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Bently Nevada 330130-040-02-00 3300 XL 4.0 Metre Extension Cable with FEP Insulation and API 670 Compliance

Bently Nevada 330130-040-02-00 3300 XL 4.0 Metre Extension Cable with FEP Insulation and API 670 Compliance

3300 XL Extension Cable vibration signal transmission

steam turbine monitoring 3300 XL Proximitor Sensor

gas turbine protection 330130-040-02-00 Cable

Place of Origin:

USA

Brand Name:

Bently Nevada

Model Number:

330130-040-02-00

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Product Details
Model:
330130-040-02-00
Country Of Origin:
USA
Place Of Shipment:
Xiamen,China
Shipping:
TNT, DHL, FedEx, EMS, UPS
MOQ:
1 Piece
Packaging:
Original New Packaging
Highlight:

3300 XL Extension Cable vibration signal transmission

,

steam turbine monitoring 3300 XL Proximitor Sensor

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gas turbine protection 330130-040-02-00 Cable

Payment & Shipping Terms
Minimum Order Quantity
1
Price
66USD
Packaging Details
Brand new and original
Delivery Time
2-3 work days
Payment Terms
T/T
Supply Ability
in stock
Product Description
Bently Nevada 330130-040-02-00 3300 XL 8 mm Extension Cable
Product Overview
Bently Nevada 330130-040-02-00 3300 XL 4.0 Metre Extension Cable with FEP Insulation and API 670 Compliance 0
Feature Specification
Product Series 3300 XL 8 mm Proximity Transducer System
Component Type Extension Cable
Cable Length (-040) 4.0 Metres (approx. 13.1 feet)
Connector Option (-02) Standard Cable with Connector Protectors
Agency Approval (-00) No Agency Approvals (Standard)
Cable Material 75 Ω coaxial cable with FEP insulation
Characteristic Impedance 75.0 Ω
Capacitance 69.9 pF/m (Typical)
Operating Temperature -51 °C to +177 °C (-60 °F to +350 °F)
Minimum Bend Radius 25.4 mm (1.0 in)
System Compatibility Exclusively for Bently Nevada 3300 XL 8mm Probes & Proximitor Sensors
Contact Us for Pricing or Technical Support:
Contact: Miya Zheng
Email: sales@amikon.cn
WhatsApp: +86 180 2077 6792
Applications & Features
Bently Nevada 330130-040-02-00 3300 XL 4.0 Metre Extension Cable with FEP Insulation and API 670 Compliance 1
  • API 670 Standard: API 670 Standard is basically the baseline for this kind of machinery protection system, especially when it’s used in higher-risk industrial setups. Most users in the field expect this level of compliance anyway.
  • Radial Vibration: For Radial Vibration monitoring, the cable handles signal transmission in a pretty stable way. It’s mainly used on rotating equipment to pick up shaft vibration, and the signal stays relatively clean during operation.
  • Thrust Position: Thrust Position is another key part. It supports axial position monitoring, so you can catch displacement changes on critical machine components before things drift too far out of range.
  • Steam & Gas Turbines: In Steam & Gas Turbines applications, this type of 330130-040-02-00 cable is commonly found in power generation units. Vibration and position signals are both running through it, usually in continuous monitoring setups.
  • Centrifugal Compressors: For Centrifugal Compressors, especially in oil, gas, and chemical plants, the focus is shaft stability and bearing condition. The cable just sits in the background but plays a steady role in keeping the data reliable.
  • Emergency Shutdown (ESD): In Emergency Shutdown (ESD) systems, it’s more about trust in the connection. The data link has to stay consistent so the safety system can react properly when something goes wrong.
  • Critical Asset Protection: Critical Asset Protection is really the broader use case here. It’s continuous condition monitoring for high-value rotating assets—nothing fancy, just reliable signal flow over time.
  • Connector Protectors (-02): The Connector Protectors (-02) version helps a lot in real plant conditions. Fluid-tight sealing keeps oil, moisture, and contaminants away from the connection points, which usually is where problems start.
  • EMI/RFI Immunity: EMI/RFI Immunity matters more than people expect. In noisy industrial environments, maintaining signal integrity is not always easy, but this cable is designed to handle that interference better than basic wiring.
  • 3500 System Integration: On 3500 System Integration, it connects 3300 XL probes with 3500/40M Proximitor Monitor modules. So it fits naturally into Bently Nevada 3500 monitoring setups.
  • Keyphasor Measurements: It also supports Keyphasor Measurements, giving stable speed and phase angle signals that are later used for diagnostic analysis.
  • Harsh Environments: For Harsh Environments, it’s rated to handle extreme temperatures from around -51 °C up to +177 °C. Not every installation needs that range, but in heavy industry it does come up.
  • Industrial Machinery: Industrial Machinery use is pretty wide—pumps, motors, fans, anything with fluid-film bearing systems, basically.
  • 4.0 Metre Extension: The 4.0 Metre Extension gives some flexibility in layout. Sometimes rack distance isn’t ideal, so this length helps make installation easier without custom wiring.
