أنظمة مراقبة TSI
-
Bently Nevada 330905-00-10-05-02-CN | Bently Nevada 3300 NSv Proximity Probe
Bently Nevada 330905-00-10-05-02-CN 3300 NSv Proximity Probe The Bently Nevada 330905-00-10-05-02-CN, also cataloged as the 330905 3300 NSv Proximity Probe, operates as a dedicated hardware component for non-contact shaft displacement measurement within Bently Nevada 3300 NSv machinery monitoring systems. Hardware Specifications Parameter Specification Model 330905-00-10-05-02-CN Brand Bently Nevada Product Series 3300 NSv Proximity Transducer System Product Type 5 mm Non-contact Proximity Probe Origin USA Dimensions 5 mm probe tip diameter; 1.0 inch case length; 0.5 meter cable length Thread Type M10 x 1 metric thread Unthreaded Length 0 mm Probe Tip Material Polyphenylene sulfide (PPS) Probe Case Material AISI 303 / 304 stainless steel Cable Construction 75 Ohm triaxial FEP insulated cable Connector Type Miniature coaxial ClickLoc connector Operating Temp -51 deg C to +177 deg C Power Consumption Supplied through compatible Bently Nevada Proximitor sensor interface Measurement Principle Eddy-current displacement sensing Linear Range 0.25 mm to 2.0 mm Average Scale Factor 7.87 V/mm (200 mV/mil), +/-5% typical Frequency Response 0 Hz to 10 kHz, +/-3 dB Output Signal Analog DC voltage proportional to probe gap Environmental Protection IP67 rated Target Application Small shaft diameters below 51 mm or small flat targets below 15 mm Compliance Designed for API 670 machinery protection applications Eddy-Current Probe Scaling and Gap Voltage Validation The 3300 NSv probe uses an eddy-current sensing circuit to convert shaft displacement into an analog voltage output. The probe maintains a defined relationship between physical gap distance and output voltage through the calibrated scale factor. The installation process requires gap voltage validation through the connected Proximitor interface. Technicians typically verify the probe operating point near the standard -10 VDC target position to confirm correct measurement range and signal stability. The narrow side-view construction reduces metallic interference from surrounding installation structures. Therefore, the probe can operate in restricted mounting locations where conventional 8 mm proximity probes may experience side-wall effects. Frequently Asked Questions Q: What type of machinery is the 330905-00-10-05-02-CN designed for?A: The probe is designed for compact rotating equipment requiring non-contact shaft displacement measurement, including small compressors, pumps, motors, and machines with limited installation clearance. Q: Does the probe require a separate signal conditioning device?A: Yes. The probe operates as part of the Bently Nevada 3300 NSv Proximity Transducer System and requires a compatible Proximitor sensor interface to provide excitation and signal conversion. Q: What installation factor affects measurement accuracy?A: Correct probe gap adjustment, proper target material conditions, and controlled cable routing affect eddy-current measurement accuracy. Shielding and grounding practices must follow the system installation requirements. Field Installation Guidelines Install the 330905-00-10-05-02-CN probe using the specified M10 x 1 mounting thread and maintain mechanical clearance around the probe tip to avoid unwanted metallic interference. Route the 75 Ohm triaxial cable away from high-current power conductors, variable frequency drive cables, and strong electromagnetic noise sources. Avoid sharp cable bends that may affect cable integrity. Connect the ClickLoc coaxial connector using proper hand tightening procedures. Verify the probe gap voltage after installation and confirm that the operating point remains within the calibrated measurement range. Use appropriate grounding methods for the monitoring system. The cable shield termination must follow Bently Nevada installation practices to minimize electrical noise and signal distortion.
$200.00 $100.00
-
Bently Nevada Bently Nevada 330901-00-41-05-02-CN 3300 NSv Proximity Probe
Bently Nevada 330901-00-41-05-02-CN 3300 NSv Proximity Probe The Bently Nevada 330901-00-41-05-02-CN, also cataloged as the 330901 3300 NSv Proximity Probe, operates as a dedicated hardware component for non-contact shaft displacement measurement within the 3300 NSv Proximity Transducer System. Hardware Specifications Parameter Specification Model 330901-00-41-05-02-CN Brand Bently Nevada Origin USA Product Type 3300 NSv Proximity Probe Transducer System 3300 NSv Proximity Transducer System Sensing Method Non-contact eddy current measurement Scale Factor 7.87 V/mm (200 mV/mil) with matching 3300 NSv Proximitor Sensor Thread Type 1/4-28 UNF Unthreaded Length 0.0 in Overall Case Length 4.1 in Probe Cable Length 0.5 m (20 in) Connector Type Miniature coaxial ClickLoc connector Construction Material Stainless steel body with PPS probe tip Weight Approx. 350 g Dimensions 4.1 in case length, 0.5 m cable length Operating Temp -51 deg C to +177 deg C Power Consumption Supplied through compatible 3300 NSv Proximitor Sensor Target Application Shafts smaller than 51 mm (2 in) or flat targets smaller than 15 mm (0.6 in) Hazardous Area Certification -CN configuration with applicable China hazardous area approvals Eddy-Current Measurement and Rotor Dynamics Characteristics The 330901-00-41-05-02-CN uses an eddy-current sensing principle to convert shaft displacement into an electrical signal. The 3300 NSv probe geometry directs the electromagnetic field toward the target surface and reduces side-view interference from surrounding metallic structures. Furthermore, the probe supports rotor dynamics monitoring by providing stable vibration and axial position signals for machinery protection systems. The narrow side view design allows installation in restricted mechanical clearances where standard proximity probes may experience target distortion or signal interference. The matched Proximitor Sensor applies eddy-current probe scaling at 7.87 V/mm (200 mV/mil). In addition, the system supports gap voltage validation procedures using the typical -10 VDC target reference for correct probe-to-target positioning. Frequently Asked Questions Q: What type of target does the 330901-00-41-05-02-CN measure?A: The probe measures conductive shaft or target displacement through non-contact eddy-current technology. It is optimized for small diameter shafts and limited installation spaces. Q: Can the 330901-00-41-05-02-CN operate without a Proximitor Sensor?A: No. The probe requires a compatible 3300 NSv Proximitor Sensor to provide excitation, signal conditioning, and displacement output conversion. Q: What installation factors affect measurement accuracy?A: Proper probe gap setting, correct target material, cable routing, and avoidance of metallic interference near the sensing tip affect signal stability. Field Installation Guidelines Install the probe with the sensing tip aligned directly toward the measured shaft or target surface. Maintain the specified mechanical clearance to prevent side metal influence on the eddy-current field. Connect the ClickLoc miniature coaxial connector securely and route the cable away from high-current power conductors to reduce electrical interference. Use proper cable shielding and grounding practices according to the machinery monitoring system installation requirements. Before commissioning, verify the probe gap voltage and confirm the output signal from the connected Proximitor Sensor. Check the probe mounting thread engagement and ensure that mechanical vibration does not introduce movement at the probe mounting point.
$200.00 $100.00
-
Bently Nevada Bently Nevada 125710-01 3500 Series 4-Channel Relay I/O Module
Bently Nevada 125710-01 3500 Series 4-Channel Relay I/O Module The Bently Nevada 125710-01, also cataloged as the 125710-01 4-Channel Relay I/O Module, operates as a dedicated hardware component for relay signal execution within the Bently Nevada 3500 Series Machinery Protection System. The module receives alarm logic signals from monitoring modules and controls external relay contact circuits. Hardware Specifications Parameter Specification Model 125710-01 Brand Bently Nevada Origin USA Module Type 4-Channel Relay Input/Output Module System Compatibility Bently Nevada 3500 Series Machinery Protection System Function Relay output interface for alarm and shutdown signal execution Channel Count 4 independent relay channels Relay Type Electromechanical SPDT (Form C) relay contacts Contact Rating 2 A at 30 VDC or 250 VAC resistive load Operating Voltage +24 VDC via 3500 rack backplane Weight Approx. 0.45 kg Dimensions 241 mm x 24.4 mm x 99.1 mm 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 Power Consumption Approx. 2.8 W Rack Position Any slot to the right of the Main Interface Module Rotor Protection Relay Logic Interface The Bently Nevada 125710-01 module processes relay commands generated by 3500 monitoring modules and transfers these commands to external control circuits. In addition, the module supports programmable AND/OR voting logic to define relay activation conditions. The module operates with the 3500 system architecture where vibration, position, speed, and other machinery parameters are evaluated before relay outputs change state. Therefore, the relay contacts normally connect to PLC inputs, shutdown logic circuits, annunciators, or interlock systems rather than directly switching high-power loads. For machinery monitoring applications, the 3500 platform validates sensor signals through functions such as eddy-current probe scaling and gap voltage measurement. The relay interface then executes the configured protection response after the monitoring logic confirms an alarm condition. Frequently Asked Questions Q: Can the 125710-01 relay contacts directly control high-power motors or actuators?A: No. The onboard relay contacts are pilot contacts designed for signaling circuits, PLC inputs, interlocks, or external relay interfaces. External switching devices should control higher current loads. Q: Does the 125710-01 support hot replacement in a powered 3500 rack?A: The module supports replacement in a powered rack when the correct system maintenance procedures and bypass conditions are applied. The connected protection logic must be evaluated before removal. Q: How does the module receive relay activation commands?A: The module receives relay control commands from the 3500 system backplane after monitoring modules process configured alarm conditions and logic states. Field Installation Guidelines Install the Bently Nevada 125710-01 module only in compatible 3500 rack positions located to the right of the Main Interface Module. Use proper cabinet grounding practices and maintain separation between relay wiring and high-voltage power conductors. Connect shielded signal cables according to the system grounding design to reduce electrical interference. Verify relay contact ratings before connecting external circuits. Use external interposing relays or contactors when the controlled device exceeds the module contact capability. Confirm the 3500 rack configuration, module addressing, and relay logic settings before placing the machinery protection system into operation.
