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4916 products

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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  • Sale -50% Bently Nevada 3500/05-02-05-00-00-01 Mini Bulkhead Rack 7 Slot Unit Bently Nevada 3500/05-02-05-00-00-01 Mini Bulkhead Rack 7 Slot Unit

    Bently Nevada Bently Nevada 3500/05-02-05-00-00-01 Mini Bulkhead Rack 7 Slot Unit

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    Product Overview The 3500/05-02-05-00-00-01 is a compact configuration within the Bently Nevada 3500 machinery protection platform, engineered for installations where space efficiency and front-access wiring are required. It combines a reduced 7-slot chassis with a bulkhead mounting structure, enabling direct cabinet or wall integration while maintaining full system compatibility. This rack provides the structural foundation, power routing, and backplane communication required for continuous machinery monitoring and protection in API 670–compliant environments. Configuration Definition This model is defined by the following system layout: Mini rack frame with 7 module positions Bulkhead mounting design with front-side wiring access Standard non-barrier backplane architecture No internal isolation barriers included Standard EIA mechanical finish specification Mechanical Construction Rack type: Mini-size 3500 chassis Mounting method: Bulkhead installation (front-access wiring layout) Frame material: Industrial-grade aluminum alloy Approximate dimensions: Height: ~178 mm (7 in) Width: 305 mm (12 in) Depth: ~305 mm (12 in) Service design: Wiring and termination accessible from front panel This structure is optimized for compact enclosures and wall-mounted protection systems where rear access is restricted. Module Capacity & Layout The internal architecture supports essential monitoring system components: Dedicated slots for system-critical modules: Rack Interface Module (RIM) Power supply unit Remaining slots available for: Vibration monitoring modules Relay interface modules Communication modules Total capacity is limited to 7 modules to maintain compact system design. Electrical & Backplane System Backplane type: Standard non-barrier configuration Power architecture: Supports single or redundant power supply operation Communication paths: System data bus Relay signal bus Keyphasor and transducer routing channels Full compatibility with standard Bently Nevada 3500 modules (within slot limit) Designed for continuous machinery protection operation Environmental Performance Operating temperature range: –20°C to +65°C Storage temperature range: –40°C to +85°C Humidity tolerance: up to 95% non-condensing Suitable for vibration-intensive industrial environments including rotating machinery systems Compliance & Safety Standards EMC immunity: EN 61000-6-2 EMC emissions: EN 61000-6-4 Electrical safety: EN 61010-1 Hazardous area certifications: Class I, Division 2, Groups A–D, T4 ATEX / IECEx Zone 2 (non-barrier configuration) Application Scenarios Compact turbine and compressor protection systems Skid-mounted rotating equipment monitoring OEM machinery with integrated condition monitoring Wall-mounted or cabinet-based installations requiring front wiring access Small-footprint industrial protection systems FAQ Q1: What is the key advantage of bulkhead mounting?It allows all wiring connections to be accessed from the front, eliminating rear clearance requirements. Q2: How many modules can be installed in this rack?The rack supports up to 7 modules including RIM and power supply positions. Q3: Is it compatible with all 3500 modules?Yes, it supports standard 3500 series modules within its slot capacity.

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  • Sale -50% Bently Nevada 3500/05-02-04-00-00-01 Mini Rack PLC Chassis System Bently Nevada 3500/05-02-04-00-00-01 Mini Rack PLC Chassis System

    Bently Nevada Bently Nevada 3500/05-02-04-00-00-01 Mini Rack PLC Chassis System

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    Product Overview The 3500/05-02-04-00-00-01 is a compact, rack-mount chassis from Bently Nevada’s 3500 machinery protection series. Designed for installations where space is limited, this mini-rack accommodates up to seven modules, providing the structural frame and electrical backplane for continuous machinery protection. Its rear-access wiring configuration simplifies installation in control cabinets and skid-mounted equipment. This chassis supports full integration of Rack Interface Modules (RIM), power supplies, monitors, relays, and communication modules, ensuring complete API‑670-compliant vibration monitoring for small-footprint systems. Technical Specifications Rack Format Type: Mini 3500 rack Mounting: 19-inch EIA rails, rack-mount Module slots: 7 total Reserved positions: 1 for RIM, 1 for power supply Remaining slots for monitors, relays, or communications Mechanical Dimensions: 178 mm H × 305 mm W × 305 mm D (~7 × 12 × 12 in) Material: Aluminum chassis Finish: Standard EIA (option 01) Wiring access: Rear Backplane / Electrical Type: Standard non-barrier Power: Single or dual redundant supply support Communication buses: System data bus, relay bus, Keyphasor and transducer routing Module compatibility: All standard 3500 series modules (within slot limits) Environmental Ratings Operating temperature: –20°C to +65°C Storage temperature: –40°C to +85°C Humidity: Up to 95% non-condensing Vibration: Industrial-grade, suitable for turbines, compressors, and refinery machinery Certifications EMC: EN 61000‑6‑2 (immunity), EN 61000‑6‑4 (emissions) Safety: EN 61010‑1 Hazardous area: Class I, Div 2, Groups A–D, T4; ATEX/IECEx Zone 2 Applications Compact turbine or compressor protection systems Skid-mounted machinery monitoring OEM equipment requiring integrated protection Small-footprint monitoring and condition-based maintenance Option Code Breakdown 02 — Mini-rack (7 slots) 04 — Rack-mount format 00 — Standard non-barrier backplane 00 — No internal barriers 01 — Standard EIA finish FAQ Q1: Can this mini-rack be installed in a standard 19-inch cabinet?Yes, it is designed for 19-inch EIA rail mounting with rear wiring access. Q2: How many modules can this mini-rack accommodate?Up to seven modules: 1 RIM, 1 power supply, and 5 for monitors, relays, or communication modules. Q3: Is it suitable for harsh industrial environments?Yes, it supports industrial vibration, temperature extremes, and electrical isolation for reliable monitoring.

