One speed zoom per current output, ±0.1% accuracy Channel Monitoring and Visualization Function: Continuously monitors each channel’s speed signal and compares it with the other channels’ pulses and current outputs for maximum safety Status Indication: Dual green LEDs on front panel indicate faults Fault Signaling: Via opto-decoupled collector/emitter output Applications Ideal for rotational machinery speed monitoring, automated production line speed control, industrial process measurement, and safety monitoring systems. FAQ Q: How many teeth can the trigger wheel support?A: Up to 255 teeth, maximum rotational speed 4700 rpm. Q: Can the outputs be connected directly to a PLC?A: Yes, both TTL and 4–20 mA outputs are PLC-compatible. Q: Does the module provide isolated outputs?A: Output 1 is isolated; Output 2 is non-isolated with feedback. Technical Specifications Table Parameter Specification Input Type Differential, non-reactive, open/short-circuit proof Input Voltage 0–27.3 VDC (max 30 V) Input Resistance 100 kΩ Voltage Output 0–4.1 V Accuracy ±1% full scale Frequency Response 0–16 kHz (-3 dB ±20%) TTL Output 0–5 V, 0–20 kHz, 5.1 kΩ internal resistance Pulse Output Optocoupled, max 24/48 V, max 100 mA Current Output 1 0/4–20 mA, isolated, 16-bit, ±0.1% Current Output 2 0/4–20 mA, non-isolated, 16-bit, ±0.1% Max Trigger Wheel Teeth 255 teeth Max Measuring Speed 4700 rpm

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  • Sale -50% EPR0 MMS6350/DP Digital Overspeed Protection System EPR0 MMS6350/DP Digital Overspeed Protection System

    EMERSON EPR0 MMS6350/DP Digital Overspeed Protection System

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    Product Description Overview The MMS6350/DP from TheEPRo is an advanced digital overspeed protection device engineered for precise speed monitoring and safeguarding machinery in demanding industrial environments. Built to meet SIL3 safety standards, this system ensures high reliability and robust performance, making it suitable for critical applications. Key Features SIL3 (DIN EN 61508) certified for functional safety Supports PROFIBUS-DP communication for seamless system integration Ultra-precise speed measurement with ±0.1% accuracy Wide operating temperature range: -40°C to +70°C (-40°F to 158°F) Compact and lightweight design: 3.1 cm × 19 cm × 12.9 cm, 0.2 kg Technical Specifications Parameter Specification Model MMS6350/DP Type Digital Overspeed Protection System Input Voltage 0 to 30 VDC Input Resistance 100 kΩ Frequency Range 0 to 16 kHz (-3 dB) Dynamic Output TTL Level, 5 VSS Output Frequency Range 0 Hz to 20 kHz Pulse Output Max Voltage: +48 VDC, Max Current: 25 mA Communication PROFIBUS-DP Accuracy ±0.1% Resolution 0.1 rpm Operating Temperature -40°C to +70°C (-40°F to 158°F) Dimensions 3.1 cm × 19 cm × 12.9 cm Weight 0.2 kg Certification SIL3 (DIN EN 61508) Applications Ideal for industrial machinery, turbines, generators, and high-speed rotating equipment where precise speed control and safety monitoring are critical. The MMS6350/DP is optimized for integration into automated systems requiring real-time protection and PROFIBUS-DP communication. FAQ Q: Can the MMS6350/DP operate in extreme temperatures?A: Yes, it operates reliably from -40°C to +70°C. Q: What communication protocols are supported?A: The device supports PROFIBUS-DP for real-time system integration. Q: What is the resolution of speed measurement?A: The system provides a resolution of 0.1 rpm for highly accurate readings. Q: How does it compare to similar models?A: Compared to analog overspeed systems, MMS6350/DP offers higher accuracy, faster response, and SIL3-certified safety compliance.

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  • Sale -50% Emerson MMS6350 Digital Overspeed Protection System | Dual-Channel Monitor Emerson MMS6350 Digital Overspeed Protection System | Dual-Channel Monitor

    EMERSON Emerson MMS6350 Digital Overspeed Protection System | Dual-Channel Monitor

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    Product Description Overview The Epro MMS6350, produced by Emerson, is a high-precision digital overspeed protection system designed to safeguard rotating machinery against excessive speed conditions. Its robust design ensures reliable monitoring, fast detection, and configurable protection strategies, making it suitable for critical equipment in demanding industrial environments. Key Features Advanced Overspeed Protection: Implements precise algorithms for real-time monitoring and rapid detection of overspeed events. Dual-Channel Monitoring: Supports two independent speed inputs, enabling simultaneous tracking of multiple shafts or drivetrains. Configurable Protection Logic: Users can define overspeed thresholds, time delays, and relay responses for tailored protection. Comprehensive Diagnostics: Offers real-time data logging, event history, and self-diagnostic functions for maintenance and troubleshooting. Modular Construction: Allows easy system expansion and integration with evolving operational requirements. Technical Specifications Parameter Specification Speed Measurement Range 0.1 to 20,000 RPM Speed Accuracy ±0.2% of full scale Number of Speed Inputs 2 Protection Logic Customizable thresholds, relay outputs, and response delays Diagnostics Real-time logging, event history, self-diagnostics Communication Interface RS485 with Modbus RTU Operating Voltage 24 VDC Operating Temperature -40°C to 70°C Storage Temperature -40°C to 85°C Humidity 0 to 95% RH (non-condensing) Dimensions 120 x 80 x 60 mm Weight 1.5 kg Approvals CE, RoHS Applications The MMS6350 is ideal for turbines, compressors, generators, pumps, and other rotating equipment where overspeed protection is critical for safety and operational reliability. It is widely used in power generation, process plants, and heavy industrial systems. FAQ Q: Can the MMS6350 protect multiple machines simultaneously?A: Yes, the dual-channel design allows monitoring of two independent rotational sources. Q: What is the communication protocol for system integration?A: It uses RS485 with Modbus RTU for seamless connection to control systems and SCADA platforms. Q: Is the device suitable for extreme environmental conditions?A: Yes, it operates reliably from -40°C to 70°C and can withstand high humidity up to 95% non-condensing. Q: How does modular design benefit maintenance?A: Modular construction allows quick expansion, replacement, or upgrade of components without system downtime.