$200.00 $100.00
-
Bently Nevada 330104-00-05-05-01-00 | 3300 XL 8 mm Proximity Probe | Bently Nevada
Bently Nevada 330104-00-05-05-01-00 3300 XL 8 mm Proximity Probe The Bently Nevada 330104-00-05-05-01-00, also cataloged as the 330104 3300 XL 8 mm Proximity Probe, operates as a dedicated eddy-current sensing component for shaft displacement measurement within Bently Nevada TSI monitoring systems. Hardware Specifications Parameter Specification Model 330104-00-05-05-01-00 Brand Bently Nevada Product Type 3300 XL 8 mm Proximity Probe Origin USA Weight 0.15 kg Dimensions Estimated shipping size: 1.8 x 1.6 x 121 cm Power Consumption Supplied by compatible proximity transducer system, not specified in provided data Probe Type Eddy-current displacement probe Thread Type M10 x 1 thread Armor Option Armored probe design Unthreaded Length 0 mm Overall Case Length 50 mm Total Length 0.5 meter (1.6 feet) Connector Type Miniature coaxial ClickLoc connector with connector protector Cable Type Standard cable Tariff Code 8537101190 Eddy-Current Measurement and Rotor Dynamics The Bently Nevada 3300 XL 8 mm Proximity Probe uses eddy-current measurement technology to convert shaft surface movement into electrical displacement signals. Therefore, the probe provides dynamic and static shaft position information for machinery monitoring applications. The probe design supports Bently Nevada proximity measurement systems by maintaining consistent probe scaling characteristics. Additionally, the system configuration allows engineers to validate gap voltage conditions, including the commonly applied -10 VDC target range for correct probe positioning. The 330104-00-05-05-01-00 model includes a 0.5 meter standard cable assembly and miniature coaxial ClickLoc connector. Furthermore, the connector protector improves mechanical protection at the probe connection point during field installation. Frequently Asked Questions Q: What measurement technology does the 330104-00-05-05-01-00 probe use?A: The probe uses eddy-current sensing technology to measure shaft displacement without physical contact between the probe tip and rotating shaft surface. Q: What is the thread specification of this proximity probe?A: The probe uses an M10 x 1 thread configuration with a 50 mm overall case length and 0 mm unthreaded length option. Q: Does this model include agency approval certification?A: No. The 330104-00-05-05-01-00 configuration does not include an agency approval option. Field Installation Guidelines Install the probe with correct mechanical alignment to maintain accurate shaft displacement measurement. Ensure the M10 x 1 threaded section engages properly with the mounting bracket or probe holder. Route the standard cable away from high-current conductors and strong electromagnetic interference sources. Use proper cable support to prevent excessive mechanical stress on the miniature coaxial ClickLoc connector. Connect the probe to the compatible Bently Nevada monitoring interface and verify the gap voltage before commissioning. The installation team should confirm probe clearance, signal polarity, and shielding continuity according to the applicable machinery monitoring system requirements.
$200.00 $100.00
-
Bently Nevada 3300/16-12-01-02-03-02-00 | Vibration Monitor Modules Bently Nevada
Bently Nevada 3300/16-12-01-02-03-02-00 XY/Gap Dual Vibration Monitor The Bently Nevada 3300/16-12-01-02-03-02-00, also cataloged as the 3300/16 XY/Gap Dual Vibration Monitor, operates as a dedicated hardware component for radial vibration and shaft position measurement within the Bently Nevada 3300 Series Machinery Monitoring System. The module processes eddy-current proximity probe signals, scales vibration inputs, and provides alarm, gap, and buffered output functions. Hardware Specifications Parameter Specification Model 3300/16-12-01-02-03-02-00 Brand Bently Nevada Origin USA Product Type XY/Gap Dual Vibration Monitor System Platform Bently Nevada 3300 Series Machinery Monitoring System Measurement Inputs Two independent radial vibration channels and average shaft position (DC Gap) Transducer Input 3300 8 mm, 3300 XL 8 mm, or 7200 5 mm and 8 mm Proximitor Sensors Full Scale Range 0 to 150 um peak-to-peak Input Impedance 10 kOhm Signal Accuracy +/- 0.33% typical, +/- 1% maximum at +25 deg C Frequency Response 4 Hz to 4,000 Hz standard; 1 Hz to 600 Hz low frequency mode Alarm Outputs Hermetically sealed relay outputs Alarm Adjustment Digital Alert and Danger setpoints from 0 to 100% full scale Gap Alarm Delay Fixed 6 seconds Recorder Outputs +4 to +20 mA, 0 to -10 VDC, or +1 to +5 VDC Buffered Outputs Front panel coaxial and rear terminal outputs, short-circuit protected Rack Position One slot in standard Bently Nevada 3300 rack Operating Temp 0 deg C to +65 deg C Power Consumption Not specified in available documentation Eddy-Current Probe Scaling and Rotor Dynamics Processing The 3300/16 monitor receives eddy-current proximity probe signals and converts dynamic shaft movement into calibrated vibration measurements. Therefore, the module maintains compatibility with Bently Nevada proximity transducer systems using standard sensitivity scaling of 200 mV/mil or 7.87 V/mm. The monitor evaluates XY shaft vibration behavior and average shaft position changes. Additionally, the circuit design supports rotor dynamics analysis by separating radial vibration signals from DC gap measurements. The module allows engineers to identify shaft motion conditions related to unbalance, misalignment, mechanical looseness, and rotor displacement. The gap measurement channel validates probe operating conditions through DC gap voltage monitoring. In Bently Nevada systems, -10 VDC probe gap targets are commonly used as reference values for correct eddy-current probe positioning and signal linearization. Frequently Asked Questions Q: What type of proximity probes can the 3300/16-12-01-02-03-02-00 accept?A: The module accepts Bently Nevada 3300 8 mm, 3300 XL 8 mm, and 7200 series 5 mm and 8 mm proximity probe systems with compatible signal sensitivity. Q: Does the 3300/16 provide direct vibration recorder outputs?A: Yes. The monitor provides programmable recorder outputs including +4 to +20 mA, 0 to -10 VDC, and +1 to +5 VDC signals proportional to the selected full-scale range. Q: How does the module handle shaft position measurement?A: The module processes DC gap voltage from eddy-current probes and provides average shaft position monitoring with a fixed 6 second gap alarm delay. Field Installation Guidelines Install the module in a compatible Bently Nevada 3300 rack slot and verify rack backplane connections before operation. Connect proximity probe wiring using shielded signal cables suitable for low-level eddy-current measurement circuits. Ground cable shields according to plant instrumentation grounding practices to reduce electrical interference. Verify probe polarity, extension cable compatibility, and Proximitor sensor configuration before commissioning. Adjust probe gap voltage during installation and confirm the operating point near the specified Bently Nevada gap voltage target. Separate vibration signal wiring from high-voltage power cables and variable frequency drive output cables. Confirm relay wiring, alarm setpoints, and recorder output scaling before placing the monitoring channel into service.
$200.00 $100.00
-
Bently Nevada Vibration Monitor Modules | 3300/16-12-01-02-00-00-00 Bently Nevada
Bently Nevada 3300/16-12-01-02-00-00-00 XY/GAP Dual Vibration Monitor The Bently Nevada 3300/16-12-01-02-00-00-00, also cataloged as the 3300/16 XY/GAP Dual Vibration Monitor, operates as a dedicated hardware component for radial vibration and shaft gap measurement within the 3300 Series Monitoring System. Hardware Specifications Parameter Specification Model 3300/16-12-01-02-00-00-00 Brand Bently Nevada Origin USA Product Type XY/GAP Dual Vibration Monitor System Platform 3300 Series Asset Condition Monitoring System Input Type Proximity probe/Proximitor transducer voltage input Number of Channels Two independent radial vibration channels with shaft gap monitoring Input Impedance 10 kOhm Transducer Sensitivity 100 mV/mil (4 V/mm) or 200 mV/mil (8 V/mm), programmable Frequency Response 4 to 4,000 Hz (240 to 240,000 cpm) or 1 to 600 Hz (60 to 36,000 cpm), programmable Measurement Range 0 to 5 mils peak-to-peak or equivalent configured full-scale range Accuracy +/-0.33% of full scale typical, +/-1% maximum at 25 deg C Alarm Adjustment Digital Alert and Danger setpoint adjustment from 0 to 100% full scale Output Signal +4 to +20 mA DC recorder output configuration Display Type Non-multiplexing vertical bar graph LCD LED Indicators OK, Alert, Danger, and Bypass status indicators Operating Temp 0 deg C to +65 deg C Storage Temp -40 deg C to +85 deg C Relative Humidity Up to 95%, non-condensing Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The Bently Nevada 3300/16 processes dynamic signals from eddy-current proximity probe systems and converts displacement voltage signals into vibration amplitude and shaft position values. The module supports programmable transducer scaling for 100 mV/mil and 200 mV/mil sensitivity configurations. Furthermore, the monitor validates mechanical clearance conditions through shaft gap measurement. The gap channel evaluates the average probe voltage position and supports rotor dynamics analysis by tracking radial movement, vibration amplitude changes, and shaft position variations. The module design maintains signal conditioning performance by separating vibration measurement channels and gap monitoring functions. Therefore, the system can detect mechanical changes without requiring external signal conversion equipment. Frequently Asked Questions Q: What type of transducers can the Bently Nevada 3300/16-12-01-02-00-00-00 accept?A: The module accepts voltage signals from Bently Nevada proximity probe and Proximitor transducer systems, including compatible 3300 XL 8 mm probe configurations. Q: Does the 3300/16 provide shaft gap measurement in addition to vibration monitoring?A: Yes. The module provides XY radial vibration monitoring and an additional gap measurement function for shaft position evaluation. Q: Can alarm values be adjusted during operation?A: The module provides digitally adjustable Alert and Danger alarm setpoints. Field adjustment procedures must follow the installed monitoring system configuration requirements. Field Installation Guidelines Install the module only in a compatible Bently Nevada 3300 Series rack configuration. Verify proximity probe wiring polarity and shield termination before applying power. Maintain separation between transducer signal cables and high-current power conductors to reduce electrical interference. Connect cable shields according to the plant grounding standard and avoid multiple-point shield grounding paths. Confirm probe gap voltage and transducer scaling parameters before placing the monitor into service. Verify channel OK status indicators after installation to confirm proper field wiring and sensor operation. Perform alarm setpoint verification after mechanical commissioning and rotor operating condition checks.