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  • Sale -50% Bently Nevada 3500/05-02-04-00-00-00 System Rack Chassis Bently Nevada 3500/05-02-04-00-00-00 System Rack Chassis

    Bently Nevada Bently Nevada 3500/05-02-04-00-00-00 System Rack Chassis

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    System Overview The 3500/05-02-04-00-00-00 is a compact rack assembly within the Bently Nevada 3500 protection platform. It is engineered for installations where cabinet space is limited but full machinery protection functionality is still required. The unit integrates mechanical housing, electrical backplane routing, and modular power distribution in a reduced 7-slot configuration. This mini rack maintains full compatibility with the 3500 system architecture while reducing footprint compared to standard 14-slot chassis designs. Configuration Definition This model is defined by the following structure: Mini rack chassis with 7 module positions 19-inch rack-mount installation format Standard non-barrier backplane architecture No internal isolation barriers included Standard finish configuration The design supports compact system integration without compromising signal integrity or system reliability. Mechanical Construction Rack type: Mini-size 3500 chassis Mounting style: Rack-mount (EIA 19-inch rails) Construction material: Industrial-grade aluminum alloy Approximate dimensions: Height: ~178 mm (7 in) Width: 305 mm (12 in) Depth: ~305 mm (12 in) Service access: Rear wiring access for rack-mounted cabinet installations The reduced frame size is optimized for skid systems and compact enclosures. Module Capacity & Layout Internal slot structure supports essential system components: Dedicated slots for: Rack Interface Module (RIM) Power supply module Remaining slots available for: Vibration monitoring modules Relay modules Communication interface modules Total usable capacity: 7 modules maximum Electrical Architecture Backplane type: Standard non-barrier configuration Power input: Supports single or redundant power supply operation Internal buses: System communication data bus Relay output bus Keyphasor and transducer signal routing channels Full compatibility with standard Bently Nevada 3500 module range (within slot limitation) Designed for continuous machinery protection applications Environmental Performance Operating temperature: –20°C to +65°C Storage temperature: –40°C to +85°C Relative humidity: up to 95% non-condensing Designed for vibration-prone industrial environments including rotating machinery systems Standards & Compliance EMC immunity: EN 61000-6-2 EMC emissions: EN 61000-6-4 Electrical safety: EN 61010-1 Hazardous area approvals: Class I, Division 2, Groups A–D, T4 ATEX / IECEx Zone 2 (non-barrier configuration) Typical Applications Compact turbine protection systems Skid-mounted compressors and rotating equipment OEM machinery with integrated monitoring requirements Small cabinet or space-constrained industrial installations Distributed condition monitoring systems requiring reduced footprint FAQ Q1: How does this mini rack differ from full-size 3500 racks?It provides 7 module slots instead of 14, making it suitable for compact installations. Q2: Can it support redundant power supplies?Yes, within slot allocation limits, redundant power configurations are supported. Q3: Is it compatible with all 3500 modules?Yes, standard modules are supported as long as system slot capacity is not exceeded.

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  • Sale -50% Bently Nevada 3500/05-01-03-05-00-01 System Rack Chassis Bently Nevada 3500/05-01-03-05-00-01 System Rack Chassis

    Bently Nevada Bently Nevada 3500/05-01-03-05-00-01 System Rack Chassis

    15 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    System Overview The 3500/05-01-03-05-00-01 is a full-capacity chassis designed for the Bently Nevada 3500 machinery protection architecture. It functions as the central structural platform that houses all monitoring, relay, communication, and power modules while enabling system-wide communication and regulated power distribution through an integrated backplane. This configuration is specifically engineered for installations requiring front-side wiring access, making it suitable for wall-mounted or cabinet-integrated protection systems. Configuration Definition This rack variant is defined by the following configuration structure: Full-size chassis with 14 module positions Bulkhead-mount installation format with front-access wiring design Standard non-barrier backplane architecture No internal isolation barriers included Standard EIA finish and mechanical specification Mechanical Construction & Access Design Rack format: 19-inch EIA full-size chassis Mounting style: Bulkhead installation with front-access wiring layout Frame material: Industrial-grade aluminum alloy Nominal dimensions: Height: ~266 mm Width: 483 mm Depth: ~305 mm Serviceability: All field wiring connections accessible from the front panel This design reduces rear clearance requirements and simplifies cabinet integration in constrained installations. Module Layout & Slot Allocation The internal slot architecture supports structured system configuration: Dedicated positions for core system modules: Rack Interface Module (RIM) Redundant or single power supply units Remaining slots configured for: Vibration monitoring modules Relay modules Communication interface modules The layout ensures stable communication across all installed modules via the system backplane. Electrical & Backplane System Backplane type: Standard non-barrier design Power architecture: Supports redundant or single power supply configurations Communication infrastructure: System data bus Relay signal bus Keyphasor and transducer signal routing channels Full compatibility with standard Bently Nevada 3500 module range Designed for continuous machinery protection in API 670-compliant systems Environmental & Operating Limits Operating temperature range: –20°C to +65°C Storage temperature range: –40°C to +85°C Humidity tolerance: Up to 95% non-condensing Mechanical resilience: Suitable for vibration-intensive industrial environments Standards & Certifications EMC immunity: EN 61000-6-2 EMC emissions: EN 61000-6-4 Electrical safety: EN 61010-1 Hazardous area approvals: Class I, Division 2, Groups A–D, T4 ATEX / IECEx Zone 2 (non-barrier configuration) Typical Application Areas Turbine protection and monitoring systems Compressor and rotating equipment diagnostics Refinery and petrochemical plant machinery protection Power generation monitoring systems Wall-mounted or cabinet-integrated 3500 system installations requiring front wiring access FAQ Q1: What is the main advantage of bulkhead mounting?It allows all wiring connections to be accessed from the front, reducing rear clearance requirements. Q2: Can this rack support all 3500 modules?Yes. It is compatible with standard Bently Nevada 3500 monitoring, relay, and communication modules. Q3: Is internal barrier protection included?No. This configuration uses a standard non-barrier backplane design.

