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The Bently Nevada 330850‑51‑CN is a non‑contact proximity sensor / “Proximitor” module in the 3300 XL 25 mm sensor family. It is intended to measure shaft displacement, radial vibration, or position in rotating machinery via a probe + extension cable + proximitor chain.
The suffix “‑CN” typically indicates a China / Chinese market compliance / configuration or localized variant (for example tailored approvals or packaging). It shares core performance with other 330850 series models but may incorporate regional certification or labeling.
This model is suited for monitoring turbines, compressors, pumps, fans, motors in settings requiring continuous online monitoring and fault detection.
Below is a table of expected / representative specifications for the 330850‑51‑CN variant:
| Parameter | Specification |
|---|---|
| Model | 330850‑51‑CN |
| Series / Type | 3300 XL 25 mm Proximitor (non‑contact displacement sensor) |
| System Length | 5.0 meters (probe + extension cable + proximitor chain) |
| Mounting | DIN rail mounting (or equivalent for “51” style) |
| Regional Variant | “CN” — China / regional compliance / labeling |
| Power Supply | –17.5 to –26 VDC (without isolation) / –23 to –26 VDC (with isolation) |
| Power Sensitivity | < 2 mV / V variation |
| Operating Temperature | –35 °C to +85 °C |
| Storage Temperature | –51 °C to +100 °C |
| Measurement (Linear) Range | ~0.25 mm to ~12.5 mm (depends on probe calibration) |
| Frequency Response | Supports high dynamic response (e.g. up to several kHz) |
| Output | Proportional voltage output relative to displacement |
| EMI / RFI Immunity | Designed for high immunity in industrial electromagnetic environments |
| Enclosure Material | Aluminum alloy or industrial grade housing |
| Terminals / Connections | SpringLoc type or equivalent tool-free connections |
| Dimensions (est.) | ~105 mm (Length) × ~75 mm (Width) × ~25 mm (Height) |
| Weight | ~0.255 kg (approximate) |
| Shipping / Packaging Weight | ~1.3 kg (with documentation, packaging, accessories) |
Note: The dimensions and weights above are inferred from similar 330850‑51 series models; “CN” variant differences are minor (labeling, approval, internal layout) and do not materially alter physical size or mass.
The 330850‑51‑CN finds use in numerous industrial applications where monitoring of rotating machinery is essential. Typical application domains include:
Steam and gas turbines (shaft radial displacement / vibration monitoring)
Large electrical generators in power plants
Centrifugal and reciprocating compressors
Pumps and motors in process plants (chemical, petroleum, petrochemical)
Fans, blowers, and ventilation systems subject to variable load
Rotating equipment in mineral processing / mining
Condition-based monitoring (CBM) and predictive maintenance systems
In all these cases, the 330850‑51‑CN is used to track small movements of the rotor relative to its stationary parts, detect imbalance, misalignment, bearing wear, and provide signals to protective systems or condition monitoring platforms.
Below are the main advantages and features of the 330850‑51‑CN model:
Non-contact Sensing
The sensor does not physically touch the rotating shaft, eliminating wear, friction, and maintenance issues associated with contact sensors.
High Accuracy & Linearity
Delivers stable, linear outputs over the measurement range. Drift is minimized, enabling precise trending and fault diagnosis.
Robust EMI / RFI Immunity
Designed for heavy industrial electromagnetic environments, reducing susceptibility to noise and interference.
Regional Compliance (“CN” variant)
Provides localized labeling, regulatory compliance, and perhaps packaging suited for the China region, facilitating approvals and deployment.
DIN Rail Mounting / Compact Form
The “51” style supports DIN rail installation, making integration into control panels and relay racks simpler and space-efficient.
Interchangeability & Compatibility
Compatible with probes, extension cables, and monitoring hardware in the 3300 / 3300 XL family, simplifying upgrades or replacements.
Wide Operating Temperature & Harsh Environment Capability
Compatible with extremes of temperature, vibration, humidity, and electrical stress typical in industrial settings.