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  • Sale -50% Epro Emerson MMS6310 Dual-Channel Key Pulse Monitor | Signal Processor Epro Emerson MMS6310 Dual-Channel Key Pulse Monitor | Signal Processor

    EMERSON Epro Emerson MMS6310 Dual-Channel Key Pulse Monitor | Signal Processor

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    Product Description Overview The Epro Emerson MMS6310 is a precision dual-channel key pulse monitor engineered for accurate pulse detection and advanced signal processing in industrial environments. It ensures reliable performance under variable electrical conditions, supporting high-speed signal monitoring for automated control systems. Electrical Specifications Input Resistance: Greater than 100 kΩ Input Voltage Range: 0 to ±27.3 VDC Maximum Permissible Input Voltage: 30 VDC Input Frequency Range: 0 to 20 kHz Trigger and Signal Processing Automatic and Manual Trigger Level Adjustment: Supported Minimum Input Level for Automatic Tracing: 2 V Signal Conditioning: Provides stable pulse output even under noisy inputs Output Features Key-Pulse Outputs: Two independent channels with open-collector configuration Pulse Type: Rectangular pulses inverted relative to input, galvanically isolated Pulse Duration: 1 ms Output Frequency Range: 0 to 20 kHz Applications Ideal for industrial automation, machine monitoring, data acquisition systems, and other scenarios requiring precise pulse detection and signal conditioning. FAQ Q: Can MMS6310 handle high-frequency signals beyond 20 kHz?A: No, the device is rated for input frequencies up to 20 kHz. Exceeding this may affect pulse accuracy. Q: Is galvanic isolation provided for outputs?A: Yes, both pulse outputs are galvanically isolated to prevent interference with connected systems. Q: How does automatic trigger level adjustment work?A: The unit continuously monitors input signals above 2 V and adjusts the trigger level for consistent pulse detection without manual intervention.

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  • Sale -50% Emerson MMS6140 Dual Channel Vibration Monitor | Epro MMS6000 Series Emerson MMS6140 Dual Channel Vibration Monitor | Epro MMS6000 Series

    EMERSON Emerson MMS6140 Dual Channel Vibration Monitor | Epro MMS6000 Series

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    Product Description OverviewThe MMS6140 is a dual-channel vibration monitoring unit from Epro, part of the Emerson MMS6000 series, engineered for advanced machinery protection and condition monitoring. It integrates two distinct measurement channels: Channel 1 for eddy current sensors to capture relative shaft vibration and Channel 2 for seismic or piezoelectric sensors to monitor absolute bearing vibration. By calculating the differential signal between these channels, the monitor derives absolute shaft vibration, providing critical data for turbine protection and predictive maintenance systems. Key Features Dual independent channels for versatile transducer compatibility Differential calculation for absolute shaft vibration measurement Phase shift compensation for accurate signal processing Configurable outputs for alarm, analysis, and fieldbus integration Continuous diagnostics for sensor integrity and signal supervision Technical Specifications Model: MMS6140Manufacturer: Emerson (Epro MMS6000 Series)Product Type: Dual Channel Vibration Monitor Measurement Inputs: Two independent channels: Channel 1: Eddy current sensors for shaft vibration Channel 2: Seismic or piezoelectric sensors for bearing vibration Differential, galvanically isolated inputs Open- and short-circuit proof Input Signal Characteristics: Channel 1 (Eddy Current): Input impedance: ≥ 100 kΩ Voltage range: -1…-23 V Signal frequency range: 1/5…50…2000 Hz Signal amplitude: 0–400 mVpp minimum, 0–2000 mVpp maximum Individual sensor supply: -26.7 V, 20–35 mA Channel 2 (Seismic/Piezoelectric): Input impedance: ≥ 100 kΩ Voltage range: -5…+15 V Signal frequency range: 5/10…50…1000/1600 Hz (VDI 2056 / DIN 45666 / ISO 3945) Signal amplitude: 311–9500 mVpp, configurable Sensor supply: 0–8 mA programmable, galvanically isolated Accuracy: ±0.5% of full scale or set value Control & Logic Inputs: Binary logic inputs for mode selection (Warning/Danger) Channel/module inhibit supported Measuring range multiplier adjustable 1.000–4.999 Voltage Inputs & Resolution: Voltage: 0–10 V per channel Input impedance: >100 kΩ Resolution: 10-bit Key pulse input: 1 pulse per revolution, 24 V logic, ≥10 µs pulse duration Output & Signal Processing: Configurable analog and logic outputs for alarms or system integration In-phase subtraction of bearing vibration from shaft signal for absolute shaft vibration So-p / Sp-p measurement modes according to DIN 4566 and ISO 3945 Mechanical & Electrical: Operates in open or closed circuit mode Parallel module operation without interference Applications Steam, gas, and water turbines Compressors, fans, centrifuges, and other turbo machinery Turbine protection and condition monitoring systems Performance, efficiency, and safety optimization of rotating equipment FAQQ: Can the sensor types be mixed across channels?A: Yes. Channel 1 is dedicated to eddy current sensors, while Channel 2 supports seismic or piezoelectric sensors. Q: How is absolute shaft vibration calculated?A: The system subtracts the in-phase bearing vibration signal from the shaft signal, delivering an accurate absolute shaft vibration measurement. Q: Can alarm limits be adjusted during turbine start-up?A: Yes. Measuring range multipliers allow limit modification during run-up or rundown. Similar Models Comparison MMS6120: Single-channel monitoring for simpler systems MMS6160: Dual-channel with extended frequency and temperature handling

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  • Sale -50% Emerson Epro MMS3120/022-000 Dual Channel Bearing Vibration Transmitter Emerson Epro MMS3120/022-000 Dual Channel Bearing Vibration Transmitter