$200.00 $100.00
-
Bently Nevada Bently Nevada 3300/03-01-03 System Monitor Module
Bently Nevada 3300/03-01-03 System Monitor Module The Bently Nevada 3300/03-01-03, also cataloged as the 3300/03 System Monitor Module, operates as a dedicated hardware component for Keyphasor signal management, rack alarm coordination, and system supervision within the Bently Nevada 3300 Machinery Protection System. Hardware Specifications Parameter Specification Model 3300/03-01-03 Brand Bently Nevada Origin USA Weight Approximately 0.66 kg to 0.7 kg Dimensions 5.7 cm x 20.3 cm x 33.0 cm Operating Temp 0 deg C to +65 deg C Power Consumption 2 W base consumption, up to 4.6 W with active interface operations Module Type System Monitor Module System Platform Bently Nevada 3300 Machinery Protection System Keyphasor Inputs Supports up to 4 proximity probe Keyphasor signals Input Impedance 10 kOhm Serial Data Interface SDI communication up to 19.2k baud Dynamic Data Interface DDI communication up to 38.4k baud Communication Interface RS232 up to 30 m, RS422 up to 1200 m Supply Voltage Monitoring +VRH, +VRL, +7.5 VDC, +5 VDC, -7.5 VDC, and -VT monitoring Relative Humidity Up to 95%, non-condensing Rack Position Dedicated second slot of 3300 rack Keyphasor Signal Conditioning and Rotor Dynamics Management The 3300/03-01-03 processes Keyphasor signals by providing excitation power, termination, signal conditioning, and distribution functions for proximity transducer inputs. Therefore, the module supports phase reference measurement required for rotor dynamics analysis, shaft position evaluation, and synchronous vibration tracking. The module maintains Keyphasor signal integrity through controlled input impedance and conditioning circuits. Additionally, it supports dynamic data transfer through the DDI interface, allowing waveform-level vibration information to be transmitted to external monitoring systems. The module also applies Bently Nevada eddy-current probe scaling methods when processing proximity transducer signals. Furthermore, technicians can verify probe gap voltage conditions against standard -10 VDC target values during commissioning and troubleshooting procedures. Frequently Asked Questions Q: Does the 3300/03-01-03 support direct vibration measurement channels?A: No. The module supervises the 3300 rack operation, manages Keyphasor signals, and coordinates system functions. Dedicated monitor modules perform vibration measurement processing. Q: What communication functions are available on the 3300/03-01-03?A: The module provides SDI and DDI communication interfaces. SDI supports static data transfer, while DDI supports dynamic waveform data transmission. Q: Can the module operate with multiple Keyphasor inputs?A: Yes. The module supports up to 4 Keyphasor proximity probe inputs for phase reference and speed-related measurements. Field Installation Guidelines Install the 3300/03-01-03 module in the designated second slot of a compatible Bently Nevada 3300 rack. Confirm rack power availability before inserting or removing the module. Verify rear terminal connections for Keyphasor wiring, communication interfaces, and power distribution. Use shielded cables for proximity probe signal wiring and connect cable shields according to site grounding practices. Separate low-level Keyphasor signal cables from high-voltage power conductors to reduce electromagnetic interference. Confirm probe polarity, signal conditioning settings, and gap voltage values before placing the machinery protection system into service. Verify communication settings for SDI or DDI interfaces before connecting external monitoring equipment.
$200.00 $100.00
-
Bently Nevada Bently Nevada 3300/20-12-01-02-03-02 Dual Thrust Position Monitor
Bently Nevada 3300/20-12-01-02-03-02 Dual Thrust Position Monitor The Bently Nevada 3300/20-12-01-02-03-02, also cataloged as the 3300/20 Dual Thrust Position Monitor, operates as a dedicated hardware component for axial shaft displacement measurement using proximity transducer signals within Bently Nevada 3300 monitoring systems. It processes two thrust position channels and provides alarm, voting, and recorder outputs for machinery protection circuits. Hardware Specifications Parameter Specification Model 3300/20-12-01-02-03-02 Brand Bently Nevada Product Type Dual Thrust Position Monitor Origin USA Weight Approximately 1.0 kg Dimensions 83 mm vertical display bar graph Operating Temp 0 deg C to +65 deg C Storage Temp -40 deg C to +85 deg C Power Consumption 1.5 Watts nominal Power Supply 120 VAC nominal Monitoring Channels 2 independent thrust position channels Full Scale Range +/- 1.0 mm (40-0-40 mils) Input Impedance 10 kOhm Transducer Compatibility 3300 or 7200 Proximitor systems Transducer Supply Voltage Programmable -24 VDC or -18 VDC Input Sensitivity 200 mV/mil (8 V/mm) or 100 mV/mil (4 V/mm) Display Accuracy +/- 1.6% of full scale Signal Conditioning Accuracy +/- 0.33% typical, +/- 1% maximum at +25 deg C Alarm Relay Type Hermetically sealed relays Voting Logic AND / OR dual-channel voting Recorder Outputs +4 to +20 mA, 0 to -10 VDC, +1 to +5 VDC Buffered Outputs Front panel coaxial and terminal connectors Humidity Rating Up to 95%, non-condensing Safety Function Internal safety barriers for field probe circuits Certifications CSA / NRTL / C compliant, Class 1 Division 2 ready Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The 3300/20-12-01-02-03-02 processes eddy-current probe signals by applying configured sensitivity values for accurate axial position measurement. Therefore, the monitor maintains consistent scaling between probe displacement signals and displayed thrust position values. The module supports gap voltage validation functions associated with Bently Nevada proximity measurement technology. Field probe installation typically uses a nominal -10 VDC gap voltage target to maintain proper linear operating range before machine operation. Furthermore, the dual-channel architecture supports rotor dynamics analysis by monitoring axial movement changes caused by thrust loading variations. The AND/OR voting logic allows engineers to configure trip decisions according to machine protection requirements while reducing unwanted relay activation. Frequently Asked Questions Q: How many thrust position inputs does the 3300/20-12-01-02-03-02 monitor support?A: The monitor supports two independent axial thrust position channels. Each channel accepts signals from compatible Bently Nevada 3300 or 7200 Proximitor systems. Q: Does this model provide hazardous area signal isolation?A: Yes. The -02 safety barrier option integrates internal safety barriers that limit energy delivered to field-installed proximity probes. Q: What type of alarm relay configuration does this monitor use?A: The -02 relay option provides hermetically sealed alarm relays designed for operation in environments where contact contamination may affect switching performance. Field Installation Guidelines Install the monitor inside a compatible Bently Nevada 3300 rack environment following the system installation manual. Connect proximity probe signals using shielded cables and maintain proper cable separation from high-voltage power conductors. Verify probe polarity, signal scaling, and gap voltage before placing the machinery into operation. Adjust probe installation position to achieve the specified operating gap range and confirm the -10 VDC target gap voltage. Ground cable shields according to plant electrical grounding practices to reduce electromagnetic interference. Verify alarm relay logic settings, including AND/OR voting configuration, before enabling machinery protection functions. Confirm recorder output wiring for the selected current or voltage signal format before connecting external monitoring equipment.
$200.00 $100.00
-
Bently Nevada 3300/50-01-02-03-02 | Bently Nevada | Tachometer Monitor
Bently Nevada 3300/50-01-02-03-02 Tachometer Monitor The Bently Nevada 3300/50-01-02-03-02, also cataloged as the 3300/50 Tachometer Monitor, operates as a dedicated hardware component for shaft speed measurement, acceleration monitoring, and zero speed detection within the Bently Nevada 3300 Monitoring System. Hardware Specifications Parameter Specification Model 3300/50-01-02-03-02 Brand Bently Nevada Origin USA Product Type Tachometer Monitor Module System Platform 3300 Machinery Protection System Input Type Proximity probe and magnetic pickup signals Input Channels Up to 2 transducer inputs with voting logic Input Impedance 10 kOhm nominal Speed Measurement Range 1 to 99,999 rpm Rotor Acceleration Range -9,999 to 9,999 rpm/min Zero Speed Detection Typically below 100 rpm Accuracy Within +/-1 rpm for speed display; within +/-20 rpm/min for acceleration display at 25 deg C Buffered Output Front panel coaxial output per transducer channel Buffered Output Impedance 100 Ohm Recorder Output 4-20 mA DC proportional output Display Type 7-segment LCD display Alarm Functions Alert and Danger adjustable setpoints Relay Operation Normally energized/de-energized, latching or non-latching modes Power Consumption 2.5 Watts nominal Operating Temp 0 deg C to +65 deg C Storage Temp -40 deg C to +85 deg C Relative Humidity Up to 95%, non-condensing TSI Signal Processing and Rotor Dynamics Features The Bently Nevada 3300/50-01-02-03-02 processes rotational speed signals from eddy-current probes or magnetic pickups and converts pulse inputs into shaft speed and acceleration values. The module applies tachometer signal conditioning to maintain measurement accuracy during changing rotor operating conditions. Furthermore, the module supports eddy-current probe scaling and gap voltage validation principles used in Bently Nevada machinery monitoring systems. The transducer interface evaluates input signal amplitude and operating point conditions to maintain correct measurement conversion. The module architecture supports rotor dynamics monitoring by tracking speed variation, acceleration behavior, and zero speed conditions. Additionally, the buffered outputs provide isolated access for external diagnostic equipment while maintaining front panel signal availability. Frequently Asked Questions Q: Does the 3300/50-01-02-03-02 support dual transducer inputs?A: Yes. The module accepts up to two transducer inputs and uses internal voting logic to reduce false trip conditions caused by individual signal disturbances. Q: What output signal does the recorder interface provide?A: The module provides a proportional 4-20 mA DC recorder output for connection to external PLC, DCS, or data acquisition systems. Q: Can the module monitor zero speed conditions?A: Yes. The tachometer function supports zero speed monitoring applications and typically operates below 100 rpm for low-speed detection. Field Installation Guidelines Install the 3300/50-01-02-03-02 module inside the designated 3300 rack slot according to the system configuration requirements. Use shielded signal wiring for proximity probe and magnetic pickup connections. Connect cable shields according to the plant grounding standard to reduce electromagnetic interference. Maintain proper separation between tachometer signal cables and high-current power wiring. Avoid routing sensor cables near motor feeders, variable frequency drive outputs, or switching power sources. Verify transducer polarity, signal amplitude, and mechanical target condition before commissioning. For eddy-current probe installations, confirm the probe gap voltage and scaling parameters match the configured monitoring range. Check relay logic configuration, alarm setpoints, and 4-20 mA output scaling before placing the machinery protection channel into service.