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  • Sale -50% Bently Nevada 3500/05-01-02-05-00-01 Rack Chassis Bently Nevada 3500/05-01-02-05-00-01 Rack Chassis

    Bently Nevada Bently Nevada 3500/05-01-02-05-00-01 Rack Chassis

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    Overview The 3500/05-01-02-05-00-01 is a full-size rack-mount chassis for the Bently Nevada 3500 Machinery Protection System. It provides the physical frame, power distribution, and backplane communication required to integrate all monitoring, relay, communication, and power modules into a complete machinery protection setup. This configuration features a standard, non-barrier backplane and supports panel- and rail-mounted industrial installations. Configuration Details This order code specifies the rack configuration: Full-size 14-slot frame Rack-mount design compatible with 19-inch EIA rails Standard non-barrier backplane No internal barriers installed Standard EIA finish and aluminum chassis The design ensures modular flexibility for a wide range of protection and monitoring modules. Mechanical & Dimensional Specifications Rack Type: Full-size 3500 series chassis Mounting: Rack-mount (19-inch EIA rails) Total Module Slots: 14 Reserved Slots: 1 for Rack Interface Module (RIM), 1–2 for power supply modules Remaining Slots: Flexible for monitors, relays, or communication modules Chassis Material: Aluminum Finish: Standard EIA Dimensions: Height: ~266 mm (10.5 in) Width: 483 mm (19 in) Depth: ~305 mm (12 in) Electrical & Backplane Architecture Backplane Type: Standard non-barrier Power Distribution: Supports single or dual redundant supplies Communication Buses: System data bus Relay bus Keyphasor and transducer signals Module Compatibility: All standard 3500 series modules Designed for continuous API-670-compliant machinery protection Environmental & Compliance Ratings Operating Temperature: –20°C to +65°C Storage Temperature: –40°C to +85°C Relative Humidity: Up to 95% non-condensing Vibration: Industrial-grade, turbine/compressor compatible EMC: EN 61000-6-2 (immunity), EN 61000-6-4 (emissions) Electrical Safety: EN 61010-1 Hazardous Area Approvals: Class I, Div 2, Groups A–D, T4; ATEX / IECEx Zone 2 Applications Gas and steam turbine protection systems Compressor and critical rotating machinery monitoring Refinery and petrochemical equipment protection Power generation machinery Any installation requiring a complete 3500 system rack infrastructure Option Code Breakdown 01 — Full-size rack (14 slots) 02 — Rack-mount format 05 — Standard backplane 00 — No internal barriers 01 — Standard finish FAQ Q1: Can internal barrier modules be installed in this rack?No. This rack is configured with a standard non-barrier backplane. Q2: How many modules can the rack support?Up to 14 module positions including reserved slots for RIM and power supply modules. Q3: Is this rack compatible with all 3500 modules?Yes. It supports all standard 3500 series modules for monitoring, relay, and communication functions.

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  • Sale -50% Bently Nevada 3500/05-01-01-05-00-01 System Rack Chassis Bently Nevada 3500/05-01-01-05-00-01 System Rack Chassis

    Bently Nevada Bently Nevada 3500/05-01-01-05-00-01 System Rack Chassis

    15 in stock Delivery within 48 hours, pay afterwards  Mid weeks
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    Overview The 3500/05-01-01-05-00-01 is a full-capacity rack assembly within the Bently Nevada 3500 monitoring platform. It serves as the central physical and electrical foundation for installing and linking all system modules used in machinery protection applications. This configuration represents a standard, non-barrier, panel-mounted 14-slot rack equipped with a unified backplane architecture for signal exchange and power distribution across all installed modules. Configuration Definition This specific order code defines the rack characteristics as follows: Full-size rack frame with 14 available module slots Panel-mounted installation design Standard backplane architecture without internal isolation barriers Non-barrier system configuration for general industrial environments Standard finish and mechanical build specification Mechanical Design Rack format: 19-inch EIA-compatible chassis Installation type: Panel mounting with rear service access Construction material: High-strength aluminum alloy frame Nominal dimensions: Height: 266 mm Width: 483 mm Depth: 305 mm Modular slot layout designed for flexible system expansion The structure is optimized for continuous operation in vibration-prone environments typical of rotating machinery installations. Slot Allocation & System Layout The internal architecture supports structured module placement: Dedicated slots for system-critical components Rack Interface Module (RIM) Redundant power supply modules Remaining positions available for: Vibration monitoring modules Relay interface modules Communication and diagnostic modules The backplane ensures synchronized communication across all installed modules. Electrical Architecture Integrated system backplane for high-speed data exchange Distributed power bus supporting redundant power input Signal routing for Keyphasor, transducer, and relay logic channels Fully compatible with standard Bently Nevada 3500 module family Designed for continuous monitoring and protection system operation Environmental Performance Operating temperature range: –20°C to +65°C Storage range: –40°C to +85°C Relative humidity tolerance: up to 95% non-condensing Mechanical robustness aligned with industrial vibration standards Compliance & Safety Standards EMC immunity: EN 61000-6-2 EMC emissions: EN 61000-6-4 Electrical safety: EN 61010-1 Hazardous area certification: Class I, Division 2, Groups A–D, T4 ATEX / IECEx Zone 2 (non-barrier configuration) System Integration Notes Designed for integration with all standard 3500 series modules Requires correct placement of RIM and power modules in designated slots Backplane supports system-wide diagnostics and communication integrity checks Compatible with standard rack-based 3500 system architecture Typical Applications Gas and steam turbine protection systems Compressor condition monitoring installations Refinery and petrochemical equipment protection Power generation rotating machinery systems Large-scale multi-channel machinery monitoring platforms FAQ Q1: Is this rack suitable for internal barrier modules?No. This configuration is a non-barrier system rack and is not designed for internal isolation modules. Q2: How many modules can be installed?The rack supports 14 module positions, including slots reserved for RIM and power supplies. Q3: Can it be upgraded after installation?Yes. Additional modules can be added as long as slot capacity and power budget are maintained.