  • Signal Integrity: Overall, Signal Integrity is the main expectation. Low-loss transmission of eddy current sensor signals, stable output, nothing overly complicated—but it needs to work consistently in real field conditions.
Bently Nevada 330130-040-02-00 3300 XL 4.0 Metre Extension Cable with FEP Insulation and API 670 Compliance 2 Bently Nevada 330130-040-02-00 3300 XL 4.0 Metre Extension Cable with FEP Insulation and API 670 Compliance 3
  • 3300 XL Compatibility: The 3300 XL Compatibility is straightforward—this cable works directly with Bently Nevada 3300 XL 8mm proximity transducer systems, so integration usually doesn’t need extra adjustment.
  • 4.0 Metre Length: For the 4.0 Metre Length, it’s not just a random cut. It’s actually designed around calibrated 5-meter or 9-meter system setups, so the length tends to fit real installations without much modification.
  • Connector Protectors (-02): Connector Protectors (-02) are one of those small but important details. In the field, they help block oil ingress and reduce mechanical damage right at the connection points, where issues often start.
  • ClickLoc Connectors: ClickLoc Connectors make installation a bit easier too. The self-locking design holds well under vibration, so once it clicks in, it generally stays stable even in continuous running equipment.
  • FEP Insulation: The FEP Insulation uses Fluorinated Ethylene Propylene jacket material, which holds up well against chemicals. In industrial environments, that kind of resistance is usually what keeps the cable service life consistent.
  • EMI/RFI Immunity: EMI/RFI Immunity is another key point. With proper shielding design, the cable maintains signal stability even in electrically noisy plant areas where interference is common.
  • API 670 Compliance: API 670 Compliance is basically expected in this category. The design follows machinery protection standards, so it fits into most critical monitoring systems without compatibility concerns.
  • Gold-Plated Contacts: Gold-Plated Contacts are used on the connectors. It’s not just for marketing—brass with gold plating does help with conductivity and long-term corrosion resistance, especially in humid or harsh sites.
  • Temperature Range: Temperature Range is wide, from around -51 °C up to +177 °C. That makes it suitable for both extreme cold and high-heat industrial zones.
  • 75 Ohm Impedance: The 75 Ohm Impedance is kept consistent along the cable, which helps maintain signal integrity for vibration and proximity measurements without distortion.
  • Rugged Construction: Rugged Construction is pretty self-explanatory, but in real use it means the cable can handle vibration, oil exposure, and general industrial wear without breaking down quickly.
  • Interchangeability: Interchangeability with other 3300 XL series components is also useful. Maintenance teams usually appreciate not needing special variants for replacements.
  • Minimum Bend Radius: Minimum Bend Radius is about 25.4 mm (1.0 inch), so it stays fairly flexible during routing, especially inside tight machinery layouts.
  • Low Signal Loss: Low Signal Loss is one of the core design goals here. The cable is optimized for low attenuation across the full extension length, so measurement signals stay clean.
  • Field Reliability: Overall, Field Reliability is where this type of cable matters most. It’s built for long-term use in vibration and displacement monitoring, where stability is more important than anything else.
Frequently Asked Questions
Bently Nevada 330130-040-02-00 3300 XL 4.0 Metre Extension Cable with FEP Insulation and API 670 Compliance 4
Q1: What is the 330130-040-02-00 for?
A: It’s just the extension cable in a Bently Nevada 3300 XL 8mm system. It connects the probe and the Proximitor sensor and carries the signal between them. Main job is keeping the vibration and position signal stable.
Q2: Why is the 4.0 metre length of the 330130-040-02-00 important?
A: The length is matched to system calibration. In many cases it’s used to make a 5-metre total setup with a 1.0m probe. If the length is correct, the output stays accurate. If not, readings can drift.
Q3: What does “-02”  of the 330130-040-02-00 mean? 
A: It means connector protectors are included. Basically helps keep oil, moisture, and dirt away from the connection area.
Q4: Can the 330130-040-02-00 handle turbine temperatures?
A: Yes. It uses FEP insulation, so it can work in high heat and cold, roughly from -51 °C to +177 °C. Common in turbine environments.
Q5: Is the 330130-040-02-00 compatible with the Bently Nevada 3500 Monitoring System?
A: Yes, it works with Bently Nevada 3500 modules like 3500/40M and 3500/42M. The signal goes into the rack for monitoring and protection.
Q6: Can the 330130-040-02-00 be shortened?
A: Not recommended. Changing length affects impedance and calibration, so the measurement accuracy will be off.
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