$200.00 $100.00
-
Bently Nevada 1034549-21 FieldMonitor Seismic Input Monitor | Bently Nevada
Bently Nevada 1034549-21 FieldMonitor Seismic Input Monitor The Bently Nevada 1034549-21, also cataloged as the 1701/25 FieldMonitor Seismic Input Monitor, operates as a dedicated hardware component for seismic signal acquisition and vibration evaluation within the FieldMonitor monitoring system. Hardware Specifications Parameter Specification Model 1034549-21 Brand Bently Nevada Origin USA Product Type FieldMonitor Seismic Input Monitor Module System Series 1701/25 FieldMonitor Module Function Two-channel seismic vibration monitoring Input Channels 2 independent seismic input channels Supported Sensors Velocity transducers and acceleration sensors Measurement Type Absolute casing and structural vibration monitoring Direct Velocity Bandwidth 3 Hz to 5,500 Hz Direct RMS / Integrated Bandwidth 10 Hz to 5,500 Hz Signal Filtering Programmable high-pass and low-pass filtering, 4th order (-80 dB/decade) Alarm Configuration Alarm 1 Alert and Alarm 2 Danger based on proportional vibration values Alarm Time Delay Configurable range from 0.15 s to 20.0 s Diagnostics Internal self-test functions for sensor and signal loop verification Dimensions Approx. 15.2 cm x 10.2 cm x 2.5 cm Weight Approx. 0.1 kg to 0.3 kg Compliance CE certification and API 670 machinery protection design alignment Eddy-Current and Rotor Dynamics Signal Processing The Bently Nevada 1034549-21 processes vibration-related signals from seismic sensors and converts field measurements into monitored vibration values. In addition, the module applies signal conditioning functions to maintain measurement stability across configured frequency ranges. The FieldMonitor architecture supports machinery condition evaluation by analyzing casing vibration behavior. Moreover, Bently Nevada monitoring systems commonly apply rotor dynamics principles, vibration amplitude tracking, and signal integrity verification for rotating equipment protection. The module design focuses on accurate seismic input handling, alarm threshold evaluation, and continuous vibration data processing. Furthermore, the signal path minimizes unwanted interference through controlled filtering and channel processing methods. Frequently Asked Questions Q: How many vibration measurement channels does the Bently Nevada 1034549-21 support?A: The module provides two independent seismic input channels for vibration monitoring applications. Q: What sensor types can connect to the 1034549-21 module?A: The module accepts seismic transducer inputs, including velocity sensors and acceleration sensors used for casing or structural vibration measurement. Q: Does the module support configurable vibration alarm functions?A: Yes. The module provides Alarm 1 Alert and Alarm 2 Danger settings based on proportional vibration values with configurable time delays. Field Installation Guidelines Install the module inside the designated FieldMonitor hardware enclosure according to the system installation documentation. Connect seismic sensor wiring using proper shielded industrial instrumentation cables to reduce electromagnetic interference. Maintain separation between vibration signal cables and high-current power conductors to prevent signal coupling. Verify sensor polarity, signal continuity, and grounding conditions before system commissioning. Confirm vibration alarm settings and filtering parameters after completing field wiring checks. Follow applicable machinery protection practices when integrating the module into rotating equipment monitoring systems.
$200.00 $100.00
-
Bently Nevada Bently Nevada 177896-05 3701/40 Processor Module
Bently Nevada 177896-05 3701/40 Processor Module The Bently Nevada 177896-05, also cataloged as the 177896-05 Processor Module, operates as a dedicated hardware component for signal processing, protection logic execution, and Ethernet data communication within the ADAPT 3701/40 Machinery Dynamics Monitor platform. Hardware Specifications Parameter Specification Model 177896-05 Brand Bently Nevada Product Type Processor Module System Platform ADAPT 3701/40 Machinery Dynamics Monitor Origin USA Dimensions Compact modular form factor; exact dimensions not specified Power Consumption Powered through single or dual-redundant +24 VDC external supply via terminal base Processor Function Central processing unit for data acquisition, DSP, alarm evaluation, and protection logic A/D Conversion 24-bit resolution Dynamic Range 110 dB Signal Bandwidth Up to 40 kHz Sampling Mode Synchronized parallel sampling across all input channels Spectral Analysis Configurable synchronous and asynchronous spectrums up to 3200 lines Ethernet Interface 2 x 10Base-T/100Base-TX auto-sensing RJ45 ports Communication Protocols Modbus TCP, Ethernet Global Data (EGD) Discrete Inputs 6 dry contact inputs per terminal base Configuration Protection Hardware configuration lock switch for Run Mode protection Software Configuration Bently Nevada Monitor Configuration (BNMC) software Compliance CE, North America General Safety, RoHS Eddy-Current Measurement and Rotor Dynamics Processing The 177896-05 Processor Module processes vibration and position signals from Bently Nevada input modules, including eddy-current proximity probes, accelerometers, velomitors, seismoprobes, dynamic pressure sensors, and Keyphasor speed inputs. Furthermore, the processor executes digital signal processing algorithms for rotor dynamics evaluation, including synchronous and asynchronous spectral analysis. The module supports eddy-current probe scaling functions by processing calibrated displacement signals and maintaining measurement accuracy through sensor input conditioning. In addition, the system evaluates gap voltage conditions, including the typical -10 VDC target range used for proximity probe operation verification. Therefore, the processor provides direct monitoring of shaft displacement, vibration behavior, and machine dynamic response. Frequently Asked Questions Q: Does the 177896-05 support redundant processor operation?A: Yes. When installed in a Duplex terminal base, two identical 177896-05 Processor Modules can operate in a redundant configuration. The system uses dual processors to maintain monitoring availability if one processor module becomes unavailable. Q: What communication interfaces are available on the processor module?A: The module provides two auto-sensing Ethernet ports with 10Base-T and 100Base-TX support. It communicates through Modbus TCP and Ethernet Global Data (EGD) protocols. Q: Which sensor signals can the processor module analyze?A: The processor accepts processed signals from compatible ADAPT 3701/40 input boards, including proximity probes, accelerometers, velomitors, seismoprobes, dynamic pressure sensors, and magnetic speed pickup signals. Field Installation Guidelines Install the 177896-05 Processor Module in the designated ADAPT 3701/40 terminal base slot according to the system hardware configuration requirements. Verify that the terminal base provides the required +24 VDC supply connection before module insertion. Maintain proper cable separation between Ethernet communication wiring and high-current power conductors to reduce electrical interference. Use shielded sensor wiring where required and connect cable shields according to plant grounding standards. Before commissioning, confirm that the proximity probe input scaling, gap voltage status, channel configuration, and alarm parameters match the installed field sensors. Keep the hardware configuration lock in the required operating position after completing commissioning changes. Use BNMC software to verify module communication status, input channel operation, alarm logic settings, and network communication parameters before placing the monitoring system into service.
$200.00 $100.00
-
Bently Nevada 3300/16-02-01-01-00-00-02 Bently Nevada XY/Gap Dual Vibration Monitor
Bently Nevada 3300/16-02-01-01-00-00-02 XY/Gap Dual Vibration Monitor The Bently Nevada 3300/16-02-01-01-00-00-02, also cataloged as the 3300/16 XY/Gap Dual Vibration Monitor, operates as a dedicated hardware component for radial vibration and shaft gap measurement within the Bently Nevada 3300 Machinery Monitoring System. Hardware Specifications Parameter Specification Model 3300/16-02-01-01-00-00-02 Brand Bently Nevada Product Type XY/Gap Dual Vibration Monitor System Platform Bently Nevada 3300 Machinery Monitoring System Origin USA Weight Approx. 1.0 kg Dimensions 1 rack slot module format Operating Temp 0 deg C to +65 deg C Storage Temp -40 deg C to +85 deg C Relative Humidity Up to 95%, non-condensing Power Consumption System rack supplied power; specific consumption depends on rack configuration Signal Input One or two proximity probe systems Input Impedance 10 kOhm Full Scale Range 0 to 5 mils peak-to-peak Transducer Input 3300 8 mm, 3300 XL 8 mm, or 7200 5 mm and 8 mm Proximitor Sensors Transducer Sensitivity 200 mV/mil or 8 V/mm Frequency Response 4 to 4,000 Hz or 1 to 600 Hz low-speed mode Recorder Output +4 to +20 mA, +1 to +5 VDC, 0 to -10 VDC Output Load Current output: 0 to 600 Ohm; voltage output: minimum 10 kOhm Accuracy Within +/-0.33% of full scale typical; +/-1% maximum Trip Multiply Function 3X alarm limit multiplication during startup Alarm Relay Epoxy-sealed relay configuration Safety Barrier No internal safety barriers Agency Approval Standard configuration without agency approval Display Type Non-multiplexing vertical LCD bargraph Rack Position One rack slot, excluding power supply and system monitor reserved slots Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The 3300/16 monitor processes eddy-current proximity probe signals for radial shaft vibration and average shaft position measurement. It applies probe scaling parameters based on compatible Bently Nevada transducer systems, including 3300 8 mm and 3300 XL 8 mm probes. The monitor evaluates dynamic vibration signals and gap voltage feedback from rotating equipment. In addition, the system architecture supports rotor dynamics analysis by providing buffered raw vibration outputs for external diagnostic instruments. The proximity input circuit validates probe operating conditions through gap voltage behavior. Standard Bently Nevada monitoring practices use negative gap voltage targets, typically near -10 VDC, to confirm correct probe installation and shaft position measurement range. The monitor also reduces measurement interference through signal conditioning functions designed for vibration channel separation and cross-talk suppression between monitoring inputs. Frequently Asked Questions Q: What type of transducer systems can the 3300/16-02-01-01-00-00-02 accept?A: The monitor accepts Bently Nevada 3300 8 mm, 3300 XL 8 mm, and 7200 series 5 mm or 8 mm proximity probe systems with 200 mV/mil sensitivity. Q: How does the 3X Trip Multiply function operate?A: The 3X Trip Multiply function increases programmed alarm thresholds by three times during machine startup conditions to prevent unnecessary trips during acceleration. Q: Does this module provide internal safety barriers?A: No. The 3300/16-02-01-01-00-00-02 configuration does not include internal safety barriers and requires external protection when hazardous area installation requires isolation. Field Installation Guidelines Install the 3300/16 module in an available Bently Nevada 3300 rack position according to the rack configuration requirements. The power supply and system monitor positions must remain reserved. Connect proximity probe wiring using shielded cables and maintain proper cable routing separation from high-current power conductors. Ground cable shields according to the monitoring system installation manual to reduce electrical noise. Verify the probe gap voltage before commissioning. Confirm that the proximity probe operates within the specified measurement range and that the vibration channel polarity matches the installed transducer configuration. Use the front-panel buffered outputs for diagnostic connections only. Avoid excessive cable loading on buffered signal outputs because additional loading can affect signal quality. Confirm alarm relay wiring, bypass status, and Trip Multiply operation before placing the machine protection system into service.
