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Bently Nevada

Bently Nevada provides trusted condition monitoring solutions for industrial machinery. Our global inventory includes sensors, probes, cables, and modules for both new and legacy systems.

1355 products

  • Sale -50% Bently Nevada 330104-00-08-90-02-05 3300 XL 8 mm Proximity Probe Bently Nevada 330104-00-08-90-02-05 3300 XL 8 mm Proximity Probe

    Bently Nevada Bently Nevada 330104-00-08-90-02-05 3300 XL 8 mm Proximity Probe

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    Bently Nevada 330104-00-08-90-02-05 3300 XL 8 mm Proximity Probe The Bently Nevada 330104-00-08-90-02-05, also cataloged as the 3300 XL 8 mm Proximity Probe, operates as a dedicated hardware component for eddy-current displacement measurement and rotor position monitoring within the Bently Nevada 3300 XL Machinery Protection System. Hardware Specifications Parameter Specification Model 330104-00-08-90-02-05 Brand Bently Nevada Product Type 3300 XL 8 mm Proximity Probe Origin USA Weight 0.12 kg Dimensions Estimated shipping size: 32 x 30 x 2 cm Power Consumption Supplied through compatible Proximitor Sensor system Probe Diameter 8 mm Thread Type M10 x 1 Armor Option Armored probe design Minimum Unthreaded Length 0 mm Overall Case Length 80 mm Total Length 9.0 meters (29.5 feet) Cable Type Miniature coaxial ClickLoc connector standard cable Connector Option ClickLoc miniature coaxial connector Agency Approvals CSA, ATEX, IECEx Tariff Code 8537101190 Eddy-Current Probe Scaling and Rotor Dynamics Measurement The 330104-00-08-90-02-05 uses the Bently Nevada 3300 XL 8 mm probe configuration for non-contact displacement measurement. Therefore, the probe generates proportional eddy-current signals that correspond to shaft position changes relative to the probe tip. The probe system requires correct scaling between probe output voltage and mechanical displacement. Additionally, technicians validate gap voltage conditions during installation to maintain measurement accuracy, with typical Bently Nevada systems using -10 VDC target gap voltage references. The armored cable construction provides mechanical protection for installations where routing conditions require additional cable shielding. Furthermore, the miniature coaxial ClickLoc connector maintains signal continuity between the probe and compatible Proximitor Sensor modules. The probe supports rotor dynamics analysis by providing shaft vibration and position data required by Bently Nevada machinery monitoring platforms. Moreover, the probe design incorporates signal conditioning characteristics that support cross-talk suppression in multi-channel monitoring installations. Frequently Asked Questions Q: What measurement technology does the Bently Nevada 330104-00-08-90-02-05 use?A: The probe uses eddy-current technology to measure shaft displacement without physical contact between the probe tip and the rotating surface. Q: What is the function of the -10 VDC gap voltage reference during installation?A: The gap voltage reference verifies the probe installation position and confirms that the probe operates within the specified linear measurement range. Q: Can the 330104-00-08-90-02-05 operate directly without a Proximitor Sensor?A: No. The proximity probe requires a compatible Bently Nevada Proximitor Sensor to provide excitation, signal conversion, and output conditioning. Field Installation Guidelines Install the 330104-00-08-90-02-05 probe using the specified M10 x 1 threaded mounting interface. Ensure that the probe tip faces the monitored shaft surface with correct mechanical alignment. Route the miniature coaxial cable away from high-current conductors, switching power sources, and strong electromagnetic interference areas. Maintain proper cable support to prevent mechanical stress on the connector and armored section. Connect the probe system according to the applicable Bently Nevada 3300 XL installation documentation. Verify the probe gap voltage before commissioning and confirm signal stability during shaft rotation. For multi-probe installations, separate parallel signal paths where possible to reduce electromagnetic coupling effects. Ensure that cable shielding and grounding follow the machinery monitoring system installation requirements.

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  • Sale -50% 185450-CN Wireless Repeater Module Bently Nevada

    Bently Nevada 185450-CN Wireless Repeater Module Bently Nevada

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    Bently Nevada 185450-CN Wireless Repeater Module The Bently Nevada 185450-CN, also cataloged as the 185450-CN Wireless Repeater Module, operates as a dedicated hardware component for wireless signal routing within the Bently Nevada Essential Insight.mesh network. Hardware Specifications Parameter Specification Model 185450-CN Brand Bently Nevada Product Type Wireless Repeater Module Series Essential Insight.mesh Origin United States Network Protocol ISA100.11a wireless communication Radio Standard IEEE 802.15.4 compliant DSSS frequency hopping radio Network Topology Auto-forming self-healing wireless mesh network Communication Range Up to 200 m line-of-sight Operating Temp -40 deg C to +85 deg C Storage Temp -40 deg C to +85 deg C Humidity Rating Up to 100% RH with suitable environmental sealing Mechanical Vibration Limit 5 g peak, any axis Power Supply Internal battery pack or external power option depending on enclosure configuration Wireless Mesh Network Communication The 185450-CN functions as a routing node between Wireless Sensor Interface Modules and the Manager Gateway. It forwards measurement data through the ISA100.11a mesh infrastructure without providing direct sensor input channels. The module uses IEEE 802.15.4 radio technology with Direct Sequence Spread Spectrum and frequency hopping methods. Therefore, it reduces communication interference effects in industrial wireless environments. The repeater supports automatic network formation and self-healing path management. As a result, the wireless network can maintain communication paths when individual nodes become unavailable or signal conditions change. Rotor Dynamics and Machinery Monitoring Integration Bently Nevada wireless monitoring systems transfer vibration and temperature information from rotating equipment through distributed wireless nodes. The 185450-CN supports this architecture by maintaining communication paths between field devices and System 1 asset management software. The Essential Insight.mesh platform processes vibration-related measurement data associated with rotating machinery conditions. Furthermore, the wireless infrastructure supports machinery monitoring applications where cable installation limitations exist. The module operates as a communication extension device and does not perform eddy-current probe scaling, gap voltage validation (-10 VDC targets), or direct rotor dynamic signal conditioning. These functions remain within compatible Bently Nevada monitoring and sensor interface hardware. Frequently Asked Questions Q: Does the Bently Nevada 185450-CN provide direct sensor input channels?A: No. The 185450-CN operates as a wireless repeater and provides signal routing functions within the Essential Insight.mesh network. Q: Which wireless protocol does the 185450-CN use?A: The module uses ISA100.11a wireless communication with IEEE 802.15.4 compliant radio technology. Q: Can the repeater operate in outdoor industrial environments?A: Yes. The module supports industrial temperature ranges from -40 deg C to +85 deg C. Proper enclosure sealing and installation practices are required for environmental protection. Field Installation Guidelines Install the 185450-CN at a location that maintains wireless communication visibility with adjacent mesh nodes. Avoid placing the module behind large metal structures or equipment that can obstruct radio propagation. Use approved mounting hardware and maintain proper enclosure sealing when the installation location is exposed to moisture, dust, or outdoor conditions. Route external power wiring separately from high-voltage switching cables when external power options are used. Follow site grounding practices to minimize electrical interference. Verify wireless network registration after installation and confirm that the repeater establishes communication paths with the Manager Gateway and connected wireless sensor interface modules.

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  • Sale -50% Bently Nevada 86739-01 3500 Dual Vibration Monitor Bently Nevada 86739-01 3500 Dual Vibration Monitor

    Bently Nevada Bently Nevada 86739-01 3500 Dual Vibration Monitor

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    Bently Nevada 86739-01 3500 Dual Vibration Monitor The Bently Nevada 86739-01, also cataloged as the 86739-01 Dual Vibration Monitor, operates as a dedicated hardware component for vibration and position signal monitoring within the Bently Nevada 3500 Machinery Protection System. Hardware Specifications Parameter Specification Model 86739-01 Brand Bently Nevada Product Type Dual Vibration Monitor Series 3500 Origin United States (USA) Operating Temp 0 to 65 deg C Storage Temp -40 to 85 deg C Power Consumption Not specified in available documentation Monitoring Function Dual channel vibration monitoring System Compatibility Bently Nevada 3500 Machinery Protection System Application Standard Designed for API 670 machinery protection requirements Rotor Dynamics and Vibration Signal Monitoring The Bently Nevada 86739-01 monitors vibration signals from rotating machinery through dual measurement channels within the 3500 platform. The module processes vibration-related inputs and supports continuous online condition monitoring. The monitor works with Bently Nevada transducer systems that use eddy-current probe scaling methods for shaft displacement measurement. Therefore, correct probe calibration and gap voltage validation are required to maintain accurate vibration measurement performance. Typical eddy-current systems use gap voltage targets near -10 VDC for valid probe operation. In addition, the module supports rotor dynamics analysis by providing vibration data required for evaluating shaft movement, mechanical imbalance, misalignment, and other rotating equipment conditions. Signal processing design also considers cross-talk suppression between monitoring channels to reduce interference during multi-channel operation. Frequently Asked Questions Q: What function does the Bently Nevada 86739-01 provide in a 3500 system?A: The 86739-01 provides dual-channel vibration monitoring for machinery protection applications within the Bently Nevada 3500 system. Q: Does the 86739-01 support eddy-current probe measurement systems?A: Yes. The module operates with Bently Nevada proximity measurement systems that use eddy-current probe scaling and gap voltage validation methods. Q: What environmental temperature range applies to this monitor?A: The operating temperature range is 0 to 65 deg C, while the storage temperature range is -40 to 85 deg C. Field Installation Guidelines Install the 86739-01 module in a compatible Bently Nevada 3500 rack configuration according to the system installation manual. Connect vibration transducer wiring using shielded instrumentation cables. Ground cable shields according to site grounding practices to minimize electrical noise coupling. Keep vibration signal wiring separated from high-current power conductors and switching circuits. Verify sensor polarity, channel assignment, and probe calibration before placing the monitoring channel into service. Confirm the eddy-current probe gap voltage before final commissioning. The measured signal should match the expected probe operating range and system configuration parameters. Check rack power status, System Monitor communication, and channel configuration after installation. Perform functional verification using the configured vibration monitoring parameters before enabling machinery protection functions.