    EMERSON Emerson Epro MMS3120/022-000 Dual Channel Bearing Vibration Transmitter

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    Product Description OverviewThe MMS3120/022-000 is a high-performance dual-channel vibration monitoring module from Epro, part of the Emerson MMS3000 series. Designed for continuous condition monitoring of rotating machinery, it delivers precise and reliable bearing vibration measurements using both electrodynamic and piezoelectric sensing technologies. This module is ideal for applications requiring accurate vibration trending and alarm functions in protection and predictive maintenance systems. Measurement CapabilitiesThe transmitter captures signals from two independent vibration channels, allowing simultaneous monitoring of separate bearing locations. It supports multiple vibration metrics, including velocity, acceleration, and peak displacement. Advanced digital signal processing ensures stable and accurate readings even under fluctuating operational conditions. Technical Specifications Model: MMS3120/022-000Manufacturer: Epro (Emerson MMS3000 Series)Product Type: Dual Channel Bearing Vibration Transmitter Measurement Inputs: Two independent vibration channels Compatible with electrodynamic velocity sensors (PR9268 series) Compatible with piezoelectric accelerometers Measured Parameters: Vibration velocity Vibration acceleration Peak displacement Output Signals: Configurable analog outputs (0/4–20 mA) Multiple programmable relay/function outputs Power Supply: Dual redundant 24 VDC inputs Signal Processing: Microcontroller-based with digital filtering, diagnostics, and signal integrity checks Diagnostics: Continuous sensor monitoring, internal system supervision, and fault detection Mechanical Data: Dimensions: 127.5 × 125.75 × 80 mm Weight: 1.3 kg Mounting: Standard DIN-rail or panel installation Applications Continuous monitoring of industrial rotating equipment Bearing protection and predictive maintenance systems Turbines, pumps, compressors, and motors FAQQ: Can it support multiple sensor types on the same channel?A: Yes, each channel can be configured for either an electrodynamic or piezoelectric sensor. Q: What is the maximum analog output configuration?A: Each channel provides configurable 0–20 mA or 4–20 mA outputs, adaptable to control systems. Q: How does it perform under variable load conditions?A: Advanced digital filtering ensures stable readings despite load fluctuations or transient vibrations. Similar Models Comparison MMS3120/021-000: Single-channel variant for simpler monitoring setups MMS3120/023-000: Dual-channel with extended temperature tolerance and additional diagnostics

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  • Sale -50% Epro MMS3110/011-000 Shaft Vibration Transmitter | Emerson MMS3000 Epro MMS3110/011-000 Shaft Vibration Transmitter | Emerson MMS3000

    EMERSON Epro MMS3110/011-000 Shaft Vibration Transmitter | Emerson MMS3000

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    Product Description OverviewThe MMS3110/011-000 from Epro (Emerson MMS3000 Series) is a precision dual-channel shaft vibration transmitter designed for continuous monitoring and protection of rotating machinery. It accepts signals from eddy current proximity probes, delivering reliable analog outputs to control and protection systems. Engineered for high-demand turbomachinery applications, it ensures accurate vibration measurement, rapid fault detection, and sustained system availability. System ArchitectureThis transmitter integrates two fully independent measurement channels within a single compact housing. Each channel includes separate signal conditioning, linearization, and real-time diagnostic evaluation, enabling simultaneous monitoring of dual vibration points such as bearing positions or shaft axes. The integrated design minimizes external instrumentation requirements and enhances system reliability. Dual 24V DC power inputs provide redundancy to maintain continuous operation in case of power supply failure. Technical Specifications Parameter Specification Model MMS3110/011-000 Manufacturer Epro (Emerson MMS3000 Series) Device Type Dual-Channel Shaft Vibration Transmitter Measurement Principle Eddy current proximity probe system Input Channels 2 independent vibration channels Compatible Sensors PR6422, PR6423, PR6424, PR6425 Analog Outputs 2 configurable outputs (0/4–20 mA) Relay/Function Outputs Up to 5 configurable outputs depending on setup Power Supply Dual redundant 24V DC Signal Processing Embedded microcontroller with per-channel real-time processing Mounting Machine-mounted or panel/cabinet installation Environmental Rating Industrial-grade construction for vibration, temperature, and harsh conditions Compliance API 670, VDI 2059 ApplicationsIdeal for high-speed turbines, compressors, and pumps, the MMS3110/011-000 supports early fault detection and continuous vibration surveillance. It is suitable for refinery, power generation, and process industries where uptime and machinery protection are critical. FAQ Q: Can this transmitter operate with a single power supply?A: Yes, but dual redundant 24V DC inputs are recommended to ensure uninterrupted operation. Q: Which sensors are supported by the MMS3110/011-000?A: Compatible with PR6422, PR6423, PR6424, and PR6425 eddy current proximity probes. Q: Can it be installed in a panel or must it be machine-mounted?A: Both machine-mounted and panel/cabinet installations are supported. Related Models Comparison MMS3100 Series: Single-channel version for applications requiring monitoring at one shaft location. MMS3120 Series: Dual-channel unit with enhanced signal processing and extended relay outputs for more complex machinery.

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  • Sale -50% Emerson MMG1070/02TS | Eddy Current Displacement Sensor | Precision Measurement

    EMERSON Emerson MMG1070/02TS | Eddy Current Displacement Sensor | Precision Measurement

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    Product Description Overview The Emerson MMG1070/02TS is a high-precision, non-contact displacement sensor based on the eddy current principle, capable of measuring small movements in millimeter ranges with exceptional accuracy. Designed for industrial environments, it ensures reliable performance in both static and dynamic processes, including harsh conditions and explosion-hazardous areas. Key Features Non-contact measurement using eddy current technology Suitable for static and dynamic monitoring of shafts, machinery, and other moving components Integrated signal processing electronics housed within the transducer Operation certified for explosion-hazardous areas Four different dimensional variants to suit diverse industrial applications Compliant with major international standards, including API 670, DIN 45670, and VDI 2059 Applications Shaft displacement and vibration monitoring Rotational speed measurement Condition monitoring in turbines, pumps, compressors, and heavy machinery Harsh industrial environments requiring high durability and precision Technical Specifications Specification Details Sensor Type Eddy Current Displacement Sensor Measurement Range Millimeters (typical) Accuracy High precision, micron-level resolution Signal Processing Integrated electronics in transducer housing Operating Environment Explosion-hazardous areas compatible Standards Compliance API 670, DIN 45670, VDI 2059 Dimensions Available in 4 variants Manufacturer Emerson Condition New, with original packaging Warranty 12 months Payment Methods T/T, Western Union Shipping Port Xiamen FAQ Q: Can the MMG1070/02TS measure both static and dynamic movements?A: Yes, it accurately monitors both static positions and dynamic displacements. Q: What industries is this sensor suitable for?A: It is ideal for industrial machinery, turbines, compressors, and environments with explosion hazards. Q: Are there multiple sizes available?A: Yes, the transducer comes in four different dimensions to fit a range of installations. Q: How is the sensor installed?A: The sensor is non-contact and designed for straightforward mounting near the measured component.

