- Overview
- Quick Detail
- Description
- Applications
- Specifications
- Competitive Advantage
- Recommended Products
Overview
Place of Origin: |
USA |
Brand Name: |
Bently Nevada |
Model Number: |
330130-080-00-05 |
Packaging Details: |
Original new Factory Sealed |
Delivery Time: |
5-7 days |
Payment Terms: |
T/T |
Supply Ability: |
In stock |
Quick Detail
|
Cable Length Option: |
8.0 meters (26.2 feet) |
|
Connector Protector and Cable Option: |
Standard cable |
|
Agency Approval Option: |
CSA, ATEX, IECEx Approvals |
|
Extension Cable Material: |
75 Q triaxial, fluoroethylene propylene (FEP) insulated |
|
Dimension: |
21x21x2cm |
|
Weight: |
0.28kg |
Description
The 330130-080-00-05 3300 XL Standard Extension Cable extends 8 mm proximity transducer signals with precision in automated systems. Measuring 8.0 meters (26.2 feet), the 330130-080-00-05 3300 XL cable features 75 Q triaxial FEP insulation, 50 Ω output resistance, and 69.9 pF/m capacitance, supporting field wiring from 0.2 to 1.5 mm² (16–24 AWG). The cable maintains accurate readings within a 2 mm linear range and captures targets as small as 15.2 mm. Frequency response of 0–10 kHz ensures high-resolution vibration and position measurements up to 305 meters (1000 feet) of wiring. CSA, ATEX, and IECEx approvals enable safe operation in hazardous areas. The 330130-080-00-05 3300 XL cable integrates with all 3300 XL 8 mm probes and Proximitor sensors using patented TipLoc and CableLoc designs for secure connections, while the optional FluidLoc configuration prevents oil or liquid intrusion, making it ideal for automated machinery monitoring and Keyphasor reference signal applications.
Applications
Vibration Monitoring on Fluid-Film Bearings
The 330130-080-00-05 cable ensures high-resolution vibration measurement from 8 mm probes on fluid-film bearing machines. Its 0–10 kHz frequency response captures both low- and high-speed vibration events accurately.
Position Measurement on Rotating Shafts
Use 330130-080-00-05 to transmit precise static and dynamic position signals from probes with 2 mm linear range and 15.2 mm minimum target detection, enabling accurate shaft displacement monitoring.
Keyphasor Reference Signal Transmission
The 330130-080-00-05 cable maintains clean signal output (less than 2 mV supply variation per volt) for Keyphasor sensors, supporting speed and phase monitoring in automation systems.
Extended Field Wiring Applications
With up to 305 meters (1000 feet) support, 330130-080-00-05 can reliably carry signals across large industrial areas without loss, and 69.9 pF/m capacitance ensures minimal voltage distortion.
Specifications
|
Supply Sensitivity: |
Less than 2 mV change in output voltage per volt change in input voltage |
|
Output Resistance: |
50 Ω |
|
Extension Cable Capacitance: |
69.9 pF/m (21.3 pF/ft) typical |
|
Field Wiring: |
0.2 to 1.5 mm2 (16 to 24 AWG) |
|
Linear Range: |
2 mm (80 mils) |
|
Frequency Response: |
(0 to 10 kHz), +0, -3 dB, with up to 305 meters (1000 feet) of field wiring |
|
Minimum Target Size: |
15.2 mm (0.6 in) diameter (flat target) |
Competitive Advantage
Long Cable Runs with Accurate Voltage Output
The 8.0-meter length and 69.9 pF/m capacitance of 330130-080-00-05 allow extended signal transmission while preserving probe output proportionality.
Secure Probe Attachment
Patented TipLoc and CableLoc designs of 330130-080-00-05 provide 330 N (75 lbf) pull strength, reducing disconnection risks in high-vibration environments.
Fluid Protection for Harsh Environments
Optional FluidLoc on 330130-080-00-05 prevents oil and other liquids from entering the cable interior, enabling uninterrupted operation in lubrication-heavy machinery.
Compliance for Hazardous Areas
CSA, ATEX, and IECEx approvals allow 330130-080-00-05 to be deployed in explosive and industrial automation zones safely, without additional certification.
High-Fidelity Signal Performance
0–10 kHz frequency response, 2 mm linear range, and output sensitivity of <2 mV per volt make 330130-080-00-05 capable of capturing precise vibration and position measurements under demanding automation conditions.