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  • Sale -50% Bently Nevada 81410-01 Dual Vibration Monitor Board Bently Nevada 81410-01 Dual Vibration Monitor Board

    Bently Nevada Bently Nevada 81410-01 Dual Vibration Monitor Board

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    Bently Nevada 81410-01 Dual Vibration Monitor Board The Bently Nevada 81410-01, also cataloged as the 81410 Dual Vibration Monitor Board, operates as a dedicated hardware component for vibration signal processing within the Bently Nevada 3300 Series Machinery Protection System. Hardware Specifications Parameter Specification Model 81410-01 Brand Bently Nevada Origin USA Operating Temp -35 deg C to +65 deg C Power Consumption Not specified System Compatibility Bently Nevada 3300 Series Machinery Protection System Module Type Expander Board PWA / Dual Vibration Monitor Board Channel Configuration 2 independent vibration monitoring channels Input Signal Types Proximity probe signals, velocity transducer signals Measurement Functions Radial vibration, axial position, casing vibration monitoring Signal Outputs Buffered transducer outputs, proportional 4-20 mA outputs, alarm interfaces Mounting Method Internal plug-in rack module installation Application Interface Machinery protection monitoring and alarm processing Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The 81410-01 module processes dynamic vibration signals generated by eddy-current proximity probes and velocity transducers. It supports signal scaling functions required for displacement measurement and rotor vibration analysis within the 3300 Series architecture. The module works with rotor dynamics monitoring functions by evaluating vibration amplitude and displacement behavior. In addition, maintenance personnel can access buffered outputs for waveform observation and spectrum analysis without disconnecting the protection circuit. The vibration input path supports gap voltage validation procedures, including the standard Bently Nevada -10 VDC target condition used for proximity probe installation verification. The signal processing design reduces measurement errors caused by improper probe positioning and electrical interference. Frequently Asked Questions Q: Does the 81410-01 support direct connection to Bently Nevada proximity probes?A: Yes. The module is designed to process vibration signals from compatible Bently Nevada proximity probe systems installed in the 3300 Series rack architecture. Q: Can the buffered output be used for vibration analysis equipment?A: Yes. The buffered output provides access to vibration signals for diagnostic equipment while maintaining the primary monitoring circuit connection. Q: Is the 81410-01 configured as a standalone monitoring device?A: No. The module operates as a rack-mounted component within the Bently Nevada 3300 Series Machinery Protection System and requires system-level configuration. Field Installation Guidelines Install the 81410-01 module in the designated slot position of the Bently Nevada 3300 Series rack. Verify rack backplane connections before applying system power. Use shielded instrumentation cables for vibration signal wiring to reduce electrical noise coupling. Connect cable shields according to the plant grounding standard and avoid creating multiple ground paths. Confirm proximity probe polarity, signal routing, and gap voltage values before commissioning. Maintain separation between vibration signal cables and high-current power wiring. Verify alarm setpoints and channel scaling parameters after installation using approved diagnostic procedures.

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  • Sale -50% Bently Nevada 81034-01T Temperature Monitor Board Bently Nevada 81034-01T Temperature Monitor Board

    Bently Nevada Bently Nevada 81034-01T Temperature Monitor Board

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    Bently Nevada 81034-01T Temperature Monitor Board The Bently Nevada 81034-01T, also cataloged as the 81034-01T Temperature Monitor Board, provides printed circuit board execution for six-channel online temperature measurement processing within Bently Nevada 3300 Series temperature monitoring platforms. Hardware Specifications Parameter Specification Model 81034-01T Brand Bently Nevada Product Type Temperature Monitor Board Series 3300 Series Temperature Monitoring System Origin USA Channel Configuration Six independent temperature monitoring channels Input Compatibility Thermocouple or RTD temperature measurement inputs with compatible monitor assemblies Protection Feature Conformal coated printed circuit board design Application Function Temperature signal acquisition, processing, and interface support Rotor Dynamics and Temperature Signal Processing The 81034-01T board supports temperature monitoring functions within Bently Nevada machinery protection architectures. It processes temperature measurement data from compatible 3300/30 thermocouple and 3300/35 RTD monitoring assemblies. In addition, the board operates with structured signal conditioning methods used in machinery supervision systems. The design maintains measurement channel separation to support independent temperature evaluation and diagnostic functions. The Bently Nevada monitoring architecture uses validated signal processing methods similar to TSI applications, where accurate sensor input handling supports rotor condition assessment. Therefore, proper signal scaling, sensor wiring, and channel configuration directly affect measurement accuracy. Frequently Asked Questions Q: What temperature inputs are supported by the Bently Nevada 81034-01T board?A: The board supports temperature monitoring functions associated with 3300 Series monitors, including thermocouple and RTD measurement configurations when used with the appropriate monitor modules. Q: Does the 81034-01T board provide independent monitoring channels?A: Yes. The associated 3300/30 and 3300/35 temperature monitor systems provide six independent channels for online temperature monitoring. Q: Is the 81034-01T suitable for direct field sensor connection?A: The board functions as a system-level printed circuit component. Field sensor connections depend on the complete 3300 Series monitor configuration and terminal interfaces. Field Installation Guidelines Install the 81034-01T board only within the designated Bently Nevada 3300 Series hardware chassis and compatible monitor assemblies. Verify board orientation and connector alignment before insertion into the system rack. Use proper electrostatic discharge (ESD) protection when handling the printed circuit board. Maintain shielded sensor wiring practices to reduce electrical interference on temperature input channels. Connect cable shields according to the system grounding design and avoid unnecessary ground loops. Confirm thermocouple polarity and RTD wiring configuration before system commissioning. Inspect conformal coating condition during maintenance activities to ensure environmental protection remains intact. Verify channel operation through the host monitoring system after installation.

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  • Sale -50% Bently Nevada 79512-01 3300 Series Temperature Monitor Input Module Bently Nevada 79512-01 3300 Series Temperature Monitor Input Module

    Bently Nevada Bently Nevada 79512-01 3300 Series Temperature Monitor Input Module

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    Bently Nevada 79512-01 3300 Series Temperature Monitor Input Module Configured for multi-channel temperature signal acquisition in the Bently Nevada 3300 Series rack system, the Bently Nevada 79512-01 (79512-01 6-Channel Temperature Monitor Input Module) provides direct electrical processing of thermocouple and RTD measurement signals. Hardware Specifications Parameter Specification Model 79512-01 / PWA 79512-01 Brand Bently Nevada (Baker Hughes) Origin USA Product Type 6-Channel Temperature Monitor Input Module System Compatibility Bently Nevada 3300 Series Rack System Application Temperature signal acquisition and monitoring for 3300/30 and 3300/35 temperature monitoring systems Channel Quantity 6 independent isolated input channels Sensor Input Type Thermocouple (TC) and RTD, configuration dependent Supported Thermocouples J, K, T, E, N, R, S, B, configuration dependent Signal Conditioning Integrated cold junction compensation (CJC) for thermocouple measurement Input Impedance High impedance input design for EMI/RFI noise reduction Measurement Range Sensor dependent, typical range from -200 deg C to +1800 deg C Measurement Accuracy +/-0.5% of full scale or +/-1 deg C typical Resolution 0.1 deg C Output Interface 3300 rack backplane data communication External Output 4-20 mA or 1-5 VDC output, configuration dependent Power Supply Supplied through 3300 rack backplane Operating Temp -30 deg C to +65 deg C Storage Temp -40 deg C to +85 deg C Humidity Up to 95% RH, non-condensing Mounting Standard 3300 rack slot installation Power Consumption Supplied by rack backplane, value dependent on system configuration Rotor Temperature Signal Processing and TSI Monitoring Characteristics The Bently Nevada 79512-01 processes temperature measurement signals within the 3300 Series machinery protection architecture. It converts thermocouple or RTD inputs into monitored temperature values for alarm handling, recorder outputs, and system data processing. In addition, the module supports machinery condition monitoring applications where thermal behavior affects rotor dynamics. Temperature variations from bearings, housings, and rotating assemblies can be evaluated together with vibration and position measurements to support TSI-related analysis. The input design incorporates signal conditioning methods to reduce measurement interference. Therefore, the isolated channels maintain separation between multiple temperature sensors installed on the same machine train. Frequently Asked Questions Q: Does the Bently Nevada 79512-01 support both thermocouple and RTD inputs?A: Yes. The module supports thermocouple and RTD measurement inputs depending on the configured module option and system setup. Q: Is the 79512-01 powered through an external power supply?A: No. The module receives operating power from the Bently Nevada 3300 Series rack backplane. Q: Can the module provide direct communication with external control systems?A: The module transfers processed temperature data through the 3300 rack system. External outputs depend on the installed monitoring configuration. Field Installation Guidelines Install the 79512-01 module in the designated slot of the Bently Nevada 3300 rack chassis. Verify rack power isolation before inserting or removing the module. Use shielded instrumentation cables for thermocouple and RTD wiring. Connect cable shields according to site grounding practices to reduce electrical interference. Separate temperature signal wiring from high-current motor cables, power conductors, and switching circuits. Maintain correct sensor polarity during thermocouple installation because reversed connections can produce incorrect temperature readings. Confirm the sensor type configuration before commissioning. Verify cold junction compensation operation for thermocouple applications and check channel status through the connected 3300 monitoring system.