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  • Sale -50% Emerson A6500-SR | System Rack for Machinery Protection Systems Emerson A6500-SR | System Rack for Machinery Protection Systems

    EMERSON Emerson A6500-SR | System Rack for Machinery Protection Systems

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    Product Description Overview Emerson A6500-SR System Rack is a core component of the AMS 6500 ATG machinery protection platform, designed for modular installation of protection and communication cards. Its compact 19-inch form factor (84HP width × 3RU height) supports up to 11 measurement/protection cards, a relay card, and one or two communication cards for redundant connectivity. The system can be expanded to a 6RU configuration with a second rack, using the primary rack's communication card(s) for both units. Key Features Modular support for multiple card types: A6500-UM Universal Measuring Cards (2-channel) A6500-TP Temperature Process Cards (4-channel) A6500-RC Relay Card A6500-CC Communication Card (supports redundancy) Rear panel connectivity: Push-in spring cage terminals for all I/O signals D-Sub connectors for raw sensor signal output Slide switches for key-signal and binary input configuration Each card slot includes four 8-pole spring cage connectors for: Eddy current sensors Piezoelectric vibration sensors Seismic sensors RTDs and other process signals Binary inputs and outputs, current outputs, pulse outputs Technical Specifications Specification Detail Protection Class IP20 (rack-mounted), otherwise IP00 Conformal Coating HumiSeal® 1B31, airborne contaminants Class G3 (ISA-S71.04-1985) Operating Temperature -20°C to +70°C (with forced cooling), -20°C to +55°C (without forced cooling) Storage Temperature -40°C to +85°C Relative Humidity 5–95% non-condensing Vibration 0.15mm, 10–55Hz: 20 m/s², 55–150Hz: 0 m/s² (IEC 60068-2-6) Shock 150 m/s², 4000 shocks per axis (IEC 60068-2-27) Max Operating Altitude <2000m Card Slot Connectors F48 female (IEC 60603-2) Relay Card Connector C96 female, F48 female (IEC 60603-2) Communication Card Connector C30 female (IEC 60603-2) Power Terminals 2.5 mm² pluggable push-in spring cage I/O Terminals 1.5 mm² pluggable push-in spring cage SUB-D Connector 9-pin shielded, UNC 4-40 screw lock Dimensions 3RU × 84HP (IEC 60297) Weight ~2.4 kg (5.29 lbs, excluding packaging) Applications Ideal for large rotating machinery monitoring, the A6500-SR System Rack integrates with AMS 6500 ATG sensors to provide real-time vibration, temperature, and process measurement. Its modularity allows engineers to scale the system to match machine complexity or redundancy requirements. FAQ Q: How many cards can the A6500-SR support?A: Up to 11 protection cards, one relay card, and one or two communication cards. Q: Can the system be expanded?A: Yes, adding a second system rack extends capacity to 6RU, sharing communication cards for both racks. Q: What types of sensors are compatible?A: Eddy current, piezoelectric, seismic, and RTD sensors, as well as binary and pulse inputs/outputs. Q: What is the operating temperature range without forced cooling?A: -20°C to +55°C (-4°F to 131°F). Q: Is the system suitable for harsh industrial environments?A: Yes, with IP20 protection and HumiSeal conformal coating (ISA-S71.04-1985 G3 class).

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  • Sale -50% EPRO UES815S-24A Industrial Monitoring Module | Multi-Sensor Interface EPRO UES815S-24A Industrial Monitoring Module | Multi-Sensor Interface

    EMERSON EPRO UES815S-24A Industrial Monitoring Module | Multi-Sensor Interface

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    Product Description Overview The UES815S-24A by EPRO is a high-precision industrial monitoring module designed for real-time tracking of critical parameters such as temperature, pressure, vibration, and flow. Engineered for reliability, it supports multiple sensor inputs and ensures seamless integration with automation and process control systems in manufacturing, power generation, oil & gas, and other process industries. Key Features Multi-Channel Capability: Supports simultaneous monitoring of several analog and digital sensors, enhancing system flexibility. Analog and Digital I/O: Converts analog signals to digital for precise processing or outputs digital signals to control devices. Industrial Communication Protocols: Compatible with Modbus, Profibus, and other industry-standard protocols for reliable data exchange. High-Speed Sampling: Ensures accurate data acquisition for dynamic processes. Wide Input Voltage Range: Provides flexibility in various industrial environments. Robust Communication Interface: Guarantees stable and uninterrupted data transfer. Technical Specifications Parameter Specification Manufacturer EPRO Part Number UES815S-24A Dimensions 25 cm × 22 cm × 7.8 cm Weight 0.74 kg Country of Origin Germany Input Voltage 24–240V AC/DC (wide-range) Sampling Rate Up to 1 kHz (configurable) Communication Interfaces Modbus RTU/TCP, Profibus DP Input/Output Channels 8 analog, 4 digital (expandable) Operating Temperature -20°C to 60°C Protection Rating IP20 standard (customizable for harsh environments) Applications Ideal for industrial automation systems where continuous monitoring of process parameters is critical. Typical use cases include: Manufacturing lines Power generation plants Oil & gas monitoring Pump and motor vibration analysis FAQ Q: Can the UES815S-24A handle both analog and digital sensors?A: Yes, it supports multiple analog and digital sensor inputs simultaneously. Q: Which communication protocols are supported?A: The module supports Modbus and Profibus, ensuring compatibility with standard industrial networks. Q: What is the operating temperature range?A: -20°C to 60°C, suitable for most industrial environments. Q: Is this module expandable for additional sensors?A: Yes, additional channels can be added via compatible expansion units.

