Bently Nevada 330851-06-000-070-50-00-05 Proximity Probe – 3300 XL
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Key Product Information
Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.
- Brand
- Bently Nevada
- Primary Part Number
- 330851-06-000-070-50-00-05
- Product Type
- Proximity Transducer
- Series / Family
- 3308
- Country of Origin
- US
- Catalog Category
- Sensors & Switches
- Warranty
- 12 months against manufacturing defects
Bently Nevada 330851-06-000-070-50-00-05 — 8 mm Eddy-Current Proximity Probe for High-Temperature Rotating Machinery Monitoring
The Bently Nevada 330851-06-000-070-50-00-05 is a factory-calibrated, non-contact eddy-current proximity transducer engineered for continuous shaft vibration, radial position, and eccentricity measurement in critical rotating machinery. Operating within the 3300 XL 8 mm Proximity Transducer System, this probe is the high-temperature cable variant (suffix -05), rated for sustained ambient exposure up to +177 °C at the probe body. It pairs exclusively with the 3300 XL driver/oscillator (suffix -50) and a 7.0 m (070) extension cable, forming a three-component measurement chain whose total electrical length is factory-matched to the driver calibration curve.
Eddy-current proximity measurement operates on the principle of electromagnetic induction: the probe tip generates a high-frequency oscillating magnetic field (typically 1–2 MHz). When a conductive target — most commonly AISI 4140 or 4340 steel shaft — enters the field, eddy currents are induced on the target surface, loading the oscillator circuit and producing a DC output voltage linearly proportional to the air gap distance. The 330851 probe delivers a sensitivity of 7.87 V/mm (200 mV/mil) across a linear range of 0.25 to 2.25 mm (10 to 90 mil), with a nominal supply of −24 VDC. This output is fed directly into Bently Nevada 3500-series monitor cards for real-time alarm and trip processing.
The -05 suffix designates a high-temperature fluoropolymer cable jacket on the 6 ft (1.83 m) integral probe cable, distinguishing it from the standard -00 variant. In installations where the probe body is routed through bearing housings, steam chest cavities, or exhaust-side turbine pedestals — where ambient temperatures routinely exceed 120 °C — the -05 cable jacket maintains dielectric integrity and prevents insulation breakdown that would otherwise introduce measurement drift or false trips.
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Technical Parameters
| Parameter | Specification |
|---|---|
| Part Number | 330851-06-000-070-50-00-05 |
| Brand | Bently Nevada (Baker Hughes) |
| Series | 3300 XL 8 mm Proximity Transducer System |
| Probe Tip Diameter | 8 mm |
| Measurement Principle | Eddy-current (non-contact) |
| Sensitivity | 7.87 V/mm (200 mV/mil) |
| Linear Measurement Range | 0.25 – 2.25 mm (10 – 90 mil) |
| Nominal Supply Voltage | −24 VDC |
| Output Signal | DC voltage, proportional to gap distance |
| Integral Cable Length | 6 ft (1.83 m) |
| Extension Cable Length (suffix 070) | 7.0 m — P/N 330130-070-00-00 |
| Driver/Oscillator Compatibility | 3300 XL driver (suffix -50 only) |
| Operating Temperature — Probe Body | −35 °C to +177 °C |
| Cable Jacket Type (suffix -05) | High-temperature fluoropolymer |
| Target Material (nominal) | AISI 4140 / 4340 steel |
| Housing Material | 316 stainless steel |
| Connector Termination | Coaxial, BNC/TNC compatible |
| Approvals | CE; ATEX / FM variants available on request |
| Compliance Standard | API 670 (Machinery Protection Systems) |
| Warranty | 12 months against manufacturing defects |
Hardware Logical Analysis
The 330851 probe’s measurement chain is a tightly coupled three-element system: probe, extension cable, and driver/oscillator. Each element contributes a defined impedance to the resonant LC tank circuit inside the driver. Bently Nevada factory-calibrates the complete assembly as a matched set — the driver’s internal compensation network is trimmed to the exact cable capacitance and probe inductance of the shipped combination. Substituting any single element without recalibration shifts the output voltage curve, introducing a systematic offset that cannot be corrected by monitor card scaling alone.
EMC and Shielding Architecture: The integral coaxial cable uses a double-braid shield construction with 95%+ optical coverage, terminated at both ends to chassis ground through the driver housing. This architecture suppresses common-mode interference from variable-frequency drives, high-current bus bars, and RF sources common in turbine halls and compressor stations. The probe body itself is constructed from non-magnetic 316 stainless steel, which eliminates permeability-induced sensitivity variation when the probe is mounted adjacent to ferromagnetic structural members.