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  • Sale -50% Bently Nevada 87890-01 3300 System Monitor Bently Nevada 87890-01 3300 System Monitor

    Bently Nevada Bently Nevada 87890-01 3300 System Monitor

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    Bently Nevada 87890-01 3300 System Monitor The Bently Nevada 87890-01, also cataloged as the 87890-01 System Monitor, operates as a dedicated hardware component for power supervision, alarm control, and system status management within the Bently Nevada 3300 machinery vibration monitoring system. Hardware Specifications Parameter Specification Model 87890-01 Brand Bently Nevada Product Type System Monitor Series 3300 Origin United States Weight 2.8 kg Operating Temp -20 deg C to +65 deg C Power Consumption <15 W Power Supply 18-36 VDC / 85-264 VAC Voltage Monitoring +VRH, +VRL, +7.5 V, +5 V, REF, -7.5 V Power-up Inhibit Duration Approx. 2 seconds System Reset Function External contact closure or front panel RESET switch Trip Multiply Function 2X or 3X alarm setpoint increase option OK Relay Type SPDT relay located on Power Input Module Availability In Stock Bently Nevada Rotor Monitoring and System Supervision Features The 87890-01 System Monitor supervises the electrical status of the 3300 rack power supplies and connected monitor conditions. It monitors internal supply voltages including +VRH, +VRL, +7.5 V, +5 V, REF, and -7.5 V. Therefore, the front panel LED indicators provide direct visual confirmation of supply operation. The module includes power-up inhibit logic to suppress false alarms during system energization or low supply voltage conditions. When activated, the function bypasses monitor alarms, forces output signals to zero scale, and de-energizes the System OK relay through the rack Power Input Module (PIM). In addition, the System Monitor supports Trip Multiply operation for specific machine conditions. This function increases vibration alarm thresholds by a fixed factor of 2X or 3X during startup, coast down, structural resonance, or load transition conditions. The feature applies only to compatible monitors configured with this option. For machinery protection applications, the module works with Bently Nevada vibration monitoring circuits that depend on accurate eddy-current probe scaling, gap voltage validation, and rotor dynamics analysis. The System Monitor maintains rack-level supervision so connected vibration channels can identify transducer faults and abnormal signal conditions. Frequently Asked Questions Q: What power inputs does the Bently Nevada 87890-01 System Monitor support?A: The module supports 18-36 VDC and 85-264 VAC power input ranges for 3300 system rack operation. Q: How does the Power-up Inhibit function operate on the 87890-01?A: The function suppresses alarm activity for approximately 2 seconds after power-up or during low supply voltage conditions. It prevents temporary startup conditions from generating vibration alarms. Q: What does the OK Relay indicate on this System Monitor?A: The OK Relay monitors the health status of connected transducer systems and monitor channels. It changes state when a fault, inhibit condition, or power loss affects the monitored circuit. Field Installation Guidelines Install the 87890-01 System Monitor in the designated slot of a compatible Bently Nevada 3300 rack configuration. Connect power wiring through the Power Input Module (PIM) according to the rack wiring documentation. Maintain proper separation between power conductors and low-level vibration signal wiring to reduce electrical interference. Use shielded instrumentation wiring for transducer-related connections and terminate cable shields according to the site grounding practice. Verify supply voltage levels before commissioning the rack. Check the front panel LED indicators after installation. Confirm that all monitored voltage indicators display normal operation before enabling machinery protection functions. Ensure external contact inputs for System Reset and Trip Multiply functions use appropriate field wiring methods and avoid routing these signals near high-current switching circuits.

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  • Sale -50% 79482-01 3300 Series Dual Thrust Position Monitor Bently Nevada 79482-01 3300 Series Dual Thrust Position Monitor Bently Nevada

    Bently Nevada 79482-01 3300 Series Dual Thrust Position Monitor Bently Nevada

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    Bently Nevada 79482-01 3300 Series Dual Thrust Position Monitor The Bently Nevada 79482-01, also cataloged as the 79482-01 Dual Thrust Position Monitor, operates as a dedicated hardware component for axial shaft position measurement within Bently Nevada 3300 Series machinery monitoring systems. Hardware Specifications Parameter Specification Model 79482-01 Brand Bently Nevada Product Type Dual Thrust Position Monitor Series 3300 Series Origin United States Weight 2.8 kg Dimensions 5.7 cm x 20.3 cm x 33.0 cm Operating Temp 0 deg C to +65 deg C Power Consumption 24 VDC transducer power supply Voltage Compliance 0 to +12 VDC Input Signal Range +10.0 V to -24.0 V Output Resistance 50 Ohm Output Impedance 100 Ohm for voltage outputs Extension Cable Capacitance 69.9 pF/m Field Wiring Size 0.2 to 1.5 mm Frequency Response 0 to 10 kHz Minimum Target Size 15.2 mm Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The Bently Nevada 79482-01 Dual Thrust Position Monitor processes eddy-current proximity probe signals to measure shaft axial displacement relative to the thrust bearing clearance. The monitor converts probe gap voltage variations into position data and evaluates thrust movement against configured alarm thresholds. Additionally, the module supports dual-channel measurement architecture for thrust position applications. It allows two independent proximity probes to observe the same thrust collar or shaft position. Therefore, AND voting logic can reduce false alarm activation caused by individual probe failures or abnormal gap voltage conditions. The system evaluates gap voltage conditions because incorrect probe operation can appear as mechanical movement. For Bently Nevada proximity measurement systems, a gap voltage validation process commonly references -10 VDC target conditions to confirm proper probe operating range and signal integrity. Frequently Asked Questions Q: How does the 79482-01 measure thrust position?A: The 79482-01 uses eddy-current proximity probe inputs to measure the axial displacement of a rotating shaft. It analyzes the probe gap voltage signal and converts the measurement into thrust position data. Q: Can the monitor operate with a single proximity probe?A: The monitor can support single-channel configurations; however, dual-probe installation with AND voting logic is recommended for thrust position applications to reduce false trips caused by transducer faults. Q: What type of signal processing does the monitor provide?A: The monitor processes two independent axial position channels, applies alarm logic, and provides voltage output signals for integration with machinery protection systems. Field Installation Guidelines Install the 79482-01 monitor in accordance with the Bently Nevada 3300 Series rack configuration requirements. Verify that proximity probes are positioned toward the thrust collar or shaft target surface to obtain direct axial displacement measurements. Route probe extension cables separately from high-voltage power wiring to minimize electrical interference. Maintain proper cable shielding and connect shields according to the system grounding practice. Before operation, verify probe gap voltage, input signal range, and channel response. Confirm that both thrust position channels provide stable measurements before enabling alarm or shutdown logic.

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  • Sale -50% Bently Nevada Dual Galvanic Isolator 170190-01 1034549-40 Bently Nevada Dual Galvanic Isolator 170190-01 1034549-40

    Bently Nevada Bently Nevada Dual Galvanic Isolator 170190-01 1034549-40

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    Bently Nevada 170190-01 Dual Galvanic Isolator The Bently Nevada 170190-01, also cataloged as the 170190 Dual Galvanic Isolator, operates as a dedicated hardware component for intrinsically safe transducer signal isolation within the Bently Nevada FieldMonitor system. Hardware Specifications Parameter Specification Model 170190-01 Brand Bently Nevada Product Type Dual Galvanic Isolator System Platform FieldMonitor 1701 Machinery Protection System Function Two-channel galvanic isolation for intrinsically safe transducer installations Supported Transducers Proximity transducers including compatible 1701 series sensors Channels 2 channels Power Consumption +24 VDC nominal input, +19 VDC to +33 VDC operating range Operating Temp -20 deg C to +70 deg C ambient air next to module Storage Temp -40 deg C to +85 deg C Relative Humidity 5% to 95% non-condensing Weight Approximately 200 g Signal Isolation Galvanic isolation between hazardous field circuits and safe area circuits Frequency Response 1 Hz to 5 kHz: +3% to +1%; 5 kHz to 10 kHz: 0% to -2%; 10 kHz to 20 kHz: -1% to -4% Phase Shift 0 Hz to 200 Hz: <= 0.86 deg; 1 kHz to 10 kHz: <= 43.2 deg Eddy-Current Probe Signal Isolation and Rotor Monitoring Interface The 170190-01 Dual Galvanic Isolator processes proximity transducer signals used for machinery displacement and vibration monitoring. It maintains electrical separation between hazardous area sensor circuits and monitoring electronics. Therefore, the module supports intrinsically safe installations without external safety barriers. The isolator maintains signal characteristics required for Bently Nevada eddy-current probe scaling. It supports accurate probe output transmission while preserving gap voltage information used for probe condition verification. The FieldMonitor architecture can evaluate probe operating conditions, including gap voltage validation with typical -10 VDC target references. The module also supports rotor dynamics monitoring applications by maintaining stable signal transfer for shaft displacement and vibration measurements. Additionally, the galvanic isolation design reduces unwanted electrical interaction and improves cross-talk suppression between monitoring channels. Frequently Asked Questions Q: Can the 170190-01 directly replace external safety barriers in an intrinsically safe installation?A: The 170190-01 provides galvanic isolation for compatible FieldMonitor transducer installations and removes the requirement for external safety barriers when applied within the approved system configuration. Q: How many transducer signals can one 170190-01 module process?A: The module provides two independent channels for connecting compatible proximity transducer signals. Q: Does the 170190-01 require an external intrinsically safe ground connection?A: The galvanic isolation design eliminates the need for a dedicated intrinsically safe ground when the module is installed according to the FieldMonitor system requirements. Field Installation Guidelines Install the 170190-01 module only with compatible Bently Nevada FieldMonitor hardware and approved terminal bases. Verify the transducer type and wiring configuration before connecting field circuits. Maintain separation between hazardous area wiring and non-intrinsically safe wiring paths. Use appropriate cable shielding practices to reduce electrical noise during vibration and displacement signal transmission. Connect cable shields according to the system grounding specification and avoid creating unintended ground loops. Confirm probe polarity, signal routing, and gap voltage conditions before commissioning the monitoring channel. Provide sufficient enclosure ventilation and maintain environmental conditions within the specified operating range.