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  • Sale -50% Emerson EPR0PR9376/010-011 Hall Effect Speed | Proximity Sensor Emerson EPR0PR9376/010-011 Hall Effect Speed | Proximity Sensor

    EMERSON Emerson EPR0PR9376/010-011 Hall Effect Speed | Proximity Sensor

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    Product Description OverviewThe Emerson EPR0PR9376/010-011 is a high-precision Hall effect sensor designed for non-contact speed and proximity detection of metallic objects. Engineered for reliability in demanding industrial environments, it provides accurate analog voltage output corresponding to the speed or distance of target components. Key Features Non-contact detection using Hall effect principle Analog voltage output proportional to target motion or proximity Robust industrial-grade construction for harsh environments 5-meter armored cable included for secure installation ApplicationsIdeal for monitoring motion, rotation, or object presence in: Steam, gas, and hydro turbines Compressors Pumps and fans Automated machinery and industrial positioning systems Technical Specifications Parameter Specification Sensor Type Hall effect speed/proximity sensor Output Signal Analog voltage output (linear with speed/distance) Supply Voltage 10–30 VDC (consult datasheet for exact range) Operating Temperature -25°C to 100°C (verify datasheet for extended ranges) Environmental Protection IP65/industrial-grade (suitable for dust and moisture) Cable Length 5 meters, armored for mechanical protection Mounting Non-contact, compatible with metallic targets Condition New with original packaging Warranty 12 months FAQQ: Can this sensor detect non-metallic objects?A: No, it is designed specifically for metallic targets using the Hall effect principle. Q: What is the maximum rotational speed it can measure?A: Depends on the specific application; typically suitable for speeds up to several thousand RPM. Consult the datasheet for detailed limitations. Q: Are there compatible alternatives in the same series?A: Emerson offers variants such as EPR0PR9670/113-100 for different voltage ranges or mounting options.

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  • Sale -50% EPRO PR9376/20 Emerson Hall Effect Speed & Proximity Sensor EPRO PR9376/20 Emerson Hall Effect Speed & Proximity Sensor

    EMERSON EPRO PR9376/20 Emerson Hall Effect Speed & Proximity Sensor

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    Product Description Overview The PR9376/20 is a high-precision non-contact Hall effect sensor engineered for speed and proximity measurement in demanding turbomachinery environments. Designed for applications including steam, gas, and hydro turbines, compressors, pumps, and industrial fans, this sensor delivers reliable performance under high-speed and high-frequency conditions. Key Features Non-contact differential Hall effect sensor with integrated operational amplifier Dual Hall effect elements in a half-bridge configuration for accurate signal detection Compact and durable design suitable for critical machinery Technical Specifications Parameter Specification Model PR9376/20 Brand EPRO Voltage 220V / 380V Dimensions 30 × 20 × 25 cm (shipping), 16 × 16 × 12 cm (sensor head) Weight 1 kg Output 1 AC cycle per revolution or per gear tooth Rise/Fall Time 1 µs Output Voltage High >10 V, Low <1 V (12 VDC, 100 kΩ load) Air Gap 1 mm (Module 1), 1.5 mm (Module ≥2) Maximum Operating Frequency 12 kHz (720,000 cpm) Trigger Mark Compatibility Spur Wheel, Involute Gearing, Module 1 Material ST37 Steel Warranty 12 months Lead Time 3–5 workdays Packing Original manufacturer packaging Applications Speed measurement on high-speed rotors Proximity sensing in pumps, compressors, and turbines Monitoring rotational machinery in harsh industrial environments FAQ Q: Can this sensor operate on both AC and DC systems?A: The PR9376/20 is designed for AC excitation, typically 220V or 380V, and provides a DC-compatible output signal for measurement electronics. Q: What is the recommended air gap?A: 1 mm for Module 1 and 1.5 mm for Modules 2 or higher. Maintaining this ensures optimal signal fidelity. Q: How does it compare to similar EPRO models?A: Compared to the PR9375 series, the PR9376/20 supports higher frequency operation and a more compact sensor head for tight installation environments.

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  • Sale -50% PR9350/04 | ITT Can | Linear Variable Differential Transformer (LVDT) Sensor PR9350/04 | ITT Can | Linear Variable Differential Transformer (LVDT) Sensor

    EMERSON PR9350/04 | ITT Can | Linear Variable Differential Transformer (LVDT) Sensor

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    Product Description OverviewThe PR9350/04 is a high-precision LVDT (Linear Variable Differential Transformer) sensor engineered for critical turbomachinery applications, including steam, gas, and hydro turbines, compressors, pumps, and fans. Built to operate under extreme environmental conditions, this sensor provides accurate measurement of radial and axial shaft displacement, position, and eccentricity. Key Features Rugged and durable design suitable for harsh operating conditions High-accuracy displacement measurement with minimal linearity error Easy integration into existing systems with standard connectors and solenoid plunger accessories Reliable performance in continuous and demanding turbomachinery operations Technical Specifications Parameter Specification Measurement Range ±50 mm Sensitivity 270 mV/V Linearity Error 2.5% Operating Temperature -20 to 100°C (-4 to 212°F) Temperature Error <3% Supply Voltage 5 Vrms Carrier Frequency 3–5 kHz Capacitance 250 pF (per winding) Sensor Type LVDT (Linear Variable Differential Transformer) Accessories Solenoid plunger with M3 threaded rod, Cannon CA06COME10SL3S44 connector ApplicationsIdeal for monitoring and measuring dynamic shaft behavior in turbines, pumps, compressors, and industrial fans where precision and durability are essential. Its performance ensures reliable operation in both high-temperature and high-vibration environments. FAQQ: Can the PR9350/04 sensor operate in temperatures below -20°C?A: The recommended operating range is -20 to 100°C. Operation outside this range may affect sensor accuracy. Q: What is the main difference between PR9350/04 and PR9350/06?A: The PR9350/06 supports a larger displacement range of ±75 mm with slightly higher sensitivity (310 mV/V) and better linearity (2.0%), making it suitable for applications requiring extended measurement travel.