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  • Sale -50% Bently Nevada 3500/05 System Rack | 14 Slot EIA Rack Unit Bently Nevada 3500/05 System Rack | 14 Slot EIA Rack Unit

    Bently Nevada Bently Nevada 3500/05 System Rack | 14 Slot EIA Rack Unit

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    Overview The 3500/05 system rack from Bently Nevada serves as the structural and electrical backbone of the 3500 Machinery Protection System. It is responsible for mechanically supporting all monitoring modules while ensuring stable power delivery and high-speed internal communication through a dedicated backplane architecture. This rack does not perform signal processing itself; instead, it provides the platform required for all 3500 system modules to operate as an integrated protection and monitoring system. Mechanical Structure & Configuration The rack is engineered in two standardized formats to support different installation requirements: Full-size rack (19-inch EIA) Supports up to 14 module slots Designed for standard industrial control cabinet integration Provides full rear access for wiring and maintenance Mini rack (12-inch format) Supports up to 7 module slots Compact design for space-constrained installations Rear wiring access maintained for serviceability Mini rack configurations are not compatible with bulkhead mounting arrangements. Mounting Options The system rack supports multiple installation methods depending on site design: Panel mounting using rectangular cut-outs with rear access wiring Standard 19-inch rack mounting on EIA rails Bulkhead mounting with front-access wiring for tight enclosures Each mounting method is selected based on cabinet architecture and maintenance accessibility requirements. Electrical Architecture Integrated backplane for module-to-module communication Centralized power distribution through installed power supplies Left-side reserved slots for system-critical modules: Rack Interface Module (RIM) Power supply units Remaining slots are configurable for vibration monitors, relay modules, and communication interfaces within the 3500 platform. Environmental & Compliance Standards Operating temperature range: –20°C to +65°C EMC compliance: EN 61000-6-2 (industrial immunity) EN 61000-6-4 (industrial emissions) Electrical safety standard: EN 61010-1 FCC Part 15 compliance for electromagnetic regulation Hazardous Area Certifications The rack is suitable for deployment in classified environments when used with approved system components: Class I, Division 2, Groups A–D, T4 ATEX / IECEx: II 3G Ex nA nC ic IIC T4 Gc System Integration Notes Internal barrier configurations require dedicated grounding via 3500/04-01 earthing module Mini rack configurations require compatible system software version 2.70 or later Some display and enclosure accessories may have compatibility constraints depending on rack type Application Areas Gas and steam turbine protection systems Compressor and rotating equipment monitoring Refinery and petrochemical machinery infrastructure Power generation condition monitoring systems Large-scale machinery protection architectures requiring modular expansion FAQ Q1: Does the 3500/05 perform vibration measurement?No. It functions purely as a rack platform for housing and interconnecting monitoring modules. Q2: Can different module types be mixed in one rack?Yes. The rack supports mixed configurations of monitors, relays, and communication modules within available slots. Q3: Is the rack expandable after installation?Yes. System expansion is supported as long as slot capacity and power budget are respected.

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  • Sale -50% Bently Nevada 3500/01-01 Rack Config Software Manual System Bently Nevada 3500/01-01 Rack Config Software Manual System

    Bently Nevada Bently Nevada 3500/01-01 Rack Config Software Manual System

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    Overview The 3500/01-01 from Bently Nevada is a configuration software package and system manual designed for the Bently Nevada 3500 machinery protection and condition monitoring platform. It is used during system commissioning, expansion, and maintenance to define rack architecture, module assignments, and alarm logic settings. Unlike measurement modules, this product does not perform signal acquisition or vibration analysis. Instead, it provides the engineering environment required to configure and manage the 3500 monitoring rack. System Functionality Rack-level configuration for Bently Nevada 3500 monitoring systems Module slot assignment and system topology definition Channel configuration for connected monitoring modules Alarm threshold setup and logical grouping Support for system commissioning and reconfiguration Documentation-driven setup guidance for engineering teams Software & Documentation Scope PC-based configuration utility for 3500 rack setup Engineering manual included for installation and system logic reference Used in conjunction with 3500 series hardware modules Supports structured configuration of multi-channel monitoring systems Facilitates system expansion and maintenance planning Technical Characteristics Platform: Bently Nevada 3500 Series system environment Purpose: Rack configuration and system setup (non-measurement function) Deployment: Engineering workstation (Windows-based environment) Output: Configuration data for rack and module initialization Compatibility: Full integration with 3500 monitoring hardware family Application Scenarios Commissioning of new 3500 rack monitoring systems Reconfiguration after system expansion or module replacement Maintenance and lifecycle updates of installed monitoring racks Engineering validation of system architecture prior to startup FAQ Q1: Does this product measure vibration or process signals?No. It is strictly a configuration tool and manual for system setup, not a measurement module. Q2: Is it required for installing a Bently Nevada 3500 system?Yes. It is typically used during initial commissioning and system configuration stages. Q3: Can it be used for all 3500 series racks?It is designed for compatibility across the Bently Nevada 3500 rack platform and its supported modules.

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  • Sale -50% Bently Nevada 1900/65A-01-01-03-00-01 Vibration Monitor Unit Bently Nevada 1900/65A-01-01-03-00-01 Vibration Monitor Unit

    Bently Nevada Bently Nevada 1900/65A-01-01-03-00-01 Vibration Monitor Unit

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    Overview The 1900/65A 01-01-03-00-01 from Bently Nevada is a compact vibration monitoring device engineered for continuous protection of small and auxiliary rotating machinery. It is designed as a standalone alternative to rack-based systems, providing essential monitoring, alarm logic, and output functions in a simplified hardware format. This configuration is commonly applied where API 670–style protection is required without deploying a full-scale 3500 monitoring rack. It supports proximity probe-based displacement measurement along with relay-based protection and analog integration into plant control systems. Typical installations include pumps, fans, compressors, blowers, and other general-purpose rotating assets. Configuration Definition The model code 01-01-03-00-01 defines the functional structure of the unit: Proximity probe input configured for shaft displacement measurement Standard vibration signal processing channel Dual relay output package (Alert + Danger) Standard isolated 4–20 mA analog output Universal AC/DC power input module This combination provides a complete monitoring loop for single-channel machinery protection applications. Technical Specifications Parameter Specification Brand Bently Nevada Model 1900/65A 01-01-03-00-01 Product Type Single-Channel Vibration Monitor Monitoring Function Shaft Displacement (Proximity Probe Based) Sensor Compatibility 5 mm, 8 mm, 11 mm Proximity Probe Systems Measurement Mode Overall Vibration / Displacement Input Signal Range Approx. 0–200 µm peak-to-peak (system dependent) Frequency Response 3 Hz to 10 kHz (sensor dependent) Buffered Output Front-panel BNC (raw signal access) Alarm Levels Alert / Danger Alarm Functionality Non-OK, vibration, system fault detection Alarm Accuracy ±1% of full scale Alarm Delay Configurable Alarm Latching Selectable Relay Type 2 × Form-C (SPDT) Relay Ratings 5 A @ 250 Vac / 5 A @ 30 Vdc Analog Output Isolated 4–20 mA Load Capacity Up to 600 Ω Power Input 85–264 Vac / 100–300 Vdc Power Consumption < 10 W Electrical Isolation 1500 Vac Mounting Type DIN rail or panel mount Operating Temperature -20°C to +65°C Humidity 95% non-condensing Protection Class IP20 Dimensions 50 × 150 × 120 mm Weight 0.8 kg System Functionality The monitor continuously processes vibration signals from an attached proximity probe system and compares measured values against configured alarm thresholds. When abnormal vibration levels are detected, the system activates relay outputs for protective shutdown or alarm indication. Key output functions include: Real-time vibration trend output via 4–20 mA loop Direct signal access through buffered BNC output Independent relay-based protection logic Adjustable alarm timing and latching behavior Typical Applications This configuration is widely deployed in condition monitoring of smaller rotating machines, including: Centrifugal pumps Industrial fans Air blowers Process compressors Auxiliary drive systems Cooling and ventilation equipment FAQ What type of measurement does this monitor support? It is designed for proximity probe-based shaft displacement and overall vibration monitoring. Can this unit be integrated into a PLC or DCS system? Yes. The isolated 4–20 mA output allows direct integration into control and trending systems. Is this suitable for machine shutdown protection? Yes. The dual relay outputs provide independent Alert and Danger signals for protection logic.

