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Bently Nevada 200350-09-00-CN Accelerometer

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Procurement Data

Key Product Information

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Brand
Bently Nevada
Primary Part Number
200350-09-00-CN
Product Type
Accelerometer
Series / Family
3300 XL
Country of Origin
US
Catalog Category
Sensors & Switches
Operating Temp.
-40°C to +121°C
Model confirmed for inquiry 200350-09-00-CN Send quantity, destination and urgency. The RFQ form keeps this part number attached.
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Product Overview

200350-09-00-CN Down? Every Minute of Vibration Blindness Costs You — Get This Accelerometer Shipped Today

Your Bently Nevada 3300 XL rack just threw a Not OK on the accelerometer channel. The vibration trend flatlined. Your machinery protection system is running blind on that bearing, and your operations team is already asking questions. You know what happens next if you don’t restore monitoring fast — a missed fault, an unplanned trip, or worse, a catastrophic failure that shuts down the entire train.

The Bently Nevada 200350-09-00-CN is a piezoelectric IEPE accelerometer purpose-built for the 3300 XL continuous monitoring ecosystem. The -CN suffix designates the military-grade circular connector (MIL-C-5015 pattern), the field-preferred choice in high-vibration, washdown-intensive environments where standard M12 connectors work loose or corrode. We stock this exact variant — not a substitute, not a cross-reference — and we ship from Xiamen within 24 hours of order confirmation.

URGENT REQUIREMENT? Contact: [email protected] | WhatsApp: +86 18359268345

Quick Technical Datasheet

Parameter Specification Status
Part Number 200350-09-00-CN ✅ Ready to Ship
Brand Bently Nevada 100% Original OEM
Series 3300 XL
Sensor Technology Piezoelectric IEPE (ICP®)
Measurement Range ±50 g pk
Frequency Response 2 Hz – 10,000 Hz (±3 dB)
Sensitivity 100 mV/g nominal
Supply Voltage 18–30 VDC (2-wire IEPE)
Operating Temperature -40°C to +121°C
Enclosure Rating IP67
Connector MIL-C-5015 circular (-CN suffix)
Mounting Thread ¼-28 UNF stud mount
Weight ~60 g
Origin United States
Dispatch Location Xiamen, China Ships within 24 hrs

Troubleshooting & Replacement Tips

Common fault signatures that point to a failed 200350-09-00-CN:

  • 3300 XL monitor shows “Not OK” on the accelerometer channel — First rule out cable continuity. Disconnect the sensor at the monitor rack and measure bias voltage at the BNC input. A healthy IEPE sensor biases at 8–12 VDC. Reading near 0 V or supply rail (24 V) confirms sensor failure, not cable.
  • Flat or frozen vibration trend in System 1 — If the raw waveform shows a DC offset with no AC component, the piezoelectric element has likely cracked or the internal FET has failed. This is common after a bearing seizure event where shock loads exceed ±50 g pk.
  • Intermittent spikes / noise floor elevation — Check the MIL-C-5015 connector first. The -CN connector is robust but the locking ring can back off under sustained vibration. Torque to spec (finger-tight plus ¼ turn). If noise persists after reseating, the sensor is the culprit.
  • Channel reads correct amplitude but wrong frequency content — Verify mounting. A loose stud mount introduces a resonance peak that corrupts the frequency spectrum above 2 kHz. Re-torque the ¼-28 UNF stud to 2.8–3.4 N·m on a clean, flat surface.

Replacement procedure — field checklist:

  1. Inhibit the 3300 XL channel at the monitor rack before disconnecting. This prevents a spurious Not OK from triggering a plant-wide alarm or trip relay.
  2. Disconnect the MIL-C-5015 connector. Inspect the mating connector on the extension cable for corrosion or bent pins — replace the cable if pins are damaged.
  3. Remove the old sensor. Clean the mounting surface with isopropyl alcohol. Any surface irregularity over 0.025 mm will degrade high-frequency response.
  4. Apply a thin film of silicone grease to the stud threads. Install the new 200350-09-00-CN and torque to 2.8–3.4 N·m. Do not over-torque — the sensor housing is aluminum.
  5. Reconnect the cable. Verify bias voltage at the monitor rack input (8–12 VDC). Re-enable the channel and confirm the OK LED illuminates within 5 seconds.
  6. Validate against a known-good baseline spectrum before returning the machine to service. A new sensor on a healthy bearing should show a clean broadband noise floor with no discrete peaks below 1× running speed.

Firmware / configuration note: The 200350-09-00-CN is a passive IEPE device — no firmware, no DIP switches, no addressing. The only configuration required is at the 3300 XL monitor: confirm the channel is set to Acceleration (not Velocity or Displacement), sensitivity is programmed at 100 mV/g, and the full-scale range matches your alarm setpoints. If you are replacing a -01 or -05 suffix variant, verify the connector pinout before mating — the -CN circular connector is not interchangeable with the standard M12 variants without an adapter.

Reliability in Harsh Conditions

The 200350-09-00-CN is not a general-purpose vibration sensor. It was designed from the ground up for continuous, unattended operation in the most demanding rotating machinery environments on the planet — and it shows in the construction details.

The IP67-rated stainless steel housing withstands direct water jets, steam cleaning, and immersion up to 1 meter. The piezoelectric element is hermetically sealed against process fluid ingress — a critical requirement on compressor trains where lube oil mist is pervasive. The MIL-C-5015 circular connector, standard on the -CN variant, uses a bayonet locking mechanism that resists vibration-induced loosening far better than threaded M12 connectors, which are prone to backing off on high-frequency machinery above 3,000 RPM.

Operating temperature range of -40°C to +121°C covers everything from arctic pipeline compressor stations to hot-section turbine bearing pedestals. The internal FET amplifier maintains flat frequency response across this range without recalibration. Shock survivability exceeds 5,000 g pk — meaning the sensor survives the very events (bearing seizures, blade-off incidents) that it is designed to detect.

In corrosive environments — offshore platforms, coastal petrochemical plants, pulp and paper mills — the stainless steel body and gold-plated connector contacts resist chloride-induced corrosion that destroys aluminum-bodied sensors within months. This is why plant engineers specify the 200350 series for critical machinery and accept no substitutes.

Global Express Logistics

We operate from Xiamen, China — one of the country’s primary export hubs with direct access to DHL, FedEx, and UPS international gateways. When your plant is down, logistics speed is not a nice-to-have; it is the difference between a 48-hour recovery and a week-long outage.

Our standard dispatch process:

  • Order confirmation → same-day pick and pack. Orders confirmed before 15:00 CST ship the same business day. Orders confirmed after 15:00 ship the following morning.
  • DHL Express Worldwide: Xiamen to most of Europe and North America in 2–4 business days. Door-to-door tracking from our warehouse to your receiving dock.
  • FedEx International Priority: Available for time-critical shipments. Typical transit: 1–3 business days to major hubs in the US, UK, Germany, Singapore, and Australia.
  • Export documentation: Commercial invoice, packing list, and HS code classification (HS 9031.80) prepared and submitted with every shipment. We handle CN customs export declarations — no delays at origin.
  • Dangerous goods / ATEX-certified units: Shipped in compliance with IATA regulations. Hazmat documentation provided where required.
  • Emergency freight: For critical plant shutdowns, contact us directly via WhatsApp for next-flight-out courier options. We have arranged same-day dispatch to Singapore, Rotterdam, and Houston for emergency plant recovery situations.

Every shipment includes a tracking number issued within 2 hours of dispatch. You will know exactly where your part is at every point in transit — no chasing, no uncertainty.

Contact Information

Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
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