Bently Nevada 22810-00-14-10-02 Proximity Probe
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Key Product Information
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- Brand
- Bently Nevada
- Primary Part Number
- 22810-00-14-10-02
- Product Type
- Proximity Probe
- Series / Family
- 3300 Series
- Country of Origin
- US
- Catalog Category
- Sensors & Switches
- Operating Temp.
- -35°C to +177°C
- Compliance
- API 670, CE
Bently Nevada 22810-00-14-10-02 — Stop the Clock on Your Downtime. Ship Today.
Your turbine tripped. The 3300 Series monitor is screaming a NOT OK on the proximity channel. Maintenance is standing by. Every hour offline is burning through your production budget — and the clock doesn’t stop for procurement lead times. The Bently Nevada 22810-00-14-10-02 is on our shelf in Xiamen right now. We’ve done this before. We know what you need and how fast you need it.
This is not a catalog listing. This is a field-ready replacement unit for one of the most widely deployed eddy current proximity probes in rotating machinery protection. The 22810-00-14-10-02 is the 8mm standard-range probe in the Bently Nevada 3300 XL system — the sensing element that feeds shaft radial vibration and axial position data to your 3500 or 3300 monitor rack. When it fails, nothing downstream works. Get it replaced fast, get it replaced right.
URGENT REQUIREMENT? Contact: [email protected] | WhatsApp: +86 18359268345
Quick Technical Datasheet
| Parameter | Specification |
|---|---|
| Part Number | 22810-00-14-10-02 |
| Brand | Bently Nevada (Baker Hughes) |
| Series | 3300 XL / 3300 Series |
| Sensor Type | Eddy Current Proximity Probe |
| Tip Diameter | 8 mm |
| Thread Size | 3/8-24 UNF |
| Cable Length | 1.0 m integral cable |
| Sensitivity | 7.87 V/mm (200 mV/mil) |
| Linear Range | 0.25 – 2.54 mm (10 – 100 mil) |
| Operating Temperature | -35°C to +177°C |
| Target Material | Steel / AISI 4140 recommended |
| Connector | Coaxial, 3300 XL Proximitor compatible |
| Compliance | API 670, CE |
| Weight | 140 g |
| Origin | USA |
| Stock Status | ✅ Ready to Ship — Xiamen Warehouse |
Troubleshooting & Replacement Tips
Common Failure Modes for the 22810-00-14-10-02:
1. Probe Gap Out of Range (Most Frequent Call)
The 3300 XL system requires a nominal gap of 1.0 mm (40 mil) between probe tip and shaft surface. After a bearing replacement or shaft realignment, the probe gap is almost always disturbed. Before condemning the probe, check the Proximitor output voltage — it should read approximately -10.0 VDC at nominal gap. If you’re reading -24 VDC (probe too far) or -2 VDC (probe too close), adjust the probe holder first. Only replace the probe if the output is erratic or flatlined at a fixed voltage regardless of gap adjustment.
2. Integral Cable Damage
The 1.0 m integral cable on the 22810-00-14-10-02 is the most mechanically vulnerable part of the assembly. Inspect the cable jacket at the probe body exit point and at any conduit entry points. A hairline crack in the coaxial shield causes intermittent noise that looks like real shaft vibration — it will chase your maintenance team for weeks. If the monitor shows high 1X vibration that disappears when you tap the cable, the cable is the culprit, not the shaft.
3. Proximitor Mismatch
The 22810-00-14-10-02 must be used as a matched system with its designated extension cable and Proximitor sensor. The system is factory-calibrated as a set. Mixing probe bodies from different calibration lots — even if the part number is identical — can introduce a sensitivity error of ±5% or more. When replacing the probe, always replace the extension cable (330130-045-00-CN or 330130-080-00-CN) at the same time unless you can verify the existing cable’s calibration certificate matches.