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  • Sale -50% Bently Nevada 80466-02 TK81 Tunable Filter/Vibration Meter Bently Nevada 80466-02 TK81 Tunable Filter/Vibration Meter

    Bently Nevada Bently Nevada 80466-02 TK81 Tunable Filter/Vibration Meter

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    Overview The TK81 80466-02 from Bently Nevada is a portable dual-function calibration and signal simulation device designed for verification of proximity probe measurement chains and vibration monitoring channels. It combines mechanical displacement calibration with electronic vibration signal generation, allowing complete functional testing of API 670 machinery protection systems. This instrument is commonly used in commissioning, troubleshooting, and maintenance of rotating machinery monitoring systems where both sensor integrity and monitoring electronics must be validated. Functional Architecture The TK81 is designed with two integrated verification methods: Mechanical Displacement SimulationA precision micrometer-driven assembly reproduces controlled shaft movement using a hardened steel target. This allows direct validation of probe gap response and linear displacement behavior. Electronic Signal GenerationAn internal signal source generates calibrated vibration and displacement signals that can be injected into monitoring channels or Proximitor® sensor inputs for system-level testing. Technical Specifications Parameter Specification Brand Bently Nevada Model TK81 80466-02 Product Type Tunable Filter / Vibration Meter / Calibration Unit Calibration Modes Mechanical + Electronic Micrometer Range 0–25.4 mm (0–1.0 in) Resolution 0.01 mm Accuracy ±0.025 mm Target Material AISI 4140 Hardened Steel Probe Compatibility 5 mm, 8 mm, 11 mm, 14 mm Signal Types DC ramp / AC sinewave simulation Frequency Range 10 Hz – 5 kHz (typical) Output Interface High-impedance BNC connector Power Supply Internal battery or external AC adapter Operating Time Approx. 6–8 hours Operating Temperature 0°C to +50°C Storage Temperature -20°C to +70°C Humidity 95% non-condensing Housing Aluminum body with steel calibration mechanism Dimensions 200 × 150 × 120 mm Weight 2.0 kg System Testing Functions The TK81 enables full-loop validation of vibration monitoring systems: Proximity probe gap voltage verification Linear response validation across full measurement range Proximitor® sensor signal integrity testing Alarm threshold and scaling verification Monitor channel response simulation Combined mechanical and electronic system diagnostics The dual-mode design allows technicians to isolate faults between sensors, cabling, and monitoring electronics. Typical Applications Rotating machinery commissioning API 670 compliance verification Vibration monitoring system troubleshooting Proximity probe calibration Machinery protection loop testing Field maintenance and diagnostic service FAQ What is the main function of the TK81? It is used to validate proximity probe systems and vibration monitoring channels using both mechanical displacement and electronic signal simulation. Can it test complete monitoring loops? Yes. It supports end-to-end testing from probe input through to monitor output and alarm response. Is external vibration equipment required? No. The internal calibration and signal generation functions eliminate the need for external vibration sources.

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  • Sale -50% Bently Nevada TK15 80917-01 Proximity Calibration Kit Bently Nevada TK15 80917-01 Proximity Calibration Kit