$200.00 $100.00
-
Bently Nevada 1720045 General Purpose Equipment Monitor | Bently Nevada
Bently Nevada 1720045 General Purpose Equipment Monitor The Bently Nevada 1720045, also cataloged as the 1720045 General Purpose Equipment Monitor, operates as a dedicated hardware component for vibration and temperature signal acquisition within Bently Nevada machinery monitoring platforms. Hardware Specifications Parameter Specification Model 1720045 Brand Bently Nevada Product Type General Purpose Equipment Monitor Origin USA Weight Approx. 1.2 kg Dimensions 133 mm x 133 mm x 178 mm Operating Temp -20 deg C to +70 deg C Power Consumption 7.2 W typical Power Supply 18 VDC to 36 VDC Vibration Inputs 4 channels, configurable for acceleration, velocity, or displacement Temperature Inputs 4 channels, supports RTD and thermocouple sensors Frequency Response 5 Hz to 10 kHz Analog Outputs 4-20 mA per channel Relay Outputs 4 SPDT relays, 5 A at 250 VAC Measurement Accuracy +/- 1% of full scale Channel Update Rate 100 ms per channel Mounting Type DIN rail mount or panel mount Storage Temperature -40 deg C to +85 deg C Relative Humidity 0% to 95% non-condensing Ingress Protection IP20 Machinery Monitoring and TSI Signal Processing The Bently Nevada 1720045 processes dynamic vibration and temperature signals for continuous equipment condition evaluation. The monitor accepts industrial sensor inputs and converts measured values into analog output signals and relay alarm states. Furthermore, the module supports Bently Nevada machinery monitoring methods including eddy-current probe scaling, gap voltage validation, and rotor dynamics evaluation. The vibration measurement path maintains sensor signal integrity by applying input conditioning and cross-talk suppression techniques during multi-channel acquisition. The vibration channels can evaluate displacement, velocity, or acceleration signals according to the installed sensor configuration. In addition, temperature channels support RTD and thermocouple measurement circuits for thermal condition tracking. Frequently Asked Questions Q: What sensor types can connect to the Bently Nevada 1720045 vibration inputs?A: The monitor supports industrial vibration sensors configured for acceleration, velocity, or displacement measurement. Sensor scaling must match the selected input configuration. Q: Does the 1720045 provide direct relay alarm outputs?A: Yes. The unit provides four SPDT relay outputs for equipment protection alarms and status indication. Q: Can the monitor validate eddy-current probe operating conditions?A: The monitor supports machinery monitoring functions associated with eddy-current probe systems, including signal scaling and gap voltage evaluation when compatible probes are installed. Field Installation Guidelines Install the Bently Nevada 1720045 in a protected control panel or equipment monitoring enclosure with appropriate DIN rail or panel mounting hardware. Connect vibration sensor wiring using shielded industrial instrumentation cables. Terminate cable shields according to site grounding practices to reduce electromagnetic interference and signal noise. Separate vibration signal cables from high-voltage power conductors and switching circuits. Maintain proper cable routing to prevent induced electrical interference. Verify sensor polarity, input configuration, and measurement range before commissioning. For eddy-current probe applications, confirm probe supply wiring and gap voltage conditions before enabling machinery monitoring functions. Ensure the DC power supply wiring follows industrial control cabinet standards. Check relay output wiring ratings before connecting external alarm or shutdown circuits.
$200.00 $100.00
-
Honeywell Safe Loop-Monitored Digital Output Module | Honeywell FS-SDOL-0424
Honeywell FS-SDOL-0424 Safe Loop-Monitored Digital Output Module Configured for loop-monitored digital output execution in Honeywell Safety Manager systems, the Honeywell FS-SDOL-0424 (FS-SDOL-0424 Safe Loop-Monitored Digital Output Module) provides direct physical switching control for 24 VDC field loads through four monitored output channels. Hardware Specifications Parameter Specification Model FS-SDOL-0424 Brand Honeywell Product Type Safe Loop-Monitored Digital Output Module Origin USA Weight 0.12 kg Dimensions 2.2 x 19 x 12.7 cm Power Consumption 5 VDC system supply, 24 VDC output supply Space Requirements 4 TE, 3 HE (= 4 HP, 3U) Number of Output Channels 4 Output Specification 24 VDC Maximum Channel Current 1 A Maximum Total Module Load 3.6 A Maximum Load Inductance 0.5 H Maximum Load Capacitance 1 uF Overload Detection Threshold > 10 ohm Voltage Drop < 1.3 V at 1 A Output Monitoring Functions Lead breakage detection, output short circuit monitoring Load De-energization Supported through primary and secondary means Approvals CE, TUV, UL, CSA, FM Tariff Code 8537101190 Place of Shipment Xiamen, China Channel Isolation and Loop Monitoring Characteristics The Honeywell FS-SDOL-0424 performs safe digital output control with loop monitoring functions for field actuator circuits. Furthermore, the module detects abnormal output conditions including external wiring lead breakage and output short circuits. The module supports de-energization through secondary means, which allows the safety system to force field outputs into a defined safe state. Additionally, suppression diodes manage inductive load behavior and reduce electrical disturbances during switching operations. For Honeywell Safety Manager applications, output monitoring maintains channel status visibility while limiting cross-talk effects between output circuits. The design supports 24 VDC field devices with a maximum channel current of 1 A and a total module load capacity of 3.6 A. Frequently Asked Questions Q: What type of field devices can the FS-SDOL-0424 control?A: The FS-SDOL-0424 controls 24 VDC field loads through four digital output channels with loop monitoring functions. Q: How does the module detect field wiring faults?A: The module monitors output circuits and detects conditions such as external output wiring lead breakage and output short circuits. Q: What electrical limits apply to connected loads?A: Each channel supports up to 1 A current, while the complete module supports a maximum load of 3.6 A with specified inductive and capacitive load limits. Field Installation Guidelines Install the FS-SDOL-0424 in the designated Honeywell Safety Manager rack position according to system configuration requirements. Verify the 24 VDC field supply polarity before connecting output wiring. Separate output signal wiring from high-voltage power cables to reduce electrical interference. Connect cable shields according to site grounding practices and safety system installation standards. Confirm actuator wiring continuity before enabling output operation. Check field load characteristics to ensure inductance and capacitance values remain within module specifications. Inspect terminal connections periodically for mechanical looseness or oxidation in industrial environments.
$200.00 $100.00
-
Bently Nevada 165844-14 3300 XL 8mm Proximity Probe | Bently Nevada
Bently Nevada 165844-14 3300 XL 8mm Proximity Probe The Bently Nevada 165844-14, also cataloged as the 165844-14 Proximity Probe, operates as a dedicated hardware component for shaft displacement measurement within the 3300 XL 8 mm Proximity Transducer System. Hardware Specifications Parameter Specification Model 165844-14 Brand Bently Nevada (Baker Hughes) Product Type Eddy Current Proximity Sensors Series 3300 XL 8 mm Proximity Transducer System Operating Principle Eddy current sensing technology Scale Factor / Sensitivity 7.87 V/mm (200 mV/mil) Frequency Response 0 to 10 kHz Integrated Cable Length 1.4 m Tip Material Polyphenylene Sulfide (PPS) Output Interface Analog voltage proportional to probe gap System Compatibility 3300 XL Proximitor sensors with matching extension cables Origin USA Weight Approximately 0.3 kg to 0.8 kg depending on mounting assembly Operating Temp -35 deg C to +85 deg C Power Consumption Passive probe element; powered through connected Proximitor sensor Eddy Current Probe Scaling and Rotor Dynamics Monitoring The 165844-14 uses eddy current probe scaling to convert shaft displacement changes into proportional electrical signals. Moreover, the probe maintains a nominal sensitivity of 200 mV/mil for compatibility with the 3300 XL monitoring architecture. The sensor detects dynamic shaft movement without mechanical contact. Therefore, it supports rotor dynamics analysis by providing continuous displacement information for vibration monitoring, axial position measurement, and mechanical clearance evaluation. In addition, the probe design incorporates signal conditioning characteristics that support cross-talk suppression when installed with adjacent proximity measurement channels. The PPS probe tip material maintains electrical stability under exposure to industrial lubricants and operating environments. Frequently Asked Questions Q: Does the 165844-14 require direct electrical power at the probe tip?A: No. The proximity probe receives excitation through the connected 3300 XL Proximitor sensor. The probe itself functions as a passive eddy current sensing element. Q: What type of measurement signal does the 165844-14 provide?A: The probe provides a voltage output proportional to the physical gap between the probe tip and the rotating shaft target surface through the connected signal conditioning module. Q: Can the 165844-14 measure shaft vibration without physical contact?A: Yes. The probe measures shaft displacement through an electromagnetic eddy current field and maintains a non-contact sensing distance during operation. Field Installation Guidelines Install the 165844-14 with the probe tip aligned toward the conductive shaft target surface according to the 3300 XL system installation requirements. Maintain proper cable routing practices to reduce electromagnetic interference. Furthermore, separate probe cables from high-current power conductors and use appropriate grounding methods at the monitoring system side. Verify the probe gap voltage during commissioning to confirm correct mechanical positioning. For Bently Nevada proximity systems, technicians commonly validate the operating gap near the -10 VDC target value when configuring the Proximitor measurement loop. Inspect the integrated cable and connector interface before installation. Avoid sharp bending, excessive mechanical stress, or contact with moving machine components.