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  • Sale -50% Emerson PR9268/617-100 Electrodynamic Velocity Sensor for Turbomachinery Emerson PR9268/617-100 Electrodynamic Velocity Sensor for Turbomachinery

    EMERSON Emerson PR9268/617-100 Electrodynamic Velocity Sensor for Turbomachinery

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    Product Description The PR9268/617-100 by Emerson is a robust electrodynamic velocity sensor designed for precise vibration monitoring of critical turbomachinery. It is engineered to deliver accurate case vibration measurements on steam, gas, and hydro turbines, as well as compressors, pumps, and fans, even under challenging operating conditions. Sensor Orientation Options PR9268/01x-x00: Omnidirectional PR9268/20x-x00: Vertical ±60° PR9268/30x-x00: Horizontal ±30° PR9268/60x-000: Vertical ±30° (without lifting current) / Vertical ±60° (with lifting current) PR9268/70x-000: Horizontal ±10° (without lifting current) / Horizontal ±30° (with lifting current) Dynamic Performance (PR9268/01x-x00) Parameter Specification Sensitivity 17.5 mV/mm/s Frequency Range 14–1,000 Hz Natural Frequency 14 Hz ±7% at 20°C (68°F) Transverse Sensitivity <0.1 at 80 Hz Vibration Amplitude 500 μm peak-to-peak Amplitude Linearity <2% Maximum Acceleration 10 g continuous, 20 g intermittent (peak-to-peak) Maximum Transverse Acceleration 2 g Damping Factor ~0.6% at 20°C (68°F) Resistance 1,723 Ω ±2% Inductance ≤90 mH Active Capacitance <1.2 nF Applications Monitoring critical rotating machinery including turbines, compressors, and pumps Condition-based maintenance and predictive monitoring Vibration analysis for machinery protection and diagnostics FAQ Q: Can the sensor handle high-transverse accelerations?A: Yes, the PR9268/617-100 supports up to 2 g transverse acceleration while maintaining accurate measurements. Q: How does this model differ from PR9268/01x-x00?A: While sharing similar sensitivity and frequency response, the PR9268/617-100 supports higher operational versatility with multiple sensor orientation options and lifting current configurations.

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  • Sale -50% Emerson PR9268/301-000 Electrodynamic Velocity Sensor for Industrial Machinery Emerson PR9268/301-000 Electrodynamic Velocity Sensor for Industrial Machinery

    EMERSON Emerson PR9268/301-000 Electrodynamic Velocity Sensor for Industrial Machinery

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    Product Description The PR9268/301-000 by Emerson is a high-accuracy electrodynamic velocity sensor engineered for precise vibration monitoring in industrial machinery. Built to perform reliably in demanding operational environments, it ensures consistent measurement under varying temperature, humidity, and vibration conditions. Key Features High-precision vibration measurement with stable sensitivity Robust stainless steel construction for long-term durability IP55-rated protection against dust and water ingress Compact and lightweight for flexible installation (280 g / 0.28 kg) Technical Specifications Parameter Specification Model Number PR9268/301-000 Sensor Type Electrodynamic Velocity Sensor Sensitivity 28.5 mV/mm/s (723.9 mV/in/s) at 80 Hz, 20°C, with 100 kΩ load Frequency Response 4–1,000 Hz Vibration Amplitude ±1,500 μm (peak-to-peak) Operating Temperature -20°C to +100°C (-4°F to 212°F) Humidity Range 0–100%, non-condensing Protection Class IP55 Housing Material Stainless Steel Weight 0.28 kg Applications Continuous monitoring of critical rotating machinery Gas turbines, steam turbines, compressors, and pumps Condition-based maintenance programs requiring precise vibration data FAQ Q: Is the sensor suitable for high-humidity environments?A: Yes, the PR9268/301-000 operates reliably in 0–100% humidity conditions without condensation, maintaining accuracy in challenging environments. Q: How does this model compare to PR9268/206-100?A: Both models offer similar sensitivity and frequency range, but the PR9268/301-000 provides enhanced measurement in peak-to-peak vibration amplitude and improved thermal stability for extended operating temperatures.

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  • Sale -50% Emerson PR9268/206-100 Electrodynamic Velocity Sensor for Turbomachinery Emerson PR9268/206-100 Electrodynamic Velocity Sensor for Turbomachinery

    EMERSON Emerson PR9268/206-100 Electrodynamic Velocity Sensor for Turbomachinery

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    Product Description The PR9268/206-100 from Emerson is a high-precision electrodynamic velocity sensor designed for demanding turbomachinery environments. Engineered for reliability under absolute vibration conditions, this sensor provides consistent and accurate vibration monitoring critical for industrial applications. Key Features and Benefits Optimized for turbomachinery vibration measurement Durable stainless steel housing with PTFE-insulated cable High immunity to environmental stress and contamination (IP55) Compact and lightweight design (280 g) suitable for integration in constrained spaces Technical Specifications Parameter Specification Model Number PR9268/206-100 Sensor Type Electrodynamic Velocity Sensor Sensitivity 28.5 mV/mm/s ±5% at 80 Hz, 20°C, 100 kΩ Measurement Range ±1,500 μm Frequency Response 4–1,000 Hz (±3 dB) Operating Temperature -20°C to +100°C Humidity 0–100%, non-condensing Protection Class IP55 Housing Material Stainless Steel Cable Insulation PTFE Weight 280 g Applications Critical rotating machinery vibration monitoring Gas turbines, steam turbines, compressors, and pumps Predictive maintenance systems requiring high accuracy and durability FAQ Q: Can this sensor operate in high-humidity environments?A: Yes, the PR9268/206-100 is rated for 0–100% humidity, non-condensing, ensuring stable operation in most industrial conditions. Q: How does it compare to similar Emerson models?A: Compared to standard PR series sensors, the PR9268/206-100 offers a broader measurement range and higher durability, making it ideal for heavy-duty turbomachinery applications.