    Bently Nevada Bently Nevada TK15 80917-01 Proximity Calibration Kit

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    Overview The TK15 80917-01 from Bently Nevada is a portable mechanical calibration device engineered for precision verification of proximity probe systems used in rotating machinery protection applications. The unit provides controlled target displacement through a high-accuracy micrometer mechanism, enabling technicians to validate probe gap settings, linearity, and transducer output performance. Developed for use with Bently Nevada proximity systems, the TK15 is commonly applied during commissioning, maintenance inspections, and troubleshooting of API 670 machinery monitoring installations. Its compact mechanical design allows accurate and repeatable static calibration procedures both in workshop environments and field service applications. Key Features Precision static calibration for proximity probe systems Micrometer-controlled target displacement mechanism Compatible with multiple Bently Nevada probe sizes Hardened AISI 4140 steel target for realistic shaft simulation Stable mechanical structure for repeatable measurements Supports gap voltage verification and linearity testing Portable design suitable for onsite maintenance work Designed for calibration of Proximitor® sensor systems Technical Specifications Parameter Specification Brand Bently Nevada Model TK15 80917-01 Product Type Proximity Probe Calibration Kit Calibration Method Static Mechanical Displacement Micrometer Travel Range 0–25.4 mm Imperial Travel Range 0–1.0 inch Micrometer Resolution 0.01 mm Imperial Resolution 0.0005 inch Measurement Accuracy ±0.025 mm Imperial Accuracy ±0.001 inch Target Material AISI 4140 Hardened Steel Target Finish Precision Ground Surface Supported Probe Sizes 5 mm, 8 mm, 11 mm, 14 mm Probe Clamp Type Adjustable Non-Marring Clamp Alignment Geometry Fixed Perpendicular Alignment Compatible Systems 3300 XL, 3300 Series, 7200 Series Compatible Sensors Proximitor® Sensors Construction Material Aluminum Body with Steel Target Assembly Approximate Dimensions 150 × 100 × 120 mm Weight 1.5 kg Operating Temperature 0°C to +50°C Storage Temperature -20°C to +70°C Humidity Rating 95% Non-Condensing Recommended Environment Indoor Workshop or Field Service Use Calibration Capabilities The TK15 is intended for precise verification of eddy-current proximity transducer systems. The integrated micrometer assembly allows gradual target movement toward or away from the probe tip, enabling detailed examination of sensor voltage response across the operational measurement range. Typical calibration procedures include: Probe gap adjustment Verification of voltage-versus-distance response Linearity inspection System output validation Sensor performance troubleshooting Routine maintenance checks Compatible Probe Systems The TK15 supports a broad range of Bently Nevada transducer systems, including: 3300 XL proximity systems 3300 5 mm and 8 mm probe systems 7200 series transducers Standard Proximitor® sensor assemblies Typical Applications The calibration kit is widely used in machinery monitoring and reliability programs involving: Steam turbines Compressors Pumps Electric motors Gearboxes Rotating equipment commissioning Shutdown maintenance inspections FAQ What is the primary use of the TK15 calibration kit? The TK15 is used for static calibration and verification of proximity probe systems, including probe gap adjustment and output linearity testing. Which probe sizes are supported? The unit supports standard Bently Nevada probe diameters including 5 mm, 8 mm, 11 mm, and 14 mm configurations. Is the TK15 suitable for field maintenance work? Yes. The compact and portable construction makes it suitable for onsite calibration, commissioning, and troubleshooting tasks.

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  • Sale -50% Bently Nevada 1900/65A (167699-02+172323-01) General Purpose Equipment Monitor Bently Nevada 1900/65A (167699-02+172323-01) General Purpose Equipment Monitor

    Bently Nevada Bently Nevada 1900/65A (167699-02+172323-01) General Purpose Equipment Monitor

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    Overview The 1900/65A 167699-02 machinery monitor from Bently Nevada is a compact single-channel vibration protection system developed for continuous condition monitoring of rotating equipment. Combined with the 172323-01 power supply module, the unit delivers standalone machinery protection functions for applications where a full rack-based monitoring system is unnecessary. The monitor supports multiple transducer technologies including proximity probes, velocity pickups, and accelerometers. It provides real-time vibration measurement, configurable alarm processing, relay-based shutdown capability, and analog signal transmission for integration with plant control systems. Designed for small and medium rotating assets, the 1900/65A is commonly installed on pumps, blowers, fans, compressors, and auxiliary process machinery requiring dependable vibration supervision. Key Features Single-channel machinery vibration monitoring Compatible with displacement, velocity, and acceleration sensors Integrated Alert and Danger alarm processing Dual Form-C relay outputs for shutdown logic Buffered BNC output for portable analyzer connection Isolated 4–20 mA output for DCS and PLC systems Compact DIN-rail or panel-mounted installation Suitable for API-style machinery protection applications Technical Specifications Parameter Specification Brand Bently Nevada Monitor Model 1900/65A 167699-02 Power Supply Module 172323-01 Product Type Machinery Vibration Monitor Monitoring Channels 1 Channel Supported Sensor Types Proximity Probes, Velocity Sensors, Accelerometers Measurement Functions Overall Vibration, Shaft Displacement, Acceleration Frequency Response Typically 3 Hz to 10 kHz Alarm Levels Alert and Danger Alarm Accuracy ±1% of Full Scale Alarm Delay Adjustable Alarm Latching Selectable Relay Quantity 2 Relays Relay Type Form-C (SPDT) Relay Rating 5 A @ 250 Vac / 5 A @ 30 Vdc Buffered Output Front Panel BNC Connector Analog Output Isolated 4–20 mA Power Input Range 85–264 Vac, 50/60 Hz DC Input Range 100–300 Vdc Power Consumption Less than 10 W Isolation Rating 1500 Vac Operating Temperature -20°C to +65°C Humidity Rating 95% Non-Condensing Mounting Method DIN Rail or Panel Mount Protection Rating IP20 Dimensions 2.2 × 12.4 × 12.6 cm Weight 0.289 kg Monitoring Functions The 1900/65A continuously processes vibration signals from connected sensors and compares measured values against configured alarm thresholds. When vibration exceeds predefined limits, the monitor activates relay outputs for annunciation or machine shutdown sequences. The integrated buffered output provides direct access to the raw transducer signal, allowing maintenance personnel to connect portable analyzers for diagnostic evaluation and troubleshooting. Typical Applications This monitor is widely used for protection of general-purpose and auxiliary rotating machinery, including: Centrifugal pumps Industrial fans Air blowers Small compressors Cooling tower drives Electric motors Gearboxes Process skids System Advantages Compared with larger rack-based systems, the 1900/65A offers a simplified installation footprint while maintaining critical machinery protection functionality. The unit is particularly suitable for distributed equipment layouts and standalone machine packages requiring reliable vibration shutdown capability. FAQ What sensors are supported by the 1900/65A monitor? The monitor supports proximity probe systems, velocity transducers, and accelerometers depending on the selected configuration. Can the unit provide shutdown protection? Yes. The monitor includes independent Alert and Danger relays that can be wired into machine shutdown circuits. Is the monitor suitable for DCS integration? Yes. The isolated 4–20 mA output allows direct interface with PLC, DCS, and SCADA systems for vibration trending and monitoring.