$200.00 $100.00
-
Bently Nevada Bently Nevada 330145-14 3300 XL 8 mm Eddy Current Proximity Probe
Bently Nevada 330145-14 3300 XL 8 mm Eddy Current Proximity Probe The Bently Nevada 330145-14, also cataloged as the 330145 3300 XL 8 mm Eddy Current Proximity Probe, operates as a dedicated hardware component for shaft displacement and vibration measurement within the 3300 XL Proximity Transducer System. Hardware Specifications Parameter Specification Model Bently Nevada 330145-14 Brand Bently Nevada Product Type Eddy Current Proximity Probe Series 3300 XL 8 mm Proximity Transducer System Origin USA Weight 0.1kg Dimensions 8 mm probe tip diameter; 1.4 m total probe length Operating Temp -51 deg C to +177 deg C Power Consumption Passive probe element; powered through connected Proximitor Sensor Measurement Technology Non-contact eddy current displacement sensing Linear Measurement Range 2.0 mm (80 mils) System Sensitivity 7.87 V/mm (200 mV/mil) with 3300 XL Proximitor Sensor Target Material AISI 4140 steel Output Impedance 50 ohm System Operating Voltage -17.5 VDC to -26 VDC Probe Tip Material Polyphenylene sulfide (PPS) Probe Case Material AISI 303 or 304 stainless steel Cable Insulation Fluoroethylene propylene (FEP) Connector Type Miniature coaxial ClickLoc locking connector Pressure Rating Sealed up to 70 psi (4.8 bar) Compliance API 670 machinery protection requirements Eddy-Current Measurement and Rotor Dynamics Characteristics The 330145-14 uses eddy-current probe scaling to convert shaft displacement into proportional electrical output signals. Moreover, the probe works with the 3300 XL Proximitor Sensor to maintain a defined measurement relationship of 7.87 V/mm for vibration and position monitoring. The probe assembly supports gap voltage validation procedures with typical -10 VDC target settings when technicians establish the operating clearance between the probe tip and the rotating shaft. Therefore, the system provides consistent reference conditions for rotor dynamics analysis, including radial vibration, axial position, and rotational behavior evaluation. The probe construction also applies signal design practices that reduce measurement errors caused by installation effects and electrical interference. In addition, the coaxial ClickLoc connection maintains mechanical locking and signal continuity in industrial machinery monitoring installations. Frequently Asked Questions Q: Does the 330145-14 probe directly output a vibration signal?A: No. The probe generates an eddy-current displacement signal that requires a compatible 3300 XL Proximitor Sensor to provide the conditioned output signal. Q: What gap voltage should technicians verify during installation?A: Technicians typically verify the probe operating gap near the -10 VDC target value when setting the mechanical clearance between the probe tip and shaft surface. Q: Can the probe operate without a target shaft material specification?A: No. The measurement calibration depends on the electrical characteristics of the target material. The standard target material is AISI 4140 steel. Field Installation Guidelines Install the 330145-14 probe with the sensing tip facing the monitored shaft surface according to the machinery manufacturer's mechanical drawings. Maintain proper probe clearance and verify the gap voltage before commissioning the monitoring channel. Furthermore, route the extension cable away from high-current power conductors to minimize electromagnetic interference. Connect the ClickLoc coaxial connector securely and confirm that the cable shielding and grounding follow the applicable machinery protection system installation requirements. Avoid sharp cable bends, mechanical stress on the probe body, and contamination of the probe tip surface during installation.
$200.00 $100.00
-
Bently Nevada Bently Nevada 137504-08 3300 XL 8 mm Proximity Probe Assembly
Bently Nevada 137504-08 3300 XL 8 mm Proximity Probe Assembly The Bently Nevada 137504-08, also cataloged as the 137504-08 3300 XL 8 mm Proximity Probe Assembly, operates as a dedicated hardware component for non-contact shaft displacement measurement within Bently Nevada machinery protection systems. Hardware Specifications Parameter Specification Model 137504-08 Brand Bently Nevada Origin USA Product Type Proximity Sensors Series 3300 XL 8 mm Configuration Integrated proximity probe and extension cable assembly Measurement Principle Eddy-current non-contact displacement measurement Probe Tip Diameter 8 mm Probe Overall Length Approximately 152 mm Cable Length 8 ft (approximately 2.4 m) Measurement Linear Range 2 mm to 5 mm typical Housing Material AISI 304 stainless steel Tip Material Polyphenylene Sulfide (PPS) Cable Insulation FEP fluoropolymer Probe Operating Temp -52 deg C to +177 deg C Cable Operating Temp -52 deg C to +100 deg C Mounting Thread Options 1/4-28 UNF or M8 x 1 Humidity Rating Up to 100% condensing with proper connector sealing Probe-to-Cable Tensile Strength 330 N approximately Lead-to-Cable Tensile Strength 270 N approximately Standards Compliance API 670 4th Edition Weight Approximately 0.1 kg Dimensions Probe length approximately 152 mm; cable length 8 ft Power Consumption Passive sensing element; powered through compatible Proximitor sensor system Eddy-Current Probe Scaling and Rotor Dynamics Monitoring The 137504-08 uses the 3300 XL 8 mm eddy-current sensing technology to convert shaft displacement into electrical measurement signals. Therefore, the probe assembly works with compatible Proximitor sensors to provide calibrated vibration and position feedback. Moreover, the system architecture supports gap voltage validation with standard -10 VDC target settings during installation and calibration. The measured gap voltage confirms the probe operating position and maintains correct signal linearity. The probe assembly supports rotor dynamics analysis by measuring shaft motion without mechanical contact. In addition, the 3300 XL construction applies signal stability methods to reduce measurement interference caused by installation conditions and electromagnetic environments. Frequently Asked Questions Q: Does the 137504-08 require direct electrical power at the probe tip?A: No. The proximity probe is a passive sensing component and receives excitation through the compatible Bently Nevada Proximitor sensor. Q: What installation factor affects measurement accuracy most significantly?A: Correct probe gap adjustment and cable routing directly affect displacement signal accuracy. Installers should verify gap voltage and maintain proper shielding practices. Q: Can the 137504-08 connect directly to a vibration monitor input?A: No. The probe requires a compatible Proximitor sensor to convert the eddy-current signal into a standardized monitoring output. Field Installation Guidelines Install the probe using the specified mounting thread and maintain mechanical alignment with the monitored shaft surface. Verify the probe gap voltage during commissioning and confirm operation near the recommended -10 VDC target range. Route the extension cable away from high-current power conductors and electromagnetic interference sources. Maintain proper cable support to prevent mechanical stress at the probe-to-cable connection point. Connect cable shielding according to the machinery protection system grounding requirements. Inspect the connector sealing arrangement when operating in high humidity or condensing environments.
$200.00 $100.00
-
Bently Nevada Bently Nevada 1034549-10 FieldMonitor 24 VDC Power Supply Module
Bently Nevada 1034549-10 FieldMonitor 24 VDC Power Supply Module The Bently Nevada 1034549-10, also cataloged as the 1701/10 FieldMonitor 24 VDC Power Supply Module, operates as a dedicated hardware component for DC power conversion and distribution within the Bently Nevada FieldMonitor terminal base system. Hardware Specifications Parameter Specification Model 1034549-10 / 1701/10 Brand Bently Nevada (Baker Hughes) Origin United States Product Type FieldMonitor 24 VDC Power Supply Module System Compatibility Bently Nevada FieldMonitor 1701/05 and 1701/06 Terminal Bases Input Voltage Range +18 VDC to +36 VDC, 24 VDC nominal Inrush Current 30 A peak nominal Overvoltage Protection Up to 50 VDC without damage Isolation Voltage 850 VDC primary to chassis Internal Protection 250 V, 3 A slow-blow fuse Operating Temp -20 deg C to +70 deg C Storage Temp -40 deg C to +85 deg C Relative Humidity 0% to 95% non-condensing Dimensions 105 mm x 150 mm x 56 mm Weight Approximately 0.57 kg Power Consumption DC supply conversion for FieldMonitor internal logic and connected monitoring modules Bently Nevada FieldMonitor Power Architecture The 1034549-10 module performs DC power conditioning for FieldMonitor monitoring assemblies installed in 1701 series terminal bases. Moreover, it maintains regulated internal supply levels for adjacent monitoring modules while providing electrical isolation between the input source and chassis reference. The module supports industrial DC input variations from +18 VDC to +36 VDC. Therefore, it can maintain stable operation during normal fluctuations in plant DC distribution systems. The internal fuse protection limits fault current conditions and protects the power conversion circuitry from external electrical events. For machinery monitoring installations, the module operates alongside FieldMonitor signal processing hardware that manages vibration and machine condition inputs. In addition, the power design supports electrical noise reduction required for proximity probe and vibration monitoring environments. Bently Nevada monitoring architectures often require controlled signal behavior, including eddy-current probe scaling, gap voltage validation, rotor dynamics evaluation, and cross-talk suppression. The 1034549-10 provides the regulated DC power foundation required for these monitoring functions by maintaining stable electrical conditions at the terminal base level. Frequently Asked Questions Q: Can the 1034549-10 Power Supply Module accept a 24 VDC industrial power source directly?A: Yes. The module accepts +18 VDC to +36 VDC input power with 24 VDC as the nominal operating voltage. Q: Does the module provide electrical isolation between input power and chassis ground?A: Yes. The module provides 850 VDC isolation between the primary input circuit and chassis reference. Q: Is the 1034549-10 designed for installation in 1701 series FieldMonitor terminal bases?A: Yes. The module installs into the dedicated power slot of Bently Nevada 1701/05 and 1701/06 FieldMonitor terminal bases. Field Installation Guidelines Install the 1034549-10 module only in the designated power supply position of the compatible FieldMonitor terminal base. Verify DC polarity before connecting external power wiring to prevent input damage. Route DC power cables separately from high-current motor cables and high-frequency switching conductors to reduce electrical interference. Connect chassis grounding according to site electrical standards to maintain proper isolation performance. Inspect terminal connections for mechanical tightness and ensure the module seats completely within the terminal base slot. Maintain adequate enclosure ventilation to keep operating temperature within the specified range. Use shielded signal wiring practices for adjacent vibration monitoring channels where required by the installation design.