4. NOT OK LED on 3500/40M Monitor
If the NOT OK LED is lit after probe replacement, work through this sequence: (a) Verify Proximitor supply voltage is -24 VDC ±1 VDC. (b) Confirm probe gap is within 0.25–2.54 mm linear range. (c) Check that the OK setpoint on the 3500/40M is configured for the correct gap range — a common misconfiguration after a monitor rack swap. (d) Verify the Proximitor model matches the probe tip diameter (8 mm probe requires 8 mm Proximitor, not 5 mm).
Replacement Procedure (Field Summary):
- De-energize the Proximitor sensor supply at the monitor rack — do not just disconnect the probe while the Proximitor is powered, as this can damage the driver circuit.
- Remove the existing probe from the holder. Note the exact probe tip-to-shaft gap using a feeler gauge before removal — this is your reinstallation target.
- Install the new 22810-00-14-10-02. Thread it in by hand first, then use a probe wrench — do not overtorque the 3/8-24 UNF thread (max 2.3 N·m).
- Set the gap to 1.0 mm (40 mil) nominal. Verify with a calibrated feeler gauge, not by feel.
- Re-energize the Proximitor. Confirm output voltage is -10.0 VDC ±0.5 VDC at nominal gap.
- Check the monitor for OK status and verify vibration readings are within baseline. Document the new gap setting in the equipment history file.
Reliability in Harsh Conditions
The 22810-00-14-10-02 is built for environments that would destroy consumer-grade sensors in days. The probe body is machined from 316 stainless steel with a hermetically sealed tip — no moisture ingress path, no corrosion pathway to the sensing coil. The integral cable uses a fluoropolymer jacket rated to +200°C continuous, with a braided stainless steel armor option available for high-vibration conduit runs.
In gas turbine applications, the probe routinely operates in bearing housings where ambient temperatures exceed 150°C and vibration levels at the probe mount can reach 10 g broadband. The 3300 XL probe design accounts for this: the sensing coil is potted in a thermally stable epoxy compound that maintains dimensional stability across the full operating temperature range, ensuring sensitivity drift stays within ±1% over the probe’s service life.
For offshore and coastal installations, the stainless steel housing and sealed connector interface provide corrosion resistance that meets the demands of salt-laden atmospheres. Units destined for ATEX or IECEx classified zones must be paired with the appropriate Bently Nevada Zener barriers — confirm your zone classification before installation and ensure the barrier model matches the Proximitor’s intrinsic safety certification.
Vibration endurance: the probe assembly is qualified to withstand 20 g sinusoidal vibration across 10–2000 Hz per IEC 60068-2-6. In practice, this means the probe will outlast the bearing it is monitoring in virtually all industrial applications.
Global Express Logistics
Our warehouse is located in Xiamen, Fujian Province — one of China’s primary export hubs with direct access to international freight lanes via Xiamen Gaoqi International Airport and Xiamen Port. This geography is not accidental. It means your replacement probe moves from our shelf to a DHL or FedEx aircraft in hours, not days.
Standard Express Timeline (DHL / FedEx International Priority):
- Southeast Asia (Singapore, Thailand, Malaysia, Indonesia): 2–3 business days
- Middle East (UAE, Saudi Arabia, Qatar, Kuwait): 3–4 business days
- Europe (Germany, Netherlands, UK, France, Italy): 3–5 business days
- North America (USA, Canada, Mexico): 4–5 business days
- South America (Brazil, Chile, Colombia): 5–7 business days
- Australia / New Zealand: 3–4 business days
Every shipment includes full commercial invoice and packing list for customs clearance. HS Code 9031.80 applies to proximity probes for industrial measurement — we prepare the documentation correctly the first time so your shipment does not sit in customs. For orders requiring an urgent Letter of Credit or specific export documentation format, contact us before placing the order and we will accommodate.
For critical plant shutdowns where every hour counts, we offer same-day dispatch on orders confirmed before 14:00 CST. WhatsApp us directly for real-time stock confirmation and booking: +86 18359268345.
Contact Information
📧 Email: [email protected]
💬 WhatsApp: +86 18359268345
🌐 Web: siemensplc.com
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