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  • Sale -50% Bently Nevada 330101-00-20-10-02-CN 3300 XL 8 mm Proximity Probe Bently Nevada 330101-00-20-10-02-CN 3300 XL 8 mm Proximity Probe

    Bently Nevada Bently Nevada 330101-00-20-10-02-CN 3300 XL 8 mm Proximity Probe

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    Bently Nevada 330101-00-20-10-02-CN 3300 XL 8 mm Proximity Probe The Bently Nevada 330101-00-20-10-02-CN, also cataloged as the 330101 3300 XL 8 mm Proximity Probe, operates as a dedicated hardware component for shaft displacement measurement within the 3300 XL Proximity Transducer System. Hardware Specifications Parameter Specification Model 330101-00-20-10-02-CN Brand Bently Nevada Product Type 3300 XL 8 mm Proximity Probe Origin USA Weight 0.05 kg Dimensions Estimated shipping size: 1.6 x 1.3 x 112 cm Power Consumption Passive probe element, powered by compatible Proximitor Sensor Thread Type 3/8-24 UNF thread Probe Construction Armored design Unthreaded Length 0.0 in Overall Case Length 2.0 in Total Length 1.0 meter (3.3 feet) Connector Type Miniature coaxial ClickLoc connector standard cable Cable Option Standard cable with miniature coaxial ClickLoc connector Agency Approval CSA, ATEX, IECEx approvals System Compatibility 3300 XL 8 mm Proximity Transducer System Eddy-Current Probe Scaling and Rotor Dynamics Characteristics The Bently Nevada 3300 XL 8 mm Proximity Probe uses eddy-current measurement technology to convert shaft displacement into proportional electrical signals through a compatible Proximitor Sensor. The probe maintains interchangeable mechanical dimensions across 3300 XL 8 mm system components, allowing replacement without individual probe, extension cable, and sensor matching procedures. Additionally, the probe supports rotor dynamics monitoring by providing consistent gap measurement performance for vibration and position analysis. The system uses gap voltage validation with typical -10 VDC target conditions to verify probe operating range and mechanical installation alignment. The probe design incorporates signal stability characteristics required for rotating equipment monitoring. Furthermore, the 3300 XL 8 mm configuration supports API 670 mechanical installation requirements for probe configuration, linear range, accuracy, and temperature stability. Frequently Asked Questions Q: Can the 330101-00-20-10-02-CN probe operate independently without a Proximitor Sensor?A: No. The probe functions as part of the 3300 XL Proximity Transducer System and requires a compatible Proximitor Sensor for signal conditioning and output. Q: What connector configuration does this model use?A: This model uses a miniature coaxial ClickLoc connector with a standard cable configuration. Q: Does the probe require individual calibration with the extension cable and sensor?A: No. The 3300 XL 8 mm system design supports interchangeable probes, extension cables, and Proximitor Sensors within the specified system configuration. Field Installation Guidelines Install the probe using the specified 3/8-24 UNF threaded mounting interface and maintain correct mechanical alignment with the monitored shaft surface. Verify probe gap voltage after installation to confirm the probe operates within the intended measurement range. A typical validation reference uses a -10 VDC gap voltage target. Route the coaxial cable away from high-current power conductors and strong electromagnetic interference sources. Maintain proper cable shielding and grounding practices according to the 3300 XL system installation requirements. Confirm connector engagement at the ClickLoc interface before commissioning the monitoring channel. Inspect the armored section during installation to prevent excessive bending radius stress or mechanical damage.

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  • Sale -50% 330102-00-40-10-01-05 3300 XL 8 mm Proximity Probe Bently Nevada 330102-00-40-10-01-05 3300 XL 8 mm Proximity Probe Bently Nevada

    Bently Nevada 330102-00-40-10-01-05 3300 XL 8 mm Proximity Probe Bently Nevada

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    Bently Nevada 330102-00-40-10-01-05 3300 XL 8 mm Proximity Probe Configured for shaft displacement measurement in the Bently Nevada 3300 XL Proximity Transducer System, the Bently Nevada 330102-00-40-10-01-05 (330102 3300 XL 8 mm Proximity Probe) provides direct eddy-current sensing output for machinery vibration and position monitoring circuits. Hardware Specifications Parameter Specification Model 330102-00-40-10-01-05 Brand Bently Nevada Product Type 3300 XL 8 mm Proximity Probe Origin USA Weight 0.15 kg Dimensions Estimated shipping size: 1.5 x 1.3 x 117 cm Operating Temp Not specified in provided data Power Consumption Passive eddy-current probe, powered by compatible proximity transducer system Probe Thread 3/8-24 UNF thread Probe Construction Armored probe design Unthreaded Length 0.0 in Overall Case Length 4.0 in Total Length 1.0 meter (3.3 feet) Cable Type Standard cable with miniature coaxial ClickLoc connector and connector protector Agency Approvals CSA, ATEX, IECEx Tariff Code 8537101190 Shipment Location Xiamen, China Eddy-Current Probe Scaling and Gap Voltage Validation The 330102-00-40-10-01-05 uses Bently Nevada 3300 XL eddy-current measurement technology to convert shaft surface movement into electrical displacement signals. The probe operates with compatible proximity sensor electronics that maintain calibrated probe scaling for accurate vibration and position measurement. Furthermore, the system uses gap voltage validation methods during installation. Technicians typically verify probe gap voltage conditions against the -10 VDC target range to confirm correct mechanical positioning between the probe tip and the rotating target surface. The armored construction reduces mechanical damage risks during field installation. In addition, the miniature coaxial ClickLoc connector maintains signal integrity between the probe and extension cable assembly. Frequently Asked Questions Q: What measurement principle does the 330102-00-40-10-01-05 use?A: The probe uses eddy-current sensing technology to measure shaft displacement without physical contact with the rotating target. Q: What connector configuration does this probe include?A: This model includes a miniature coaxial ClickLoc connector with a connector protector and standard cable configuration. Q: Can this probe operate as a standalone measurement device?A: No. The probe requires a compatible Bently Nevada proximity transducer interface to provide power excitation and process the displacement signal. Field Installation Guidelines Install the probe using the specified 3/8-24 UNF threaded mounting interface and verify mechanical alignment before operation. Confirm the probe tip faces the target surface with correct clearance according to the associated Bently Nevada transducer system installation procedure. Check gap voltage during commissioning to verify proper probe positioning and signal response. Route the coaxial cable away from high-current power conductors to minimize electrical interference. Maintain connector cleanliness and ensure the ClickLoc connector is fully secured before system startup. Connect cable shielding according to the machinery monitoring system grounding requirements.

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  • Sale -50% 330171-12-41-10-02-05 3300 5mm Proximity Probe Bently Nevada 330171-12-41-10-02-05 3300 5mm Proximity Probe Bently Nevada

    Bently Nevada 330171-12-41-10-02-05 3300 5mm Proximity Probe Bently Nevada

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    Bently Nevada 330171-12-41-10-02-05 3300 5mm Proximity Probe The Bently Nevada 330171-12-41-10-02-05, also cataloged as the 330171 3300 5mm Proximity Probe, operates as a dedicated hardware component for eddy-current displacement measurement within the 3300 Proximity Transducer System. The probe converts shaft position changes into proportional electrical signals through a compatible 3300 XL Proximitor Sensor and extension cable assembly. Hardware Specifications Parameter Specification Model 330171-12-41-10-02-05 Brand Bently Nevada Product Type 3300 5mm Proximity Probe Origin USA Weight 0.16 kg Dimensions Estimated shipping size: 18 x 18 x 1.5 cm Operating Temp Wide temperature range operation supported by 3300 XL Proximity Transducer System design Power Consumption Passive probe element; powered through connected Proximitor Sensor system Probe Thread Type 1/4-28 UNF thread Armor Option Without armor Unthreaded Length Option 1.2 in Overall Case Length Option 4.1 in Total Length Option 1.0 metre (3.3 feet) Connector Option Miniature coaxial ClickLoc connector standard cable Agency Approval Option Multiple Approvals Measurement Principle Eddy-current non-contact displacement measurement Signal Output Voltage proportional to distance between probe tip and conductive target surface Measurement Application Shaft vibration, shaft position, Keyphasor measurement, speed measurement Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The 330171 series probe uses eddy-current sensing technology to measure conductive target displacement without mechanical contact. The connected Proximitor Sensor scales the probe signal according to the probe tip-to-target gap distance. The system supports rotor dynamics analysis by providing vibration and position data from fluid-film bearing machines. In addition, the probe output maintains signal stability across temperature variations through matched electrical characteristics with compatible 3300 XL extension cables and Proximitor Sensors. The installation process requires gap voltage validation to confirm the operating range. Bently Nevada proximity systems commonly use approximately -10 VDC gap voltage targets for proper probe positioning and signal calibration. Frequently Asked Questions Q: What measurement signals can the 330171-12-41-10-02-05 provide?A: The probe provides displacement-related signals through a connected Proximitor Sensor. The system measures both static shaft position and dynamic vibration signals. Q: Can the 330171-12-41-10-02-05 operate without a Proximitor Sensor?A: No. The probe requires a compatible Proximitor Sensor and extension cable to convert eddy-current measurements into usable voltage output signals. Q: What cable connection does this probe use?A: This configuration uses a miniature coaxial ClickLoc connector with a standard cable assembly. Field Installation Guidelines Install the 1/4-28 UNF threaded probe with correct mechanical engagement to maintain probe alignment with the monitored shaft surface. Maintain proper probe tip clearance from the conductive target area before system calibration. Route the coaxial cable away from high-current conductors and electromagnetic interference sources. Connect cable shielding according to the monitoring system grounding requirements to reduce electrical noise. Verify the probe gap voltage after installation before placing the machinery monitoring channel into service. Avoid mechanical damage to the probe tip, connector interface, and cable jacket during installation. Confirm compatibility between the probe, extension cable, and Proximitor Sensor before commissioning.