$200.00 $100.00
-
Bently Nevada Bently Nevada 121M6470 Ranger Pro Wireless Condition Monitoring Sensor
Bently Nevada 121M6470 Ranger Pro Wireless Condition Monitoring Sensor Configured for wireless triaxial vibration and temperature monitoring in the Ranger Pro Wireless Condition Monitoring system, the Bently Nevada 121M6470 (121M6470 Wireless Triaxial Vibration Sensor) provides direct physical data acquisition and condition monitoring execution. Hardware Specifications Parameter Specification Model 121M6470 Brand Bently Nevada Origin USA Product Type Wireless Triaxial Vibration and Temperature Sensors Sensor Type Wireless triaxial accelerometer with integrated temperature measurement Measurement Axes X, Y, and Z axes Weight 230 g without battery / 300 g with battery Dimensions Approximately 88 mm height x 40 mm diameter Operating Temp -40 deg C to 85 deg C for electronics Power Consumption Battery powered; operating life up to 5 years depending on configuration Enclosure Material 316 stainless steel body with glass-reinforced PPS top housing Mounting Interface M6 x 1 mm internal thread direct mounting Wireless Protocols ISA100 Wireless and WirelessHART Configuration Method Over-the-air (OTA) provisioning and configuration Vibration Measurement Velocity, acceleration, timebase waveform, FFT spectrum, PeakDemod spectrum Velocity Spectrum Range 5 Hz to 2000 Hz Spectral Lines 400, 800, 1600, and 3200 lines Temperature Measurement Range -40 deg C to 120 deg C Temperature Resolution 0.1 deg C Temperature Accuracy +/-1 deg C typical, +/-3 deg C maximum Ingress Protection IP67 dust and water resistance Vibration Limit 20 g peak Shock Resistance 0.5 m drop onto concrete Maximum Altitude 3000 m Rotor Dynamics and Wireless Vibration Signal Processing The Bently Nevada 121M6470 applies vibration measurement methods used for rotating machinery analysis within the Ranger Pro platform. Moreover, the sensor processes acceleration and velocity signals to generate timebase waveforms, FFT spectra, and PeakDemod spectrum data for machinery diagnostics. The sensor architecture supports mechanical condition evaluation by monitoring vibration behavior across three measurement axes. Therefore, it can identify changes associated with imbalance, misalignment, bearing conditions, and other rotating equipment responses when integrated with System 1 analysis software. Bently Nevada machinery monitoring technology also uses signal validation methods associated with rotor dynamics applications. In addition, the sensor design supports controlled measurement behavior to reduce unwanted signal interaction and maintain measurement consistency in industrial environments. Frequently Asked Questions Q: Does the 121M6470 require wired signal cables for vibration data transmission?A: No. The sensor communicates through ISA100 Wireless or WirelessHART networks and transfers processed vibration and temperature data wirelessly. Q: What vibration data formats can the 121M6470 generate?A: The sensor provides timebase waveforms, FFT spectra, and PeakDemod spectrum data for rotating machinery analysis. Q: Can the sensor operate in outdoor industrial environments?A: Yes. The enclosure provides IP67 protection and supports industrial installation conditions within the specified operating temperature range. Field Installation Guidelines Install the 121M6470 directly on the monitored machine surface using the specified mounting interface. Ensure the mounting location provides solid mechanical coupling with the equipment housing to maintain vibration measurement accuracy. Avoid installation points with excessive surface contamination, loose mechanical structures, or abnormal heat exposure beyond the sensor operating limits. For high-temperature locations, use approved tethered mounting methods when required. During wireless commissioning, verify network communication quality, antenna orientation, and device configuration parameters through the Ranger Pro system interface. In addition, separate sensor installation from high-current power cables and strong electromagnetic interference sources where practical. Maintain proper grounding practices for associated machinery monitoring equipment and verify that all connected gateways and control system interfaces follow site electrical installation standards.
$200.00 $100.00
-
Bently Nevada Bently Nevada 70M303 Ranger Pro Wireless Condition Monitoring Sensor
Bently Nevada 70M303 Ranger Pro Wireless Condition Monitoring Sensor The Bently Nevada 70M303-AXX-BXX-CXX-DXX, also cataloged as the 70M303 Wireless Condition Monitoring Sensor, operates as a dedicated hardware component for tri-axial vibration and surface temperature measurement within the Ranger Pro Wireless Condition Monitoring network. Suffix Breakdown & Model Matrix The 70M303 model uses configurable suffix selections for mounting, radio communication, battery supply, and certification options. Suffix Option Description Available Configuration A Mounting Hardware 00 No stud; 01 M6x1 to M8x1.25 tri-axial alignment stud; 02 M6x1 to M8x1.25 adapter stud; 03 M6x1 to M6x1 stud; 04 M6x1 to 1/4-28 adapter stud; 05 M6x1 to 10-32 adapter stud; 06 M6x1 to 3/8-24 adapter stud; 07/08 tri-axial alignment studs; 09 M6x1 epoxy cementing pad B Radio Option 01 ISA100.11a wireless communication C Battery Option 00 No battery; 01 Battery supplied and not installed D Agency Approval 01 CSA North America; 02 ATEX/IECEx hazardous area certification Hardware Specifications Parameter Specification Model 70M303-AXX-BXX-CXX-DXX Brand Bently Nevada Product Series Ranger Pro Wireless Condition Monitoring Device Type Tri-axial Wireless Accelerometer Sensor Origin USA Weight Approx. 230 g without battery; approx. 300 g with battery installed Dimensions 88 mm height x 40 mm diameter Operating Temp -40 deg C to +85 deg C Power Consumption Battery powered, configuration dependent Sensor Type Tri-axial piezoelectric accelerometer with integrated temperature sensor Measurement Axes X, Y, and Z axes Acceleration Range +/- 1 g to +/- 20 g Surface Temperature Measurement -40 deg C to +125 deg C Temperature Resolution 0.1 deg C Wireless Protocol ISA100.11a Radio Frequency 2.4 GHz ISM band Data Encryption 128-bit AES Battery Type User-replaceable D-size 3.6 V lithium-thionyl chloride battery Battery Life Up to 5 years depending on sampling configuration Enclosure Protection IP67 sealed stainless steel and PPS housing Shock Resistance 0.5 m drop onto concrete Rotor Dynamics and Vibration Signal Processing Features The 70M303 applies Bently Nevada vibration monitoring technology for rotating equipment condition analysis. Moreover, the sensor captures acceleration, velocity, timebase waveforms, spectra, and PeakDemod spectrum data for mechanical assessment. The device measures three-axis vibration responses to support rotor dynamics evaluation. In addition, the sensor architecture maintains signal integrity through controlled measurement paths and minimizes environmental interference during wireless data transmission. For rotating machinery applications, the wireless sensor complements traditional Bently Nevada monitoring systems by providing vibration data acquisition without permanent signal cabling. Therefore, it supports condition monitoring configurations where direct wiring installation is restricted. Frequently Asked Questions Q: What vibration signals can the Bently Nevada 70M303 measure?A: The 70M303 measures tri-axial acceleration data and provides vibration analysis outputs including velocity calculations, timebase waveforms, spectra, and PeakDemod spectrum data. Q: Does the 70M303 require external wiring for signal transmission?A: No. The sensor uses ISA100.11a wireless communication at 2.4 GHz to transmit collected condition monitoring data to compatible wireless infrastructure. Q: Can the battery be replaced in the field?A: Yes. The 70M303 uses a user-replaceable D-size 3.6 V lithium-thionyl chloride battery. Field replacement procedures must follow applicable hazardous area requirements when certified versions are installed. Field Installation Guidelines Install the sensor on a rigid machine surface to maintain accurate vibration coupling. Select mounting hardware according to the mechanical interface requirements of the monitored equipment. Ensure the mounting surface is clean and free from excessive corrosion, paint buildup, or contamination before installation. Maintain appropriate wireless communication clearance between the sensor and ISA100 network infrastructure. Route nearby electrical cables away from the sensor mounting area when possible to reduce electromagnetic interference. Verify sensor configuration, wireless provisioning, and measurement direction before placing the device into continuous monitoring service. For hazardous area installations, confirm that the selected 70M303 configuration matches the required CSA or ATEX/IECEx certification.
$200.00 $100.00
-
Bently Nevada Bently Nevada 70M403 Ranger Pro Wireless Condition Monitoring Sensor
Bently Nevada 70M403 Ranger Pro Wireless Condition Monitoring Sensor Configured for wireless triaxial vibration measurement and temperature monitoring in the Ranger Pro wireless condition monitoring network, the Bently Nevada 70M403 (70M403 Wireless Condition Monitoring Sensor) provides direct physical data acquisition and wireless transmission functions. Hardware Specifications Parameter Specification Model 70M403 Brand Bently Nevada Product Series Ranger Pro Wireless Condition Monitoring Product Type Wireless Triaxial Accelerometer Sensor Origin USA Weight Approx. 230 g without battery; approx. 300 g with battery Dimensions Height: 88 mm; Diameter: 40 mm Operating Temp -40 deg C to +125 deg C Power Consumption Battery powered with replaceable D-size 3.6 V lithium-thionyl chloride battery Measurement Inputs Triaxial vibration (X, Y, Z axes) and integrated temperature measurement Acceleration Range +/- 1 g to +/- 20 g, up to 200 m/s2 Acceleration Frequency Range 0.1 Hz to 20 kHz; Z-axis up to 10 kHz, X/Y axes up to 4 kHz Velocity Frequency Range 5 Hz to 2000 Hz Wireless Communication ISA100.11a or WirelessHART based on IEEE 802.15.4 Wireless Transmission Range Up to 150 m line of sight Battery Life Up to 5 years depending on sampling and transmission settings Output Data Velocity, acceleration, temperature, timebase waveform, FFT spectrum, PeakDemod spectrum Protection Rating IP66 / IP67 Housing Material 316L stainless steel body with glass-reinforced PPS top section Mounting Options M6 threaded stud, magnetic mount, or tethered mounting for high temperature locations Hazardous Area Rating ATEX / IECEx / CSA Class I Division 1 certification options depending on configuration Eddy Current Scaling and Rotor Dynamics Measurement Features The Bently Nevada 70M403 applies mechanical monitoring principles used in Bently Nevada condition monitoring systems. Moreover, the sensor architecture supports vibration waveform collection and frequency spectrum analysis for rotating equipment fault identification. The Ranger Pro sensor measures three-axis acceleration data and converts mechanical vibration into wireless digital data streams. Therefore, maintenance systems can analyze bearing condition, imbalance, misalignment, looseness, and other rotating machinery behaviors through FFT and PeakDemod spectrum processing. In addition, Bently Nevada monitoring technologies use calibrated vibration measurement methods to maintain signal consistency across machinery monitoring points. The system design considers vibration response characteristics, sensor mounting influence, and measurement channel separation to reduce cross-talk effects between vibration axes. The sensor operates with wireless communication networks while maintaining data acquisition functions required for predictive maintenance platforms such as System 1. It supports vibration trend analysis, waveform review, and spectrum-based diagnostics without requiring permanent field wiring. Frequently Asked Questions Q: What vibration measurements does the 70M403 sensor provide?A: The 70M403 provides triaxial acceleration measurement across X, Y, and Z axes and also measures equipment surface temperature through the integrated temperature sensor. Q: Does the 70M403 require wired signal connections for data transmission?A: No. The sensor communicates through ISA100.11a or WirelessHART wireless protocols based on IEEE 802.15.4 communication technology. Q: What mounting methods are available for the sensor installation?A: The sensor supports M6 threaded stud mounting, magnetic mounting, and tethered installation methods for locations requiring additional mechanical or temperature considerations. Field Installation Guidelines Install the 70M403 directly on the machine measurement point with a rigid mechanical connection to maintain vibration signal accuracy. Verify that the mounting surface is clean, flat, and free from excessive corrosion before installation. Use the recommended mounting hardware and ensure sufficient mechanical contact between the sensor base and equipment surface. For wireless communication performance, position the sensor within the network coverage area and avoid installation locations surrounded by large metallic structures that may affect radio transmission paths. When installing in hazardous areas, confirm that the selected sensor certification matches the site classification requirements. Follow approved grounding, shielding, and wiring practices for associated network equipment. Avoid installing the sensor near excessive heat sources beyond the specified operating temperature range. For high-temperature applications, use the supported tethered mounting method when required.