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  • Sale -50% Bently Nevada TK3-2E 14700-01 Calibration Instrument Bently Nevada TK3-2E 14700-01 Calibration Instrument

    Bently Nevada Bently Nevada TK3-2E 14700-01 Calibration Instrument

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    Overview The TK3-2E 14700-01 from Bently Nevada is an electrically powered calibration and verification instrument developed for testing proximity transducer systems and machinery protection monitors. As part of the TK-3 Proximity System Test Kit family, this unit is designed to simulate shaft displacement and mechanical vibration for accurate calibration of vibration monitoring equipment used in rotating machinery applications. The TK3-2E supports diagnostic verification of probe systems, monitor inputs, and Proximitor sensor performance without requiring complex external test equipment. The integrated wobble plate assembly and spindle micrometer provide repeatable mechanical motion for precise calibration procedures in maintenance workshops and field service environments. Key Features Electric-driven calibration platform for proximity monitoring systems Simulates shaft vibration and shaft position movement Compatible with Bently Nevada 3300, 3500, and 7200 monitoring systems Motor-driven wobble plate for controlled vibration generation Precision spindle micrometer for displacement verification Universal probe mounting adapter for multiple probe diameters Allows vibration calibration without oscilloscope use Portable bench-top configuration for maintenance and commissioning work Technical Specifications Parameter Specification Brand Bently Nevada Model TK3-2E 14700-01 Product Type Proximity System Calibration Instrument Series TK-3 Proximity System Test Kit Power Input 95–125 Vac or 190–250 Vac Frequency 50/60 Hz Minimum Current Requirement 1 A Drive Type Electric Motor Driven Mechanical Vibration Range 50–254 µm peak-to-peak Vibration Range (Imperial) 2–10 mils peak-to-peak Speed Range 0–5000 cpm ±1000 cpm Micrometer Measurement Range 0–25.4 mm Imperial Micrometer Range 0–1000 mils Supported Probe Diameters 5 mm to 19 mm Target Material AISI 4140 Alloy Steel Mounting Arrangement Swing-arm probe holder with magnetic base Dimensions 195 × 299 × 248 mm Weight 5.22 kg Installation Environment Indoor use only Maximum Operating Altitude 2000 m Calibration Functions The TK3-2E is designed to validate the operating condition and linearity of proximity transducer systems used in critical machinery protection applications. Core calibration functions include: Verification of proximity probe linearity Calibration of shaft position monitors Simulation of mechanical shaft vibration Testing of Proximitor sensor voltage response Validation of vibration monitor display accuracy Comparison of monitor readings against known displacement values The spindle micrometer assembly enables calibrated target movement toward or away from the probe tip, while the wobble plate assembly generates controlled mechanical vibration for dynamic testing procedures. Application Areas The TK3-2E is commonly used in industries where rotating equipment condition monitoring is critical, including: Power generation plants Oil and gas facilities Petrochemical processing Compressor and turbine maintenance Predictive maintenance laboratories Rotating equipment service centers Reliability engineering programs FAQ What is the purpose of the TK3-2E calibration instrument? The unit is used to simulate shaft vibration and position movement for calibration and verification of proximity probe systems and machinery monitoring equipment. Does the TK3-2E require an oscilloscope for operation? No. The instrument is designed so vibration measurements can be verified using the supplied dial micrometer and a standard voltmeter. Which monitoring systems are compatible with this unit? The TK3-2E is commonly used with Bently Nevada 3300, 3500, and 7200 series vibration monitoring systems.

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  • Sale -50% Bently Nevada TK-3G 177314-02-00 Proximity Test Kit Bently Nevada TK-3G 177314-02-00 Proximity Test Kit

    Bently Nevada Bently Nevada TK-3G 177314-02-00 Proximity Test Kit

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    Overview The 177314-02-00 Air-Driven TK-3g Proximity System Test Kit from Bently Nevada is a portable calibration and verification instrument designed for testing proximity probes, extension cables, and vibration monitoring systems. The kit simulates shaft vibration and displacement conditions, allowing maintenance engineers and instrumentation technicians to validate monitor accuracy and transducer performance in rotating machinery protection systems. Built for field and workshop environments, the TK-3g provides controlled mechanical vibration generation with precise spindle positioning, supporting calibration procedures for proximity probe systems used in turbines, compressors, pumps, and critical rotating assets. Key Features Air-driven vibration simulation system Designed for calibration of proximity transducer systems Adjustable vibration amplitude and rotational speed Precision spindle micrometer assembly for displacement verification Compact portable structure for onsite maintenance use Compatible with Bently Nevada vibration monitoring systems Durable alloy steel target button and wobble plate assembly Stable operation under industrial environmental conditions Technical Specifications Parameter Specification Brand Bently Nevada Product Type TK3 Proximity System Test Kit Model Number 177314-02-00 Ordering Code HPW7000-01-020-00-0000-000 Configuration Code 177314-AA Scale Units Metric Drive Type Pneumatic / Air Driven Maximum Air Pressure 90 psi (6.2 bar) Vibration Amplitude Range 50 μm to 254 μm peak-to-peak Frequency / Speed Range 0 to 5000 cpm ±1000 cpm Spindle Micrometer Range 0 to 25.4 mm Target Button Material AISI 4140 Alloy Steel Wobble Plate Material AISI 4140 Alloy Steel Operating Temperature 0°C to 50°C Storage Temperature -18°C to 65°C Humidity Rating 95% non-condensing Height 195 mm Width 299 mm Depth 248 mm Weight 5.22 kg Application Areas The TK-3g test kit is widely used in predictive maintenance and machinery protection systems where accurate vibration measurement is essential. Typical applications include: Steam and gas turbines Centrifugal compressors Industrial pumps Motors and generators Rotating machinery monitoring systems Maintenance and calibration laboratories Shutdown inspection and commissioning work Operational Advantages The air-powered design eliminates dependence on external electrical drive motors, improving portability and reducing electromagnetic interference during testing procedures. The integrated spindle micrometer allows accurate displacement simulation, helping technicians verify both static position and dynamic vibration measurements. Its rugged mechanical construction ensures repeatable calibration performance in demanding industrial environments. FAQ What is the primary function of the TK-3g test kit? The TK-3g is used to simulate shaft vibration and position movement for verifying the accuracy of proximity probes and vibration monitoring systems. Is the unit suitable for field calibration work? Yes. The compact and portable air-driven design makes it suitable for onsite maintenance, commissioning, and troubleshooting applications. What monitoring systems is it compatible with? The kit is commonly used with Bently Nevada proximity probe systems and machinery protection monitors.

