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Bently Nevada 330101-00-20-05-02-05 Proximity Extension Cable

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Key Product Information

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Brand
Bently Nevada
Primary Part Number
330101-00-20-05-02-05
Product Type
Proximity Probe Extension Cable
Series / Family
3301
Manufacturer
Bently Nevada (Baker Hughes)
Country of Origin
US
Catalog Category
Industrial Automation Spares
Model confirmed for inquiry 330101-00-20-05-02-05 Send quantity, destination and urgency. The RFQ form keeps this part number attached.
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Product Overview

330101-00-20-05-02-05 — Every Hour of Downtime Costs You. We Ship Today.

Your turbine is down. Your compressor is offline. The 3300 XL proximity system is throwing a fault and the extension cable is the culprit. You’ve already pulled the probe — now you need the cable on-site, fast, with zero guesswork. The Bently Nevada 330101-00-20-05-02-05 is a 20 ft armored coaxial extension cable, factory-terminated and pre-calibrated for direct drop-in replacement in 3300 XL 8mm, 3300 5mm, and 3300 NSv proximity systems. We stock it in Xiamen. It ships today.

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

Quick Technical Datasheet

Parameter Specification
Part Number 330101-00-20-05-02-05
Manufacturer Bently Nevada (Baker Hughes)
Series 3300 XL / 3300 5mm / 3300 NSv Proximity Systems
Cable Type Coaxial Extension Cable
Cable Length 20 ft (6.1 m) — encoded segment “-20-“
Jacket Type Armored — stainless steel braid (segment “-05-“)
Impedance 50 Ω nominal
Connector Type Coaxial, MIL-spec, straight orientation (segment “-02-“)
Operating Temperature –55°C to +125°C
Calibration Factory pre-calibrated, matched to 3300 XL probe + proximitor
Compliance API 670, CE, CSA, FM (configuration-dependent)
Weight ~200 g
Stock Status ✔ Ready to Ship — Xiamen Warehouse

Troubleshooting & Replacement Tips

Common failure signatures that point to the extension cable:

  • Bently Nevada 3500 rack showing Not OK (NOK) on a channel that was previously stable — probe and proximitor bench-test fine individually.
  • Intermittent gap voltage drift: reading fluctuates ±0.5 V or more without any shaft movement. Classic sign of a compromised center conductor or corroded connector.
  • High-frequency noise spike on the vibration waveform that disappears when you flex the cable — micro-fracture in the coaxial shield braid.
  • DC gap voltage reads outside the –10 V to –18 V linear range despite correct probe positioning — total system cable length has shifted due to a substituted or damaged extension.

Step-by-step replacement procedure:

  1. Isolate the channel. Bypass or inhibit the affected channel in System 1 / System 1 Evolution before disconnecting anything. Do not pull the cable live on a running machine — the proximitor output will spike and may trigger a spurious trip.
  2. Document the gap voltage. Before disconnecting, record the existing DC gap voltage at the proximitor output terminal. Target: –10.0 V to –18.0 V. This is your baseline for post-installation verification.
  3. Inspect connectors first. Unscrew the probe-end and proximitor-end connectors. Look for green oxidation, bent center pins, or cracked PTFE dielectric. If connectors are clean and the cable still fails, the fault is in the coaxial core — replace the full cable assembly.
  4. Verify total system cable length. The 330101-00-20-05-02-05 is 20 ft. Your probe cable adds to this. Total combined length must stay within the proximitor’s rated range: typically 5–9 m (short range) or 9–18 m (long range). Exceeding this shifts the linear operating point and introduces a calibration offset you cannot correct in software.
  5. Install the replacement cable. This is a factory-calibrated, matched assembly — no field calibration required for like-for-like swap in an existing Bently Nevada system. Hand-tighten connectors to finger-tight plus 1/4 turn. Do not over-torque; the MIL-spec connector body is brass and will deform.
  6. Re-enable the channel and verify gap voltage. Power up the proximitor. Confirm DC gap voltage returns to within ±0.2 V of your pre-removal baseline. If the reading has shifted significantly, recheck total cable length and connector seating before assuming a probe fault.
  7. Check API 670 alarm setpoints. After replacement, confirm that the 3500 rack’s alert and danger setpoints are still active and correctly configured. A channel inhibit during maintenance sometimes resets setpoint states depending on firmware version.

Configuration note — do not mix calibration sets: The 330101-00-20-05-02-05 is calibrated as part of a three-component system: probe + extension cable + proximitor. Substituting a third-party extension cable without a matched calibration set will degrade linearity and may push the system out of API 670 compliance. If you must use a non-OEM cable in an emergency, document the deviation and schedule a full system recalibration at the next planned outage.

Reliability in Harsh Conditions

The 330101-00-20-05-02-05 is built for environments that destroy ordinary instrumentation cables. The stainless steel braid armor (segment “-05-“) is not a marketing feature — it is a structural requirement for installations where the cable runs through cable trays exposed to mechanical abrasion, high-pressure wash-down, or contact with process fluids. The PTFE dielectric maintains its 50 Ω impedance characteristic across the full –55°C to +125°C operating range, which means the cable performs identically whether it is routed through a sub-zero LNG compressor bay or a 110°C steam turbine pedestal.

Vibration is the primary killer of proximity probe cables in rotating machinery applications. The 330101-00-20-05-02-05 uses a multi-strand center conductor with a high-flex coaxial geometry that resists work-hardening at the connector termination points — the most common failure location on cheaper cables. The factory-crimped and soldered connector terminations are sealed against moisture ingress, which matters in coastal plants, offshore platforms, and any facility running open-loop cooling water near the machinery train.

EMI immunity is a non-negotiable requirement in plants where VFDs, large motors, and high-current bus bars run parallel to instrumentation cable trays. The stainless braid provides continuous 360° shielding with shield coverage exceeding 95%, suppressing induced noise that would otherwise corrupt the proximity signal and generate false vibration readings at the 3500 rack.

Global Express Logistics

Our warehouse is located in Xiamen, Fujian — one of China’s primary export hubs with direct access to DHL, FedEx, and UPS international express networks. For urgent replacement orders, we process same-day dispatch for orders confirmed before 15:00 CST. Standard transit times from Xiamen:

  • Southeast Asia (Singapore, Malaysia, Thailand, Indonesia): 2–3 business days via DHL Express
  • Middle East (UAE, Saudi Arabia, Qatar, Kuwait): 3–4 business days via FedEx International Priority
  • Europe (Germany, Netherlands, UK, France): 3–5 business days via DHL Express Worldwide
  • North America (USA, Canada): 4–6 business days via FedEx International Priority
  • Australia & New Zealand: 3–5 business days via DHL Express

Every shipment includes a commercial invoice, packing list, and certificate of conformance (CoC). For customers in regulated industries requiring full material traceability documentation, notify us at order placement and we will include the complete documentation package. Customs HS code for this product: 8544.42 (insulated electric conductors for a voltage not exceeding 1,000 V, fitted with connectors). We handle export declaration from China — no additional paperwork required from the buyer for standard commercial imports.

For plant shutdowns and turnaround projects requiring multiple line items, send your BOM to [email protected] and we will consolidate into a single shipment to reduce freight cost and customs clearance complexity.

Contact Information

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