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  • Sale -50% Bently Nevada 330190-085-00-05 3300 XL ETR Extension Cable Bently Nevada 330190-085-00-05 3300 XL ETR Extension Cable

    Bently Nevada Bently Nevada 330190-085-00-05 3300 XL ETR Extension Cable

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    Bently Nevada 330190-085-00-05 3300 XL ETR Extension Cable Configured for high-temperature signal transmission in the 3300 XL 8 mm Proximity Transducer System, the Bently Nevada 330190-085-00-05 (330190 3300 XL ETR Extension Cable) provides direct electrical connection between the proximity probe and Proximitor Sensor. Hardware Specifications Parameter Specification Model 330190-085-00-05 Brand Bently Nevada Product Type 3300 XL Extended Temperature Range (ETR) Extension Cable Origin USA Weight 0.25 kg Dimensions 20 x 20 x 2.5 cm estimated shipping size Cable Length 8.5 meters (27.9 feet) Cable Type Standard cable Cable Impedance 75 Ohm triaxial cable Operating Temp Extension cable rated up to 260 deg C (500 deg F) Power Consumption Passive cable component, no external power consumption System Compatibility 3300 XL 8 mm Proximity Transducer System Probe Compatibility Standard and Extended Temperature Range (ETR) probes Agency Approvals CSA, ATEX, IECEx Tariff Code 8537101190 Shipment Location Xiamen, China Eddy-Current Signal Transmission and Rotor Dynamics Monitoring The 330190-085-00-05 maintains the electrical signal path between the 3300 XL 8 mm probe and the 3300 XL Proximitor Sensor. Therefore, the system converts probe gap distance into proportional output voltage for shaft position and vibration measurements. The ETR extension cable supports applications where cable exposure exceeds the standard 177 deg C temperature specification. In addition, the cable construction allows operation with ETR probes rated up to 218 deg C and cable temperature exposure up to 260 deg C. The 3300 XL system uses eddy-current measurement technology to monitor conductive shaft targets. Furthermore, the transducer chain supports rotor dynamics analysis, radial vibration monitoring, axial position measurement, and Keyphasor reference signals. The system requires proper eddy-current probe scaling and gap voltage validation during commissioning. The standard operating target for probe gap voltage validation is typically -10 VDC, which confirms the probe operating range and signal conditioning accuracy. Frequently Asked Questions Q: Can the 330190-085-00-05 operate with standard 3300 XL Proximitor Sensors?A: Yes. The ETR extension cable uses the standard 3300 XL signal interface and operates with compatible 3300 XL Proximitor Sensors. Q: What temperature limitation applies to the 330190-085-00-05 cable?A: The extension cable supports temperatures up to 260 deg C (500 deg F). The total system accuracy is limited by the ETR component specifications when ETR components are installed. Q: Can this cable replace existing 3300 series extension cables?A: The cable is interchangeable within compatible 3300 XL 8 mm systems and supports upgrades or replacements in existing installations when system configuration requirements are met. Field Installation Guidelines Install the extension cable according to the 3300 XL Proximity Transducer System wiring requirements. Maintain separation between the transducer cable and high-current power conductors to reduce electrical interference. Connect cable shielding according to the system grounding specification to minimize signal noise. Avoid sharp bending, mechanical stress, and excessive pulling force during cable routing. Verify probe, extension cable, and Proximitor Sensor compatibility before commissioning. Perform gap voltage validation after installation to confirm correct probe positioning and signal operation.

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  • Sale -50% 330130-040-12-CN 3300 XL Extension Cable | Bently Nevada 330130-040-12-CN 3300 XL Extension Cable | Bently Nevada

    Bently Nevada 330130-040-12-CN 3300 XL Extension Cable | Bently Nevada

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    Bently Nevada 330130-040-12-CN 3300 XL Extension Cable The Bently Nevada 330130-040-12-CN, also cataloged as the 330130 3300 XL Extension Cable, operates as a dedicated hardware component for eddy-current probe signal extension within the Bently Nevada 3300 XL Proximity Transducer System. Hardware Specifications Parameter Specification Model 330130-040-12-CN Brand Bently Nevada Product Type 3300 XL Extension Cable Origin USA Weight 0.034 kg Dimensions Not specified Operating Temp -51 deg C to +177 deg C (-60 deg F to +351 deg F) Power Consumption Passive cable component, no external power consumption Cable Length 4.0 meters (13.1 feet) Cable Construction 75 ohm triaxial, FEP insulated cable Cable Option FluidLoc cable with connector protectors Connector Protection Integrated connector protectors Probe Cable Compatibility Supports 0.5 m, 1 m, 1.5 m, 2 m, 5 m, and 9 m total probe length configurations Agency Approval CN approval option for country-specific requirements Eddy-Current Signal Extension and Rotor Dynamics Interface The 330130-040-12-CN extension cable transfers eddy-current probe signals between the proximity probe and the Proximitor sensor module in the 3300 XL transducer chain. The 75 ohm triaxial FEP insulated construction maintains signal characteristics for shaft displacement and vibration measurement circuits. Furthermore, the cable design supports Bently Nevada eddy-current probe scaling requirements by maintaining stable impedance characteristics across the measurement path. Proper cable selection helps preserve gap voltage validation performance, including typical -10 VDC target gap reference conditions used during proximity system calibration. The FluidLoc cable option provides additional protection against fluid migration along the cable structure. Additionally, the connector protector design reduces mechanical stress at connection points during field installation. Frequently Asked Questions Q: Does the 330130-040-12-CN cable require external power supply?A: No. The 330130-040-12-CN is a passive extension cable and does not consume electrical power. It transfers the proximity probe signal between connected Bently Nevada transducer components. Q: What cable construction does the 330130-040-12-CN use?A: The cable uses a 75 ohm triaxial FEP insulated construction designed for eddy-current proximity measurement signal transmission. Q: Can the 330130-040-12-CN be installed with different probe length configurations?A: Yes. The cable supports 3300 XL probe system configurations using total probe lengths of 0.5 m, 1 m, 1.5 m, 2 m, 5 m, or 9 m according to system configuration requirements. Field Installation Guidelines Install the 330130-040-12-CN cable according to the Bently Nevada 3300 XL proximity system wiring requirements. Route the extension cable away from high-current power cables and strong electromagnetic interference sources. Maintain proper cable bending practices to prevent damage to the triaxial shielding structure. Verify connector cleanliness before mating the cable with the probe and Proximitor sensor. Confirm shield continuity and grounding practices follow the installed monitoring system requirements. Avoid unnecessary cable loops near rotating equipment to reduce mechanical stress and signal disturbance. Verify gap voltage readings after installation to confirm correct proximity probe operating conditions.

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  • Sale -50% Bently Nevada 330190-045-00-00 3300 XL Extension Cable Bently Nevada 330190-045-00-00 3300 XL Extension Cable

    Bently Nevada Bently Nevada 330190-045-00-00 3300 XL Extension Cable

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    Bently Nevada 330190-045-00-00 3300 XL Extension Cable The Bently Nevada 330190-045-00-00, also cataloged as the 330190 Extension Cable, operates as a dedicated hardware component for proximity signal transmission within the Bently Nevada 3300 XL Transducer System. Hardware Specifications Parameter Specification Model 330190-045-00-00 Brand Bently Nevada Product Type 3300 XL Extension Cable Origin USA Weight 0.26 kg Dimensions 20 x 20 x 2 cm estimated shipping size Cable Length 4.5 meters (14.8 feet) Cable Type Standard cable Cable Construction 75 Ohm triaxial cable, fluoroethylenepropylene (FEP) insulated Output Resistance 50 Ohm Extension Cable Capacitance 69.9 pF/m (21.3 pF/ft) typical Operating Temp Not specified in supplied data Power Consumption Passive cable component, no external power consumption Eddy-Current Signal Transmission and Rotor Monitoring Characteristics The 330190-045-00-00 extension cable maintains the electrical connection between Bently Nevada proximity probes and monitoring instrumentation. Therefore, it supports eddy-current probe scaling by preserving signal characteristics required for shaft displacement and vibration measurement. The cable construction uses a 75 Ohm triaxial design with FEP insulation. Additionally, the controlled capacitance value supports stable high-frequency signal transmission across the 3300 XL proximity measurement chain. For rotor dynamics applications, the extension cable provides a controlled impedance path between the probe and signal conditioner. The installation arrangement helps maintain accurate gap voltage validation, including typical Bently Nevada proximity system requirements around -10 VDC target gap conditions. The triaxial shielding structure reduces electrical interference and supports cross-talk suppression between adjacent monitoring channels. As a result, the cable maintains signal integrity in machinery monitoring installations where multiple proximity channels operate together. Frequently Asked Questions Q: What function does the Bently Nevada 330190-045-00-00 provide in the 3300 XL system?A: The cable extends the electrical connection between a 3300 XL proximity probe and the associated monitoring module while maintaining specified impedance and capacitance characteristics. Q: Is the 330190-045-00-00 cable an active electronic module?A: No. The unit is a passive extension cable and does not require external power or firmware configuration. Q: What cable construction does this model use?A: The model uses a 75 Ohm triaxial cable design with FEP insulation and a typical capacitance of 69.9 pF/m. Field Installation Guidelines Install the 330190-045-00-00 cable according to the Bently Nevada 3300 XL system wiring requirements. Route the cable away from high-current power conductors, variable frequency drive outputs, and strong electromagnetic interference sources. Maintain proper separation between multiple proximity signal cables to reduce possible signal coupling. Connect shielding according to the monitoring system grounding practice and avoid creating unwanted ground loops. Verify cable connectors, probe connections, and monitor terminals before system commissioning. Confirm the proximity system gap voltage after installation to validate correct probe positioning and signal chain operation. Avoid excessive bending, mechanical stress, or damage to the FEP insulated cable surface.

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  • Sale -50% 330171-00-20-10-02-00 Bently Nevada  3300 5 mm Proximity Probe 330171-00-20-10-02-00 Bently Nevada  3300 5 mm Proximity Probe