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

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

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

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

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

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

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  • Sale -50% ABB IPSYS01 Harmony Rack Power System Module ABB IPSYS01 Harmony Rack Power System Module

    ABB ABB IPSYS01 Harmony Rack Power System Module

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    Overview The ABB IPSYS01 is a high-reliability power system module developed for ABB INFI 90 and Harmony Rack I/O architectures. The module supplies regulated operating power to rack-based control systems and supports stable performance for processors, communication interfaces, and distributed I/O assemblies. Designed for continuous industrial operation, the module accepts a wide AC/DC input range and provides controlled power distribution through the system backplane. Integrated load-sharing capability allows multiple units to operate in parallel for improved redundancy and power stability in critical process applications. The IPSYS01 is commonly installed in power generation facilities, refinery control systems, and large-scale industrial automation cabinets where uninterrupted control-system power is required. Key Features Regulated power delivery for ABB Harmony and INFI 90 systems Supports both AC and DC input sources Parallel load-sharing operation for redundant configurations Wide operating voltage range for industrial installations Fast power-loss recovery and hold-up capability Designed for continuous rack-based operation Built-in thermal management and protection functions Compatible with Harmony Rack I/O infrastructures Industrial-grade construction for demanding environments Technical Specifications Specification Details Model IPSYS01 Product Type Harmony Rack I/O Power System Module Manufacturer ABB System Compatibility ABB INFI 90 / Harmony Rack Input Voltage Range 102 to 264 VAC DC Input Range 102 to 144 VDC Frequency 50/60 Hz Input Current at 120 VAC 4.3 A Input Current at 240 VAC 2.0 A Input Current at 125 VDC 4.3 A Output Regulation ±0.5% Nominal Voltage Load Regulation Stable from 0% to 100% Load Hold-Up Time 20 ms after Power Loss Heat Dissipation Approximately 175 W Load Sharing Accuracy Within 5% Between Modules Cooling Method Forced-Air Rack Cooling Mounting Style Harmony Rack Slot Installation Dimensions 44.45 × 4.83 × 21.84 cm Weight 2.55 kg System Functionality The IPSYS01 module distributes regulated electrical power across the Harmony rack backplane while maintaining voltage stability during fluctuating load conditions. The module supports redundant installations where multiple power units share the connected system load evenly to improve operational availability. Integrated regulation circuitry and short-duration hold-up capability help maintain stable system operation during transient power interruptions. This functionality is particularly important in process industries where controller downtime can impact plant safety and production continuity. Application Areas Typical deployment environments include: ABB Harmony Rack I/O systems INFI 90 distributed control systems Power plant automation cabinets Process control and refinery systems Industrial communication racks Redundant control-system power architectures High-availability automation platforms FAQ What is the primary purpose of the IPSYS01 module? The IPSYS01 provides regulated system power for ABB INFI 90 and Harmony Rack control platforms. Does the module support redundant operation? Yes. The module supports parallel load sharing between installed units for improved system reliability. Which input voltages are supported? The module accepts 102–264 VAC and 102–144 VDC input ranges. Is the IPSYS01 suitable for continuous industrial operation? Yes. The module is designed for long-term 24/7 operation in industrial automation and process-control environments.

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  • Sale -50% ABB IPMON01 MPSII Power Monitor Module ABB IPMON01 MPSII Power Monitor Module

    ABB ABB IPMON01 MPSII Power Monitor Module

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    Overview The ABB IPMON01 MPSII Power Monitor Module is designed to supervise system power conditions and monitor operational status signals within ABB control and power distribution architectures. The module continuously checks incoming supply voltage, fan operation, and fault status conditions to improve system reliability and support preventive maintenance strategies. Integrated alarm and status outputs allow rapid fault notification to host controllers or supervisory systems during abnormal operating conditions. The module is commonly installed in ABB INFI-90 and Harmony environments where uninterrupted power integrity is essential for stable control system operation. Its compact form factor and industrial-grade electrical design make the module suitable for continuous monitoring applications in power generation, process automation, and high-availability industrial systems. Key Features Continuous monitoring of AC and DC system power inputs Supports 120 VAC, 240 VAC, and 125 VDC applications Integrated fan-speed supervision inputs Dedicated power-fail interrupt signaling Open-collector alarm and status outputs Opto-isolated bus alarm interface Real-time fault detection and status reporting Designed for critical process control environments Compatible with ABB MPSII power monitoring systems Technical Specifications Specification Details Model IPMON01 Product Type MPSII Power Monitor Module Manufacturer ABB Input Voltage 120/240 VAC, 125 VDC Power Consumption 24 VA Input Current 0.3 A at 120 VAC Input Current 0.2 A at 240 VAC / 125 VDC Logic Status Inputs 2 Inputs Logic 0 Threshold 0.8 VDC at 10 mA Sink Current Logic 1 Threshold 3.1 VDC at 80 µA Source Current Fan Monitoring Inputs 2 Inputs for Fan Speed Detection Power Fail Interrupt Open Collector Output PFI Logic 1 Output 4.75 to 5.25 VDC Status Output Type Non-Isolated Open Collector Bus Alarm Output Opto-Isolated Open Collector Driven Bus Alarm Voltage 24 VDC Bus Alarm Logic Range 5 to 30 VDC Mounting Style Rack Mounted Dimensions 40.13 × 3.56 × 21.84 cm Weight 0.7 kg Functional Description The IPMON01 module supervises power supply integrity and communicates system health information through dedicated status and alarm outputs. The module can detect low-voltage conditions, cooling fan abnormalities, and general fault states that may affect system stability. Power fail interrupt functionality enables connected controllers to respond immediately during supply interruptions or abnormal voltage fluctuations. The integrated monitoring logic improves operational reliability by supporting early fault identification before critical failures occur. Typical Applications Common industrial applications include: ABB INFI-90 power system supervision Harmony rack voltage monitoring Power supply fault diagnostics Fan failure monitoring in control cabinets Distributed control system protection Process plant power integrity monitoring Industrial automation alarm systems FAQ What is the main function of the IPMON01 module? The IPMON01 monitors power input conditions, fan status signals, and system fault outputs to help maintain stable operation of ABB control systems. Which voltage inputs are supported? The module supports 120 VAC, 240 VAC, and 125 VDC operating environments. Does the module provide alarm signaling? Yes. The unit includes power fail interrupt outputs, status outputs, and opto-isolated bus alarm signaling. Can the IPMON01 monitor cooling fan operation? Yes. The module includes dedicated fan status inputs used for low-speed or failed-fan detection within system cabinets.

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

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

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

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