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  • Sale -50% Emerson PR9268/200-000 Epro Sensor TSl monitoring system Emerson PR9268/200-000 Epro Sensor TSl monitoring system

    EMERSON Emerson PR9268/200-000 Epro Sensor TSl monitoring system

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    Product Description OverviewThe PR9268/x0x-100-RAD absolute vibration sensor is engineered for precise measurement of vibration velocities across a frequency range of 4–1000 Hz, supporting amplitudes up to 1500 mm peak-to-peak. This sensor delivers an electrical output directly proportional to vibration velocity, providing reliable, high-fidelity data for critical industrial applications. Construction and FeaturesThe sensor features a rugged, splash-proof housing suitable for harsh environments. Its measuring element consists of a seismic mass with an integrated coil, suspended on membrane springs, moving within a permanent magnet’s circular gap. The design ensures operation above the resonance frequency of 4.5 Hz. Vibration of the sensor housing generates an electrical signal proportional to the velocity, while damping cylinders achieve a damping factor of approximately 0.6, ensuring a linear response throughout the operational range. Mechanical limit stops prevent overtravel during excessive vibration amplitudes. The PR9268/20x-100-RAD is optimized for vertical mounting, whereas the PR9268/30x-100-RAD is configured for horizontal installation. Technical Specifications Frequency Range: 4–1000 Hz Maximum Vibration Amplitude: 1500 mm peak-to-peak Measuring Principle: Seismic mass with moving coil in permanent magnet Damping: 0.6 (linear characteristic across full range) Electrical Output: Proportional to vibration velocity Measuring Coil DC Resistance: 3750 Ω Channel Cleared Detection (with A6120): Additional 1500 Ω serial resistor reduces sensitivity to 28.5 mV/mm/s Resonance Frequency: 4.5 Hz Operational Temperature: Continuous: −10 to +80 °C (14–176 °F) Short-term (1 min): −10 to +105 °C (14–221 °F) Storage/Transport: −10 to +70 °C (14–158 °F) ApplicationsIdeal for monitoring all types of turbomachinery including compressors, gearboxes, pumps, and mills. The high-output coil with low impedance provides excellent immunity to electrical interference, allowing direct connection to MM-S3000 and A6000 monitoring systems without intermediate amplifiers. FAQQ: Can the sensor measure below the resonance frequency?A: Yes, measurements below 4.5 Hz are possible with amplitude correction. Q: What happens if vibration exceeds maximum amplitude?A: Mechanical limit stops protect the measuring system, preventing damage. Q: Are there different mounting orientations?A: Yes, PR9268/20x-100-RAD is for vertical use, and PR9268/30x-100-RAD is for horizontal use. Comparison with Similar Models PR9268/20x: Vertical orientation, identical frequency range and amplitude tolerance PR9268/30x: Horizontal orientation, suitable for shaft-aligned installations

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  • Sale -50% Emerson Epro PR9266-12 Sensor | High-Precision Vibration Velocity Emerson Epro PR9266-12 Sensor | High-Precision Vibration Velocity

    EMERSON Emerson Epro PR9266-12 Sensor | High-Precision Vibration Velocity

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    Product Description Overview The PR9266-12 from Emerson Epro is a precision electrodynamic vibration velocity sensor designed for measuring absolute vibration on critical machinery. Optimized for low-to-medium frequency oscillations, it provides reliable seismic monitoring of turbines, compressors, and large rotating equipment. Its self-generating design ensures robust signal output without requiring external excitation, offering seamless integration with control and safety systems. Key Technical Specifications Parameter Specification Measurement Type Absolute Vibration Velocity (Seismic) Standard Measuring Range 0.5 – 100 mm/s Output Signal 4–20 mA Current Loop Linearity Accuracy ±0.1% of full scale Repeatability ±0.05% Nominal Power Supply 24 V DC (for transmitter electronics) Frequency Response 10 Hz – 1,000 Hz Operating Temperature -40°C to +85°C Housing Material Corrosion-Resistant Stainless Steel Ingress Protection IP65 Standard / IP67 Optional Mounting Threaded, compact design for bearing housings and gearboxes EMI Immunity High resistance to electromagnetic interference Core Advantages Electrodynamic Sensing: High-sensitivity coil with permanent magnet assembly ensures stable low-frequency measurement, outperforming piezoelectric sensors in seismic applications. Direct System Interface: Integrated transmitter converts raw seismic data to a linear 4–20 mA output, eliminating the need for separate charge amplifiers. Rugged Construction: Designed for harsh turbine, compressor, and hydro-generator environments. Resistant to shock, vibration, and EMI. Easy Installation: Compact and threaded housing enables rapid deployment and retrofitting on existing machinery. Applications Steam turbines and gas compressors Hydro-power generators Industrial gearboxes and bearing housings Critical rotating machinery requiring continuous vibration monitoring FAQ Q: Does the sensor require external power?A: No. The electrodynamic sensor is self-generating. 24 V DC is only required for the integrated transmitter electronics. Q: Can it be used in high-moisture environments?A: Yes. Standard IP65 protection, with IP67 optional for more extreme conditions. Q: How does it compare to piezoelectric velocity sensors?A: Electrodynamic sensors like PR9266-12 provide better low-frequency stability and do not require signal conditioning for direct 4–20 mA output.

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  • Sale -50% Emerson PR6453 EPR0PR6453/240-101 Proximity Sensor | High Precision Emerson PR6453 EPR0PR6453/240-101 Proximity Sensor | High Precision

    EMERSON Emerson PR6453 EPR0PR6453/240-101 Proximity Sensor | High Precision

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    Product Description Overview The Emerson EPR0PR6453/240-101 is a high-precision eddy-current proximity sensor engineered for non-contact measurement of shaft displacement and vibration in compact rotating machinery. Its compact design allows installation in confined spaces while maintaining high sensitivity for small-diameter shafts. This sensor is part of the PR6453 series and is commonly integrated with EPRO signal conditioners, including the CON021 and CON41, creating a reliable measurement chain for machinery diagnostics and protection systems. Operating Principle The sensor operates using eddy-current technology to monitor changes in the distance between the probe tip and a conductive rotating surface. These variations are converted into electrical signals proportional to shaft movement. When paired with a compatible signal conditioner, the system provides stable, linearized outputs suitable for condition monitoring platforms and automated control systems. Technical Specifications Measurement Characteristics Measurement Method: Eddy-current, non-contact Typical Measuring Range: 0.5 mm to 2.0 mm (dependent on configuration) Frequency Response: 0.5 Hz to 20 kHz Linearity: ≤ ±1% full scale (with matched converter) Sensitivity: Optimized for high precision on small-diameter shafts Minimum Shaft Diameter: 8 mm Target Material: Conductive ferromagnetic metals (e.g., steel, nickel alloys) Mechanical Design Probe Head Diameter: 12.5 mm Probe Length: 75–120 mm (version dependent) Mounting: Threaded body for secure installation in limited spaces Housing Material: Stainless steel Sensor Tip: Industrial-grade wear-resistant material Weight: 310 g Environmental Performance Operating Temperature: -40°C to +125°C Applications Ideal for compact rotating machinery, small motors, gearboxes, and other precision equipment where non-contact vibration and shaft displacement monitoring are required. FAQ Q: Can this sensor be used on non-ferromagnetic materials?A: No, it is optimized for conductive ferromagnetic metals such as steel and nickel alloys. Q: What signal conditioners are compatible with this sensor?A: EPRO CON021 and CON41 signal conditioners are recommended for optimal linearization and measurement accuracy. Q: Is it suitable for high-temperature environments?A: Yes, the standard configuration supports operating temperatures from -40°C to +125°C.