$200.00 $100.00
-
Bently Nevada Bently Nevada 100767-01 3500 Series Control Module
Bently Nevada 100767-01 3500 Series Control Module Configured for dynamic pressure and vibration signal processing in the Bently Nevada 3500 Machinery Protection System, the Bently Nevada 100767-01 (100767-01 Control Module) provides direct physical and electrical execution for machinery condition data acquisition and monitoring functions. Hardware Specifications Parameter Specification Model 100767-01 Brand Bently Nevada Product Type Control Module Series 3500 Machinery Protection System Origin USA Weight Approx. 0.8 kg Dimensions 88.9 mm W x 266.7 mm H x 165.1 mm D Operating Temp -40 deg C to +70 deg C Application Dynamic pressure and vibration monitoring Input Signal Type Compatible vibration and dynamic pressure sensor signals Signal Processing Signal conditioning, filtering, and scaling Communication Interface 3500 Series internal system communication Mounting Type 3500 rack installation Storage Temperature -40 deg C to +85 deg C Humidity Range 5% to 95% non-condensing Eddy-Current Measurement and Rotor Dynamics Processing The Bently Nevada 100767-01 operates within the 3500 platform architecture for machinery monitoring signal handling. The module processes measurement data from compatible field sensors and supports vibration-related monitoring functions. Bently Nevada monitoring systems typically apply eddy-current probe scaling methods for shaft displacement measurement. Signal conditioning evaluates probe response characteristics, while gap voltage validation can use -10 VDC target references for confirming probe operating conditions. The module architecture supports rotor dynamics analysis by maintaining measurement consistency for rotating equipment monitoring. Signal processing methods include filtering and scaling functions to reduce measurement interference and support vibration data interpretation. Frequently Asked Questions Q: Is the 100767-01 designed for installation in a standalone configuration?A: No. The module is designed as a rack-mounted component within the Bently Nevada 3500 Machinery Protection System architecture. Q: What type of field signals can be connected to this module?A: The module processes compatible vibration and dynamic pressure measurement signals from approved Bently Nevada sensor interfaces. Q: Does the module require specific installation considerations for signal quality?A: Yes. Field wiring should maintain proper shielding, grounding, and separation from high-voltage conductors to reduce electrical interference. Field Installation Guidelines Install the module into an approved Bently Nevada 3500 rack slot according to system configuration requirements. Verify rack power availability and module seating before commissioning. Connect field sensor wiring with correct shielding and grounding practices. Separate low-level measurement signal cables from power and switching circuits. Confirm sensor wiring polarity and termination before applying system power. Perform system diagnostics through the 3500 monitoring platform after installation.
$200.00 $100.00
-
Bently Nevada 140734-03 3500/44M Aeroderivative GT Vibration Monitor Module | Bently Nevada
Bently Nevada 140734-03 3500/44M Aeroderivative GT Vibration Monitor Module Configured for velocity vibration measurement in the Bently Nevada 3500 Machinery Protection System, the Bently Nevada 140734-03 (140734-03 3500/44M Aeroderivative GT Vibration Monitor Module) provides direct signal processing execution for four-channel turbine vibration monitoring. Hardware Specifications Parameter Specification Model 140734-03 Brand Bently Nevada Origin USA Series 3500 Module Type 3500/44M Aeroderivative GT Vibration Monitor Module Function Four-channel vibration monitoring and protection processing Input Signal Velocity transducer input Number of Channels 4 channels Measurement Types Velocity vibration, integrated displacement, tracking vibration, band-pass vibration Configuration Method 3500 Rack Configuration Software Communication Interface 3500 system rack backplane communication Power Consumption 7.7 W typical Dimensions 241.3 mm x 24.4 mm x 241.8 mm Weight 0.91 kg Operating Temp -40 deg C to +70 deg C Storage Temp -40 deg C to +85 deg C Humidity 95% non-condensing Mounting Location 3500 rack front slot Compatible System Bently Nevada 3500 Machinery Protection System Eddy-Current and Rotor Dynamics Signal Processing The 140734-03 module processes vibration input signals from velocity transducers and applies configurable filtering functions for rotating machinery analysis. The module supports vibration measurement conversion, including velocity-to-displacement calculations, tracking measurements, and band-pass signal processing. For machinery protection applications, the module performs signal conditioning and measurement evaluation inside the 3500 rack architecture. Rotor dynamics analysis functions use processed vibration data to evaluate operating condition changes related to speed-dependent mechanical behavior. The module operates with defined sensor input characteristics and supports channel monitoring functions required for turbine vibration supervision. Signal processing parameters are configured through the 3500 system software environment. Frequently Asked Questions Q: How many vibration measurement channels are available on the 140734-03 module?A: The module provides four independent vibration monitoring channels for velocity transducer input signals. Q: What type of input devices are compatible with the 140734-03?A: The module is designed for velocity transducer signals used in aeroderivative gas turbine vibration monitoring applications. Q: Does the 140734-03 require installation inside a Bently Nevada 3500 rack?A: Yes. The module is designed for installation in a Bently Nevada 3500 Machinery Protection System rack slot and communicates through the rack backplane. Field Installation Guidelines Install the 140734-03 module into an available Bently Nevada 3500 rack front slot following the system installation procedure. Verify rack power status before inserting or removing the monitoring module. Connect velocity transducer wiring according to the configured channel assignment and approved field wiring practices. Maintain proper cable routing separation between vibration signal wiring and high-current power conductors. Apply appropriate shield grounding methods to minimize electrical noise interference on sensor circuits. Configure measurement parameters, alarm thresholds, and filtering settings using compatible 3500 configuration software. Verify channel status, sensor input condition, and communication operation before machine commissioning.
$200.00 $100.00
-
Bently Nevada 140482-02 3500/64M Dynamic Pressure I/O Module | Bently Nevada
Bently Nevada 140482-02 3500/64M Dynamic Pressure I/O Module The Bently Nevada 140482-02, also cataloged as the 140482-02 3500/64M Dynamic Pressure I/O Module, operates as a dedicated hardware component for dynamic pressure signal acquisition and conditioning within the Bently Nevada 3500 Machinery Protection System. Hardware Specifications Parameter Specification Model 140482-02 Brand Bently Nevada Product Type 3500/64M Dynamic Pressure I/O Module Series 3500 Machinery Protection System Origin USA Weight Approx. 0.20 kg Dimensions Approx. 241.3 mm x 24.4 mm x 99.1 mm Operating Temp -30 deg C to +65 deg C Power Consumption Approx. 2 to 5 W Input Type Dynamic pressure transducer input Number of Channels 4 channels Sensor Compatibility Dynamic pressure transducers Power Supply 24 VDC nominal Mounting Type 3500 rack single-slot module Output Type Conditioned analog outputs and monitoring signals Communication Interface 3500 rack internal communication bus Signal Processing Dynamic pressure signal conditioning and configurable filtering Eddy-Current Signal Scaling and Machinery Monitoring Characteristics The 140482-02 module processes dynamic pressure measurements through the 3500 platform signal conditioning architecture. It supports channel configuration parameters for pressure waveform evaluation, filtering, and monitoring functions associated with rotating equipment analysis. The Bently Nevada 3500 system architecture applies TSI monitoring principles for machinery condition evaluation. Signal processing methods maintain measurement consistency for applications involving rotor dynamics analysis, vibration-related pressure fluctuations, and transient operating conditions. The module operates within the rack communication structure to transfer conditioned measurement values and alarm status information. Channel parameters can be configured according to connected transducer characteristics and machine protection requirements. Frequently Asked Questions Q: What type of input signals does the 140482-02 module accept?A: The module accepts dynamic pressure transducer signals and performs signal conditioning within the 3500 Machinery Protection System. Q: How many measurement channels are available on the 140482-02?A: The module provides four dynamic pressure input channels for independent monitoring configurations. Q: Can the module operate as a standalone measurement device?A: No. The 140482-02 is designed for installation inside a compatible Bently Nevada 3500 rack and communicates through the internal rack bus. Field Installation Guidelines Install the module into an available compatible slot of the Bently Nevada 3500 rack. Verify rack power status and module compatibility before insertion. Connect dynamic pressure transducer wiring according to the approved system wiring documentation. Use proper cable shielding and grounding practices to reduce electrical interference on measurement signals. Keep signal wiring separated from high-voltage power cables and strong electromagnetic interference sources. Configure channel parameters, filtering settings, and alarm limits through the 3500 configuration software. Verify input signal behavior after installation before placing the monitoring channel into operational service.
$200.00 $100.00
لقد شاهدت 72 من أصل 899 منتجًا