    Bently Nevada 330171-00-20-10-02-00 Bently Nevada 3300 5 mm Proximity Probe

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    Bently Nevada 330171-00-20-10-02-00 3300 5 mm Proximity Probe The Bently Nevada 330171-00-20-10-02-00, also cataloged as the 330171 3300 5 mm Proximity Probe, operates as a dedicated hardware component for eddy-current displacement measurement and vibration monitoring within the 3300 Transducer System. Hardware Specifications Parameter Specification Model 330171-00-20-10-02-00 Brand Bently Nevada Product Type 3300 5 mm Proximity Probe Origin USA Dimensions Overall case length: 2.0 in; unthreaded length: 0.0 in Operating Temp -35 deg C to +177 deg C Power Consumption Passive probe element; powered by compatible Proximitor sensor Measurement Technology Eddy-current non-contact displacement sensing Thread Type 1/4-28 UNF Cable Length 1.0 meter (3.3 feet) Cable Type 75 ohm triaxial FEP insulated standard cable without armor Connector Type Miniature coaxial ClickLoc connector Probe Tip Material Polyphenylene sulfide (PPS) Probe Case Material AISI 303 or 304 stainless steel Linear Range 2.0 mm (80 mils) Linear Range Position Approximately 0.25 mm to 2.3 mm from target surface Recommended Gap Setting 1.27 mm (50 mils) Incremental Scale Factor 7.87 V/mm (200 mV/mil) +/-6.5% typical Deviation from Best Fit Straight Line Less than +/-0.038 mm (+/-1.5 mil) typical Frequency Response 0 to 6.5 kHz (+0, -3 dB) Case Torque 5.1 N m recommended; 7.3 N m maximum Connector Configuration Miniature coaxial ClickLoc connector, gold-plated brass/beryllium copper Eddy-Current Measurement and Rotor Dynamics Characteristics The 330171-00-20-10-02-00 probe uses eddy-current sensing principles to convert shaft displacement into electrical signals for machinery protection systems. The probe operates with a matched Proximitor sensor and extension cable configuration, which maintains system calibration without individual component adjustment. Additionally, the probe provides stable eddy-current probe scaling through a defined incremental scale factor of 7.87 V/mm. Therefore, vibration amplitude, radial shaft movement, and axial position measurements can be processed by compatible 3300 monitoring modules. The probe supports rotor dynamics analysis by providing displacement signals required for vibration phase, shaft position, and mechanical movement evaluation. Moreover, proper gap voltage validation remains necessary during commissioning, with Bently Nevada systems typically using -10 VDC target gap voltage for compatible proximity measurement circuits. The probe design also minimizes signal interference through controlled cable construction and shielded triaxial wiring. Consequently, the measurement circuit maintains signal integrity in machinery monitoring installations. Frequently Asked Questions Q: Does the 330171-00-20-10-02-00 require individual calibration with the Proximitor sensor?A: No. The 3300 5 mm transducer system uses interchangeable probe, cable, and Proximitor sensor components without individual calibration matching. Q: What target material is used for the specified scale factor performance?A: The stated incremental scale factor applies to a standard AISI 4140 steel target material. Q: What installation parameter affects displacement measurement accuracy?A: Correct probe gap adjustment and gap voltage verification directly affect measurement accuracy. The compatible system normally validates the operating gap near -10 VDC. Field Installation Guidelines Install the probe with the specified 1/4-28 UNF mounting thread and maintain proper mechanical alignment with the monitored shaft surface. Verify the probe tip position before operation and adjust the installation gap according to the connected Proximitor sensor requirements. During commissioning, check the gap voltage output to confirm the probe operates inside the linear measurement range. Route the 75 ohm triaxial cable away from high-current power conductors and variable frequency drive output cables to reduce electrical interference. Maintain proper connector protection because exposed ClickLoc connectors require suitable environmental protection. Ensure the probe case contacts the machine mounting structure correctly when grounding requirements apply. Confirm cable routing, connector locking, and mechanical clearance before placing the machinery protection channel into service.

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  • Sale -50% Bently Nevada 330130-030-00-05 3300 XL Standard Extension Cable Bently Nevada 330130-030-00-05 3300 XL Standard Extension Cable

    Bently Nevada Bently Nevada 330130-030-00-05 3300 XL Standard Extension Cable

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    Bently Nevada 330130-030-00-05 3300 XL Standard Extension Cable Configured for signal transmission between proximity probes and proximity sensors in the 3300 XL Proximity Transducer System, the Bently Nevada 330130-030-00-05 (330130 Standard Extension Cable) provides direct electrical connection through a fixed-length extension cable assembly. Hardware Specifications Parameter Specification Model 330130-030-00-05 Brand Bently Nevada Product Type 3300 XL Standard Extension Cable Origin USA Weight 0.22 kg Dimensions 20.4 x 22.2 x 3.5 cm (estimated shipping size) Cable Length 3.0 meters Cable Configuration Standard cable Connector Protection Standard cable option Agency Approvals CSA, ATEX, IECEx Power Consumption Passive cable component, no external power consumption Eddy-Current Signal Transmission and Rotor Monitoring Interface The Bently Nevada 330130-030-00-05 extension cable transfers eddy-current proximity probe signals within the 3300 XL Proximity Transducer System. It maintains the electrical connection between the probe and compatible signal conditioning electronics while preserving measurement signal integrity. The cable assembly supports machinery monitoring applications where probe extension distance requires a dedicated interconnection component. Therefore, proper cable routing, shielding, and connector protection directly affect vibration and shaft position measurement quality. The 3300 XL system uses calibrated probe, extension cable, and proximity sensor combinations. Consequently, technicians must verify cable compatibility during installation to maintain correct probe scaling characteristics and gap voltage validation requirements. Bently Nevada monitoring systems typically validate probe operating conditions around the -10 VDC gap voltage target range. Frequently Asked Questions Q: Is the 330130-030-00-05 extension cable an active electronic module?A: No. The 330130-030-00-05 is a passive extension cable assembly. It does not contain signal processing circuits or require external power. Q: Can this cable be installed with any Bently Nevada proximity probe?A: No. The cable must match the compatible 3300 XL probe and proximity sensor configuration to maintain correct electrical characteristics and calibration. Q: What installation practice is required for signal protection?A: Installers should maintain proper cable separation from high-current conductors and apply correct shield grounding practices according to the monitoring system installation requirements. Field Installation Guidelines Verify the cable part number before installation and confirm compatibility with the connected 3300 XL probe and proximity sensor. Route the extension cable away from high-voltage and high-current power lines to reduce electromagnetic interference. Avoid sharp bending, mechanical stress, or excessive pulling force on the cable assembly. Maintain proper connector protection during installation to prevent contamination or physical damage. Confirm the complete probe-cable-driver combination before commissioning the vibration or shaft position monitoring channel. Check signal stability and gap voltage readings after installation to verify correct eddy-current measurement operation.

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  • Sale -50% 330910-00-03-10-02-00 Bently Nevada 3300 NSv Proximity Probe 330910-00-03-10-02-00 Bently Nevada 3300 NSv Proximity Probe

    Bently Nevada 330910-00-03-10-02-00 Bently Nevada 3300 NSv Proximity Probe

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    Bently Nevada 330910-00-03-10-02-00 3300 NSv Proximity Probe The Bently Nevada 330910-00-03-10-02-00, also cataloged as the 330910 3300 NSv Proximity Probe, operates as a dedicated hardware component for non-contact shaft displacement measurement within Bently Nevada TSI monitoring systems. The probe uses eddy-current sensing technology to provide proportional vibration and position signals from rotating machinery targets. Hardware Specifications Parameter Specification Model 330910-00-03-10-02-00 Brand Bently Nevada Product Series 3300 NSv Proximity Probes Product Type Eddy-Current Proximity Probe Origin USA Weight 0.15 kg Dimensions Estimated shipping size: 68.3 x 1.7 x 2 cm Thread Type M10 x 1 Armor Configuration With armor Unthreaded Length 0 mm Overall Case Length 30 mm Total Length 1.0 meter (39 in) Connector Type Miniature coaxial ClickLoc connector Cable Type Standard cable Measurement Principle Eddy-current non-contact displacement measurement Power Consumption Supplied through compatible Bently Nevada proximity system electronics Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The 330910-00-03-10-02-00 probe converts shaft displacement changes into proportional electrical signals through eddy-current field variation. Therefore, the connected monitoring channel can process radial vibration, axial position, or rotational displacement data through compatible Bently Nevada signal conditioning modules. The 3300 NSv design applies probe scaling characteristics for compact machinery applications where installation clearance limits standard probe installation. In addition, the sensor geometry supports rotor dynamics evaluation by maintaining stable measurement performance near rotating conductive targets. The probe system requires correct gap voltage adjustment during commissioning. Field technicians typically verify the probe operating gap using the Bently Nevada monitor input signal, with standard setup procedures referencing a -10 VDC target gap voltage for proper measurement range validation. Frequently Asked Questions Q: What measurement technology does the 330910-00-03-10-02-00 use?A: The probe uses eddy-current technology to measure shaft displacement without physical contact between the probe tip and the rotating target. Q: What connector configuration does this probe provide?A: This model uses a miniature coaxial ClickLoc connector with a standard cable configuration. Q: Does the probe require agency approval certification?A: The provided configuration specifies that no agency approval option is included. Field Installation Guidelines Install the M10 x 1 threaded probe body with correct mechanical alignment to the target surface. Maintain proper probe gap adjustment before connecting the monitoring channel. Route the coaxial cable away from high-current power conductors to reduce electromagnetic interference. Connect the cable shield according to the installed Bently Nevada monitoring system grounding practice. Verify signal polarity, gap voltage, and channel scaling after mechanical installation. Avoid excessive bending or mechanical stress on the miniature coaxial ClickLoc connector area.

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  • Sale -50% 330910-00-07-10-02-00 3300 NSv Proximity Probe Bently Nevada 330910-00-07-10-02-00 3300 NSv Proximity Probe Bently Nevada

    Bently Nevada 330910-00-07-10-02-00 3300 NSv Proximity Probe Bently Nevada

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    Bently Nevada 330910-00-07-10-02-00 3300 NSv Proximity Probe The Bently Nevada 330910-00-07-10-02-00, also cataloged as the 330910 3300 NSv Proximity Probe, operates as a dedicated hardware component for eddy-current shaft displacement measurement within Bently Nevada 3300 XL NSv Proximity Transducer Systems. Hardware Specifications Parameter Specification Model 330910-00-07-10-02-00 Brand Bently Nevada Product Series 3300 NSv Proximity Probe / 3300 XL NSv Proximity Transducer Series Origin USA Dimensions 70 mm case length, M10 x 1 metric thread, 1.0 m integral cable Operating Temp -51 deg C to +177 deg C Power Consumption Passive probe device; power supplied by matching 3300 XL NSv Proximitor Sensor Measurement Type Eddy-current non-contact displacement measurement Target Application Small shaft radial vibration and axial position monitoring Target Size Capability Shafts smaller than 51 mm or flat axial targets smaller than 15 mm Incremental Scale Factor 7.87 V/mm (200 mV/mil) typical with matching Proximitor Sensor Linear Operating Range Approximately 1.5 mm (60 mils) Frequency Response 0 Hz to 10 kHz (+0, -3 dB typical) Calibration Target Material AISI 4140 steel Probe Thread M10 x 1 metric thread Probe Tip Material Polyphenylene sulfide (PPS) Probe Case Material AISI 304 stainless steel Cable Type 1.0 m integral fluid-resistant cable with miniature ClickLoc connector Cable Resistance 4.2 +/- 0.5 ohm DC resistance between center conductor and outer shield Maximum Mounting Torque 33.9 N m (300 in lb) Recommended Installation Torque 5.1 N m (45 in lb) Humidity Limit 100% condensing, sealed probe construction Eddy-Current Probe Scaling and Gap Voltage Validation The 330910-00-07-10-02-00 uses eddy-current sensing technology to convert shaft surface displacement into proportional electrical output through a matched 3300 XL NSv Proximitor Sensor. The system provides a nominal scale factor of 7.87 V/mm for vibration and position monitoring. During installation, technicians validate the probe gap voltage to maintain the correct operating point. The monitoring loop typically references the -10 VDC gap voltage target used by Bently Nevada proximity measurement systems. Therefore, correct probe positioning directly affects displacement accuracy and rotor dynamics analysis. The probe design also supports small-target rotor applications where standard probe diameters cannot achieve required mechanical clearance. In addition, the narrow side-view configuration reduces installation restrictions around compact rotating assemblies. Frequently Asked Questions Q: Can the 330910-00-07-10-02-00 operate as a standalone sensor?A: No. The probe requires a compatible 3300 XL NSv Proximitor Sensor and appropriate extension cable to complete the eddy-current measurement circuit. Q: What target materials are used for standard calibration?A: The probe is calibrated for AISI 4140 steel targets. Different target materials may require calibration verification. Q: What installation condition affects measurement accuracy most?A: Probe gap setting, mounting stability, cable routing, and correct shield connection directly influence displacement signal quality. Field Installation Guidelines Install the probe with the M10 x 1 metric threaded body according to the mechanical mounting drawing. Set the probe gap within the specified linear operating region before commissioning the monitoring channel. Verify the gap voltage at the connected Proximitor Sensor before operating the machinery. Maintain cable separation from high-current power conductors to reduce electrical interference. Connect cable shielding according to the monitoring system grounding practice. Avoid excessive bending stress near the probe cable termination and ClickLoc connector area. Confirm the probe tip alignment with the shaft or axial target surface before final tightening. Use the recommended mounting torque to prevent mechanical damage while maintaining sensor