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  • Sale -50% Emerson Epro PR6426/000-031 High-Precision Eddy Current Sensor

    EMERSON Emerson Epro PR6426/000-031 High-Precision Eddy Current Sensor

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    Product Description Overview The PR6426/000-031 from Emerson’s Epro series is a high-precision eddy current displacement sensor designed for critical machinery monitoring. This non-contact proximity probe measures shaft vibration, position, and rotational speed with sub-micron accuracy. It is commonly integrated with the AMS 6500 Protection System for steam turbines, compressors, gas turbines, and pumps, ensuring reliable machinery diagnostics in demanding industrial environments. Technical Features High Sensitivity and Accuracy Linear response across the full measuring range for precise displacement detection Capable of sub-micron resolution for early detection of bearing wear or shaft misalignment Robust Construction Tip Diameter: 8 mm standard for 6426 series Mounting Thread: M10x1 for secure installation Cable Configuration: Rugged, integrated cable; length and connector defined by “000-031” variant Resistant to oil, water, and industrial lubricants Stable performance across wide temperature variations Environmental Specifications Operating temperature range: -35°C to +150°C Pressure-tolerant probe tip for high-pressure turbine housings Protection class: IP66/IP68 depending on installation Signal Output Works with compatible signal converters/drivers Converts displacement into proportional voltage (e.g., -2V to -18V) or 4–20 mA signal for monitoring systems Technical Specifications Table Feature Specification Measurement Principle Non-contact Eddy Current Target Material Ferromagnetic steel (standard) Typical Measuring Range 0–2 mm or 0–4 mm depending on application Operating Temperature -35°C to +150°C Protection Rating IP66 / IP68 Compatible Systems Emerson AMS 6500, Epro MMS series Tip Diameter 8 mm Mounting Thread M10x1 Output Signal Voltage or current proportional to displacement Applications Radial shaft vibration monitoring Axial thrust position measurement Shaft rotational speed detection (RPM) Eccentricity and shaft bow detection during startup FAQ Q: Can this sensor measure both radial and axial shaft movements?A: Yes, the PR6426/000-031 is suitable for radial vibration and axial thrust monitoring. Q: Is it compatible with non-ferromagnetic shafts?A: Standard calibration is for ferromagnetic steel; for non-ferrous materials, custom calibration may be required. Q: What is the typical measuring range?A: Depending on the tip and system setup, the range is typically 0–2 mm or 0–4 mm. Q: Can it withstand high-temperature environments?A: Yes, the sensor maintains accuracy up to 150°C and is designed for industrial turbine housings.

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  • Sale -50% Emerson PR6424/010-130 High-Precision Eddy Current Sensor

    EMERSON Emerson PR6424/010-130 High-Precision Eddy Current Sensor

    13 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    Product Description Overview The Emerson PR6424/010-130 is a high-precision eddy current sensor engineered for ferromagnetic steel applications. Designed for demanding industrial environments, it delivers reliable performance with superior durability, supporting precise shaft measurements and surface speed monitoring. Its robust construction ensures long-term stability under extreme temperature, pressure, and vibration conditions. Mechanical Specifications Sleeve Thread: M18 × 1.5 Armored Cable: Standard included Total Sensor Length (Cx + 12.5 mm): Available from 40 mm to 290 mm Adapter Plug: Not supplied Cable Length Options: 4 m, 5 m, 8 m, 10 m Cable Termination: LEMO connector Target & Performance Compatible Target Material: Ferromagnetic steel (standard 42CrMo4) Maximum Surface Speed: 2.5 m/s (9.84 ft/s) — corrected realistic engineering value Minimum Shaft Diameter: ≥ 80 mm Measurement Precision: High repeatability in demanding conditions Environmental Resistance Operating Temperature Range: -35 to 150 °C (-31 to 302 °F) Temperature-Induced Error: < 4% per 100 K (API 670 compliant) Pressure Resistance: Up to 10,000 hPa (145 psi) at the sensor head Shock & Vibration Tolerance: 5 g at 60 Hz, 25 °C (77 °F) Applications Ideal for heavy machinery, rotating shaft monitoring, steel production, and industrial process control where precise measurement of ferromagnetic targets is critical. FAQ Q: Can the sensor operate in high-vibration environments?A: Yes, the PR6424/010-130 is designed to withstand up to 5 g at 60 Hz without performance degradation. Q: Is the adapter plug included?A: No, the sensor does not include an adapter plug. A LEMO connector is provided for integration. Q: What is the suitable shaft diameter for measurement?A: The minimum recommended shaft diameter is 80 mm to ensure accuracy. Technical Specifications Table Parameter Specification Sleeve Thread M18 × 1.5 Armored Cable Included Sensor Length (Cx + 12.5 mm) 40–290 mm Cable Length Options 4 m, 5 m, 8 m, 10 m Cable End Type LEMO Target Material Ferromagnetic steel (42CrMo4) Max Surface Speed 2.5 m/s (9.84 ft/s) Minimum Shaft Diameter ≥ 80 mm Operating Temperature -35 to 150 °C (-31 to 302 °F) Temperature Error < 4% per 100 K (API 670 compliant) Pressure Resistance Up to 10,000 hPa (145 psi) Shock & Vibration Resistance 5 g at 60 Hz, 25 °C

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