High-Temperature Cable Integrity (suffix -05): The fluoropolymer jacket (PTFE or FEP compound) maintains a dielectric constant stable to within ±2% across the full −35 °C to +177 °C operating range. At elevated temperatures, standard PVC or polyethylene jackets soften and exhibit capacitance drift of 5–15 pF/m, which directly shifts the driver’s resonant frequency and degrades sensitivity linearity. The -05 jacket eliminates this failure mode, making it the mandatory selection for steam turbine bearing pedestals, hot-gas expanders, and any installation where the cable routing passes through thermally stratified zones.
Oscillator Frequency and Target Interaction: The 3300 XL driver operates at approximately 1.0 MHz carrier frequency. At this frequency, eddy-current penetration depth (skin depth δ) in AISI 4140 steel is approximately 0.08 mm — well below the surface finish depth of a machined journal. This ensures the measurement responds only to surface geometry and gap distance, not to subsurface material inhomogeneities. For non-standard target materials (titanium, Inconel, aluminum), the sensitivity coefficient deviates from the nominal 7.87 V/mm; Bently Nevada publishes material correction factors that must be applied during system commissioning.
System Integration Benefits
- API 670 compliance out of the box: The 330851 system meets the American Petroleum Institute standard for machinery protection instrumentation, satisfying insurance, regulatory, and EPC contractor requirements without additional field certification work.
- Direct 3500-series monitor card compatibility: Output signal is pre-conditioned for direct connection to 3500/40M, 3500/42M, 3500/45, 3500/46M, and 3500/50M monitor modules, with no signal conditioning intermediary required.
- System 1 software integration: Genuine Bently Nevada hardware enables full diagnostic transparency in System 1 Evolution software, including probe gap voltage trending, driver health monitoring, and automated calibration verification — features unavailable with third-party transducers.
- Deterministic alarm response: The DC output architecture eliminates the latency associated with digitally processed sensor signals. Alarm and trip thresholds in the 3500 monitor are evaluated against the analog voltage in real time, with trip response times under 20 ms — critical for overspeed and high-vibration protection logic.
- Redundant measurement support: Two 330851 probes mounted at 90° (X-Y configuration) on a single bearing plane provide full orbital analysis capability, enabling shaft centerline position tracking and dynamic eccentricity measurement without additional hardware.
- Hazardous area deployment: ATEX- and FM-certified variants of the 330851 series support Zone 1 / Division 1 installations in refineries, LNG terminals, and offshore platforms, with intrinsic safety barriers or Zener barriers as required by the area classification.
- Minimal maintenance burden: Non-contact measurement eliminates mechanical wear. The probe has no moving parts and requires no periodic replacement under normal operating conditions. Scheduled maintenance is limited to gap voltage verification during planned outages.
- Interchangeability within matched sets: When replacing a probe in an existing installation, the replacement 330851-06-000-070-50-00-05 unit — paired with the original extension cable and driver — restores the factory calibration without field recalibration, provided the total cable length remains unchanged.
Quality Assurance & Global Logistics
Every Bently Nevada 330851-06-000-070-50-00-05 unit supplied by siemensplc.com is sourced through verified industrial supply channels and subjected to incoming inspection prior to dispatch. Electrical continuity, coaxial shield integrity, and probe body dimensional checks are performed on each unit. New-in-box units retain original Bently Nevada / Baker Hughes packaging with traceable lot documentation where available.
Shipments originate from our warehouse in Xiamen, China — a major international logistics hub with direct freight connections to Singapore, Dubai, Rotterdam, Los Angeles, and Houston. Standard export documentation — commercial invoice, packing list, and certificate of origin — is prepared for every international order. DHL Express, FedEx International Priority, and UPS Worldwide Expedited are the primary carriers for time-sensitive orders, with typical transit times of 3–7 business days to most destinations. Sea freight consolidation is available for bulk orders. All units are packed in anti-static, moisture-barrier enclosures with foam cushioning to protect the probe tip and coaxial connector during transit.
A 12-month warranty against manufacturing defects applies to all new units. Warranty claims are processed with a target response time of 48 business hours. Replacement or credit is issued upon confirmation of the defect. For projects requiring expedited delivery or volume pricing, submit an RFQ with quantity, required delivery date, and destination port.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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