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  • Sale -50% 330901-00-16-05-02-CN 3300 NSv Proximity Probe Bently Nevada 330901-00-16-05-02-CN 3300 NSv Proximity Probe Bently Nevada

    Bently Nevada 330901-00-16-05-02-CN 3300 NSv Proximity Probe Bently Nevada

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    Bently Nevada 330901-00-16-05-02-CN 3300 NSv Proximity Probe The Bently Nevada 330901-00-16-05-02-CN, also cataloged as the 330901 3300 NSv Proximity Probe, operates as a dedicated eddy-current measurement component for shaft displacement monitoring within the 3300 NSv Proximity Transducer System. Hardware Specifications Parameter Specification Model 330901-00-16-05-02-CN Brand Bently Nevada Product Series 3300 NSv Proximity Probe Origin USA Weight 0.14 kg Dimensions 1/4-28 UNF threaded probe, 1.6 inch overall case length, 0.5 meter integrated cable Operating Temp -52 deg C to +177 deg C Power Consumption Supplied by 3300 XL NSv Proximitor Sensor, -17.5 VDC to -26 VDC system supply Measurement Principle Eddy-current non-contact displacement measurement Linear Range 1.5 mm (60 mils) Average Scale Factor 7.87 V/mm (200 mV/mil) nominal Frequency Response 0 to 10 kHz Output Resistance 50 Ohm Thread Type 1/4-28 UNF unarmored design Probe Tip Material Polyphenylene Sulfide (PPS) Probe Case Material AISI 304 Stainless Steel Cable Type 75 Ohm coaxial cable with FEP insulation Connector Type Miniature gold-plated brass ClickLoc coaxial connector Maximum Thread Torque 7.3 N m maximum Eddy-Current Scaling and Rotor Dynamics Monitoring The 330901 series probe provides calibrated eddy-current displacement output through the 3300 XL NSv Proximitor Sensor. The system maintains a nominal scale factor of 7.87 V/mm, which allows the monitoring system to convert probe voltage variation into shaft position data. Furthermore, the probe supports rotor dynamics analysis by measuring shaft movement without physical contact. The narrow side-view construction reduces installation interference and supports applications where standard radial probes cannot achieve required clearance. The NSv system requires matched probe, extension cable, and Proximitor Sensor combinations. This configuration maintains gap voltage validation, signal linearity, and measurement accuracy during machinery operation. Proper installation normally verifies the operating gap voltage near the -10 VDC target condition. Frequently Asked Questions Q: Can the 330901-00-16-05-02-CN probe operate with standard 3300 XL 8 mm Proximitor Sensors?A: No. The 330901 NSv probe requires a compatible 3300 XL NSv Proximitor Sensor and NSv extension cable configuration. Standard 3300 XL 8 mm components are not interchangeable. Q: What type of connector and cable assembly does this probe use?A: This model uses a miniature ClickLoc coaxial connector with a 0.5 meter FEP insulated coaxial cable. Q: How does the probe measure shaft displacement?A: The probe generates an eddy-current field at the probe tip. Changes in the distance between the probe and conductive shaft surface modify the electrical output signal, which the Proximitor Sensor converts into displacement data. Field Installation Guidelines Install the probe with the correct 1/4-28 UNF mounting hardware and maintain the specified mechanical clearance between the probe tip and the target surface. Route the coaxial cable away from high-current conductors, ignition sources, and strong electromagnetic interference areas. Avoid sharp cable bends that may affect cable insulation or signal stability. Connect the ClickLoc connector securely and verify that the probe, extension cable, and Proximitor Sensor form a matched calibrated system. During commissioning, measure the probe gap voltage and confirm the operating condition near the required -10 VDC target range. Check signal stability while rotating equipment operates under normal conditions.

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  • Sale -50% 330901-00-32-05-02-CN 3300 NSv Proximity Probe Bently Nevada 330901-00-32-05-02-CN 3300 NSv Proximity Probe Bently Nevada

    Bently Nevada 330901-00-32-05-02-CN 3300 NSv Proximity Probe Bently Nevada

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    Bently Nevada 330901-00-32-05-02-CN 3300 NSv Proximity Probe The Bently Nevada 330901-00-32-05-02-CN, also cataloged as the 330901 3300 NSv Proximity Probe, operates as a dedicated eddy-current measurement component for shaft displacement and vibration monitoring within Bently Nevada proximity monitoring systems. It provides non-contact gap measurement through a 5 mm probe tip, integrated 0.5 m cable, and ClickLoc coaxial connection. Hardware Specifications Parameter Specification Model 330901-00-32-05-02-CN Brand Bently Nevada Product Series 3300 NSv Proximity Probe Product Type Eddy-Current Proximity Sensors Origin USA Dimensions 3.2 inch overall case length, 5 mm tip diameter Operating Temp -51 deg C to +177 deg C Power Consumption Supplied by 3300 XL NSv Proximitor sensor Probe Thread Type 1/4-28 UNF-2A Unthreaded Length 0.0 inch Integral Cable Length 0.5 m Connector Type Miniature ClickLoc coaxial connector Linear Range 1.5 mm (60 mils) Average Scale Factor 7.87 V/mm (200 mV/mil) Recommended Gap Setting 1.0 mm (40 mils) Frequency Response 0 to 10 kHz (+/-3 dB) Output Impedance 50 ohm Probe DC Resistance 4.0 ohm +/- 0.5 ohm Housing Material AISI 303 or 304 Stainless Steel Tip Material Polyphenylene Sulfide (PPS) Cable Construction 75 ohm coaxial cable with FEP insulation Hazardous Area Approval NEPSI China Ex approval Eddy-Current Probe Scaling and Rotor Dynamics Measurement The 330901-00-32-05-02-CN uses eddy-current probe scaling characteristics to convert shaft displacement into proportional electrical signals. The probe operates with a 3300 XL NSv Proximitor and maintains a 7.87 V/mm average scale factor across its measurement range. Furthermore, the system supports rotor dynamics analysis by measuring dynamic radial vibration and static shaft position. The 1.5 mm linear range allows monitoring of mechanical movement through a stable electromagnetic sensing field. The probe requires gap voltage validation during installation. Field technicians typically verify the operating gap near the -10 VDC target range at the Proximitor output to confirm correct probe positioning and signal conditioning. The narrow side-view construction also reduces installation limitations in restricted mechanical locations while maintaining signal performance for small shaft targets. Frequently Asked Questions Q: What Proximitor module is required for the 330901-00-32-05-02-CN probe?A: The probe operates with a compatible 3300 XL NSv Proximitor sensor that provides excitation power and converts the eddy-current signal into vibration and position outputs. Q: Can this probe measure both vibration and shaft position?A: Yes. The probe measures dynamic shaft displacement for vibration monitoring and static displacement for position measurement when configured with the appropriate monitoring system. Q: What installation factors affect measurement accuracy?A: Correct probe gap adjustment, proper thread engagement, cable routing, and shield grounding practices directly affect measurement stability and signal quality. Field Installation Guidelines Install the probe using the specified 1/4-28 UNF mounting thread and maintain proper mechanical alignment with the monitored shaft surface. Adjust the probe gap according to the 3300 XL NSv system requirements and verify the gap voltage output before commissioning. Protect the ClickLoc coaxial connector from contamination, moisture, and mechanical stress during installation. Route the integral cable away from high-current conductors and strong electromagnetic interference sources. Connect cable shielding according to the monitoring system grounding design to reduce electrical noise. Avoid excessive bending or pulling force on the integral cable because mechanical stress can affect probe signal integrity. Confirm hazardous area installation requirements when applying the CN NEPSI approval option.