Long-term Reliability
Designed for extended duty, reducing downtime and maintenance overhead in mission-critical systems.
Here are 5 models from the same or closely related 3300 / 330850 series. Their parameters are comparative or inferred; “Model” entries are bolded as requested.
| Model | System Length / Mounting | Certification / Variant | Weight / Size (approx.) | Notes & Differences |
|---|---|---|---|---|
| 330850‑50‑CN | 5.0 m, panel mount | Regional “CN” version | ~0.10 kg (approx.) | Panel‑mount counterpart with regional compliance |
| 330850‑51‑05 | 5.0 m, DIN rail mounting | Multi‑approval global version | ~0.255 kg | Global approved version, vs CN localized variant |
| 330850‑90‑CN | 9.0 m, panel mount | China / regional compliance | ~0.50 kg | Longer cable version for distant probe placement |
| 330850‑91‑05 | 9.0 m, DIN rail mounting | Multi‑approval global version | ~0.50 kg | DIN version of extended length |
| 330850‑50‑05 | 5.0 m, panel mount | Multi‑approval global | ~0.10 kg | Global panel version, no “CN” suffix |
These related models allow selection based on required cable length, mounting style (DIN vs panel), and certification region.
Below are five well-known or widely used models / modules from the same brand. These are not always directly equivalent in function but represent important product lines.
| Model | Function / Type | Key Parameters / Features | Typical Use Cases |
|---|---|---|---|
| 330105‑02‑12‑05‑02‑00 | Proximitor probe / module | Configurable probe set | Shaft monitoring integration |
| 3500 / 05‑01‑01‑00‑00 | Monitoring / Rack Module | Modular slot interface | Central vibration monitoring systems |
| 9200‑03‑05‑10‑00 | Advanced sensor / smart module | High resolution, digital output | IIoT, remote diagnostics |
| 176449‑03 | Signal conditioning / interface | Signal translation / filtering | Embedded within monitoring systems |
| 330500 Velomitor | Vibration / velocity sensor | Generates velocity output | Complementary vibration monitoring |
Q1: Does the “CN” suffix imply different performance vs. standard 330850‑51 models?
A1: Not in core performance. The “‑CN” usually indicates regional compliance, labeling, or packaging differences tailored to China. The electrical and mechanical behavior remains aligned with the 330850‑51 family.
Q2: Can I substitute a “05” version with a “CN” version?
A2: Yes, provided the electrical, mounting, and certification constraints are satisfied. Ensure that your system’s certification requirements align with the variant chosen.
Q3: What is the minimum safe clearance between the probe and shaft?
A3: Maintain within the linear measurement range (e.g., ~0.25 mm minimum) but leave margin for thermal expansion and vibration dynamics. Avoid contact or damage.
Q4: How does the “CN” variant handle extreme temperatures?
A4: It supports a typical operating temperature of –35 °C to +85 °C and storage of –51 °C to +100 °C, consistent with the standard 3300 XL range.
Q5: Is power supply tolerance strict?
A5: Yes. Without isolation, it must receive between –17.5 and –26 VDC; with isolation, between –23 and –26 VDC. Deviations may degrade linearity or signal integrity.
Q6: How does EMI / RFI immunity perform in heavy industrial settings?
A6: Designed to withstand high electromagnetic interference via shielding, filtering, and internal design so the output remains stable in noisy environments.
Q7: What maintenance or calibration is needed in the field?
A7: Periodic zero and span checks, confirm signal integrity, clean connectors, ensure probes and cables are intact, and replace any elements out of spec.
Q8: Can I extend cable length beyond 5.0 m?
A8: You can use related extended-length variants (e.g. “90” series) or design with signal integrity in mind (shielding, cable capacitance, attenuation).
Q9: What limits device life expectancy?
A9: Mechanical shock, extreme vibration, temperature cycling, corrosion, and electrical surges are main stressors. Proper installation and environment control maximize life.
Q10: How precise is the measurement accuracy?
A10: Accuracy depends on the probe, calibration, and system configuration. Typical systems can achieve ±0.1 % of full scale or better under ideal conditions.
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