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  • Sale -50% Bently Nevada 330903-02-16-05-02-00 3300 NSv Proximity Probe Bently Nevada 330903-02-16-05-02-00 3300 NSv Proximity Probe

    Bently Nevada Bently Nevada 330903-02-16-05-02-00 3300 NSv Proximity Probe

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    Bently Nevada 330903-02-16-05-02-00 3300 NSv Proximity Probe The Bently Nevada 330903-02-16-05-02-00, also cataloged as the 330903 3300 NSv Proximity Probe, operates as a dedicated hardware component for eddy-current displacement measurement within the 3300 NSv Proximity Transducer System. The probe provides non-contact shaft position and vibration signals through a miniature coaxial connection. Hardware Specifications Parameter Specification Model 330903-02-16-05-02-00 Brand Bently Nevada Product Series 3300 NSv Proximity Probe Product Type Eddy-Current Proximity Sensor Origin USA Weight 0.14 kg Dimensions M8x1 thread, 160 mm case length, 0.5 meter total cable length Operating Temp -52 deg C to +177 deg C Power Consumption Supplied by external Proximitor Sensor, no independent power input Thread Type M8x1 metric, unarmored design Unthreaded Length 20 mm Linear Range 0 to 1.5 mm (0 to 60 mils) Incremental Scale Factor 7.87 V/mm (200 mV/mil) nominal Recommended Gap Setting 1.0 mm (40 mils) Frequency Response 0 to 10 kHz (+0, -3 dB typical) Deviation From Straight Line Less than +/-0.06 mm (+/-2.3 mils) Probe Tip Material Polyphenylene sulfide (PPS) Probe Case Material AISI 304 Stainless Steel Connector Type Miniature coaxial ClickLoc gold-plated connector Maximum Torque 0.56 N m Eddy-Current Probe Scaling and Rotor Dynamics Measurement The 3300 NSv proximity probe uses eddy-current sensing technology to convert shaft displacement into proportional electrical output. The probe maintains a nominal incremental scale factor of 7.87 V/mm, which allows the connected Proximitor Sensor to process dynamic vibration and axial position signals. Additionally, the M8x1 compact mechanical structure supports installations where probe clearance is restricted. The sensor geometry minimizes installation interference near small-diameter rotating shafts while maintaining signal response characteristics required for rotor dynamics analysis. The system applies gap voltage validation through the Proximitor Sensor interface. During commissioning, technicians normally verify the probe gap voltage near the -10 VDC target condition to confirm correct operating range and probe-to-target positioning. Frequently Asked Questions Q: What type of signal does the 330903-02-16-05-02-00 generate?A: The probe generates an eddy-current displacement signal that requires connection to a compatible Bently Nevada Proximitor Sensor for signal conditioning and output conversion. Q: Can the probe operate without a Proximitor Sensor module?A: No. The probe is a passive sensing element and requires an external Proximitor Sensor to provide excitation, linearization, and vibration monitoring outputs. Q: What installation factors affect measurement accuracy?A: Probe gap setting, shaft target material, mechanical alignment, cable routing, and connector protection directly influence measurement stability and signal quality. Field Installation Guidelines Install the probe with the M8x1 thread engagement aligned to the machine mounting point. Avoid mechanical stress on the probe body during tightening. Set the probe gap according to the connected Proximitor Sensor calibration requirements. Verify the gap voltage before commissioning. Protect the miniature coaxial ClickLoc connector from contamination, moisture, and mechanical impact. Route the probe cable separately from high-current power conductors to reduce electrical interference. Connect cable shielding according to the monitoring system grounding practice. Avoid multiple grounding points that may introduce signal noise. Confirm the probe tip clearance and target surface condition before starting rotating equipment.

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  • Sale -50% 330904-02-20-05-01-00 3300 NSv Proximity Probe Bently Nevada 330904-02-20-05-01-00 3300 NSv Proximity Probe Bently Nevada

    Bently Nevada 330904-02-20-05-01-00 3300 NSv Proximity Probe Bently Nevada

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    Bently Nevada 330904-02-20-05-01-00 3300 NSv Proximity Probe The Bently Nevada 330904-02-20-05-01-00, also cataloged as the 330904 Proximity Probe, operates as a dedicated hardware component for shaft displacement measurement within the 3300 NSv Proximity Transducer System. The probe uses eddy-current sensing technology to provide non-contact radial vibration, axial position, and speed measurement signals. Hardware Specifications Parameter Specification Model 330904-02-20-05-01-00 Brand Bently Nevada Product Type 3300 NSv Proximity Probe System Compatibility 3300 NSv Proximity Transducer System Origin USA Dimensions M8 x 1 thread, 20 mm unthreaded length, 200 mm case length, 0.5 m cable length Operating Temp -52 deg C to +177 deg C Storage Temp -52 deg C to +177 deg C Power Consumption Passive probe element; excitation supplied by Proximitor sensor Measurement Range 0.25 mm to 1.75 mm (10 mils to 70 mils) Average Scale Factor 7.87 V/mm (200 mV/mil), +/-20% Output Signal Range Approximately -1 VDC to -13 VDC Frequency Response 0 Hz to 10 kHz typical Probe Thread Type M8 x 1 metric thread Probe Tip Material PPS polymer Probe Case Material AISI 304 stainless steel Cable Type 75 ohm coaxial cable, FEP insulated, stainless steel armor Connector Type Miniature coaxial ClickLoc gold-plated brass connector Recommended Gap Setting 1.0 mm (40 mils) Center Conductor Resistance 4.0 +/- 0.5 ohm for 0.5 m cable Installation Torque 5.1 N m maximum for probe case; 0.56 N m maximum for tip Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The 330904 probe applies eddy-current measurement principles to convert shaft displacement into proportional electrical signals. Therefore, the Proximitor interface can evaluate rotor movement using the defined scale factor of 200 mV/mil. The probe supports rotor dynamics analysis by providing displacement data required for vibration waveform, shaft position, and machine condition monitoring. The probe operates with a recommended gap voltage adjustment near -10 VDC when connected to compatible Bently Nevada Proximitor modules. This gap voltage validation process confirms probe positioning, signal linearity, and measurement range before machine operation. The miniature probe construction reduces installation limitations in restricted mounting areas. In addition, the armored cable design improves mechanical protection against external installation conditions while maintaining signal transmission characteristics. Frequently Asked Questions Q: What measurement signals does the Bently Nevada 330904-02-20-05-01-00 provide?A: The probe provides non-contact displacement signals for radial vibration, axial position, and speed measurement applications through an eddy-current sensing circuit. Q: Does the probe require an external power supply connection?A: No. The probe operates as part of the 3300 NSv Proximity Transducer System and receives excitation from the connected Proximitor module. Q: What installation factors affect measurement accuracy?A: Correct probe gap adjustment, proper thread installation, cable routing, and shielding practices affect signal stability and measurement accuracy. Field Installation Guidelines Install the probe with the specified M8 x 1 mounting thread and maintain mechanical alignment between the probe tip and the monitored shaft surface. Set the initial probe gap near 1.0 mm before system calibration. Verify the Proximitor gap voltage output and confirm the operating point remains within the linear measurement range. Route the armored coaxial cable away from high-current power conductors and strong electromagnetic interference sources. Avoid sharp cable bends below the specified minimum bend radius. Connect the ClickLoc connector securely and verify that the connector protector remains installed where required. Use proper shield grounding practices according to the monitoring system installation manual. After installation, perform gap voltage validation and signal verification before placing the rotating equipment into service.

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  • Sale -50% 330905-00-15-05-02-00 | 3300 XL NSv Proximity Probe Bently Nevada 330905-00-15-05-02-00 | 3300 XL NSv Proximity Probe Bently Nevada

    Bently Nevada 330905-00-15-05-02-00 | 3300 XL NSv Proximity Probe Bently Nevada

    10 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    Bently Nevada 330905-00-15-05-02-00 3300 XL NSv Proximity Probe The Bently Nevada 330905-00-15-05-02-00, also cataloged as the 330905 3300 XL NSv Proximity Probe, operates as a dedicated hardware component for non-contact shaft displacement measurement within Bently Nevada proximity monitoring systems. Hardware Specifications Parameter Specification Model 330905-00-15-05-02-00 Brand Bently Nevada Product Series 3300 XL NSv Proximity Transducer System Product Type Eddy-current Proximity Probe Origin USA Weight 0.14 kg Dimensions Estimated shipping size: 109 x 2 x 1.5 cm Thread Size M10 x 1 Unthreaded Length 0 mm Overall Case Length 150 mm Total Length 0.5 meter (20 inches) Connector Type Miniature coaxial ClickLoc connector Cable Type Standard coaxial cable Armor Configuration Without Armor Probe Tip Material Polyphenylene sulfide (PPS) Case Material AISI 303 or 304 stainless steel Cable Construction 75 ohm triaxial FEP insulated cable Linear Range 1.5 mm (60 mils) Scale Factor 7.87 V/mm (200 mV/mil) average with NSv Proximitor Sensor Frequency Response 0 to 10 kHz, typically +0, -3 dB down to 2 Hz depending on field wiring Operating Temp -52 deg C to +177 deg C Storage Temp -52 deg C to +177 deg C Relative Humidity 100% condensing, non-submerged when properly sealed Power Consumption Supplied by compatible NSv Proximitor Sensor Eddy-Current Measurement and Rotor Dynamics Characteristics The 330905-00-15-05-02-00 uses eddy-current probe scaling to convert shaft displacement into proportional electrical output signals. When paired with an NSv Proximitor Sensor, the probe provides a 7.87 V/mm scale factor for radial vibration, radial position, and axial position measurements. In addition, the NSv probe design reduces signal distortion caused by limited installation clearance. Therefore, it supports rotor dynamics analysis on small-diameter shafts where conventional probe geometries may experience mechanical interference or cross-talk effects. The probe system requires gap voltage validation during installation. Field adjustment normally targets the Bently Nevada standard -10 VDC gap voltage condition to establish the correct operating position between the probe tip and the monitored shaft surface. Frequently Asked Questions Q: What measurement signals does the Bently Nevada 330905-00-15-05-02-00 provide?A: The probe measures shaft displacement using eddy-current sensing and provides proportional vibration, radial position, or axial position signals through a compatible NSv Proximitor Sensor. Q: Can the probe operate in confined installation locations?A: Yes. The 3300 XL NSv design supports installations with limited radial clearance, small targets, and small shaft diameters where standard probe arrangements may not fit. Q: What installation verification is required after mounting the probe?A: The installed probe gap should be checked through gap voltage measurement. The field setup should verify the correct electrical operating position before machinery monitoring begins. Field Installation Guidelines Install the M10 x 1 threaded probe body with correct mechanical alignment to the monitored shaft target. Maintain the specified probe gap position and verify gap voltage before connecting the monitoring channel. Route the triaxial cable away from high-current power conductors to reduce electromagnetic interference. Use proper cable support and avoid excessive bending near the ClickLoc connector area. Ensure the probe case and cable sealing arrangement prevents moisture ingress in condensing environments. Connect the probe only with a compatible Bently Nevada NSv Proximitor Sensor to maintain the specified scaling characteristics.

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