- Overview
- Quick Detail
- Description
- Applications
- Specifications
- Competitive Advantage
- Recommended Products
Overview
Place of Origin: |
USA |
Brand Name: |
Bently Nevada |
Model Number: |
330704-000-060-10-02-00 |
Packaging Details: |
Original new Factory Sealed |
Delivery Time: |
5-7 days |
Payment Terms: |
T/T |
Supply Ability: |
In stock |
Quick Detail
|
Unthreaded Length Option: |
0 mm |
|
Overall Case Length Option: |
60 mm |
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Total Length Option: |
1.0 meter (3.3 feet) |
|
Connector and Cable-Type Option: |
Miniature coaxial ClickLoc connector, standard cable |
|
Agency Approval Option: |
Not required |
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Probe Case Thread: |
M14 x 1.5 thread |
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Maximum Length of Thread Engagement: |
21 mm
|
|
Dimension: |
114.5x2.5x2cm |
|
Weight: |
0.16kg |
Description
The 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe is a high-precision, non-contact probe designed for automated monitoring of turbines, compressors, and pumps. The 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe features a 60 mm overall case, M14 × 1.5 mounting thread with 21 mm engagement, and a 1.0 m standard cable with miniature coaxial ClickLoc connector. Its 3.94 V/mm output converts shaft motion into precise voltage signals. The 99.9% braided copper shielding of 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe minimizes electromagnetic interference, while IP67 protection enables operation in wet or dusty environments. Operating from −40°C to +85°C, the 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe is ideal for axial position, rod drop, and keyphasor signal monitoring in automated systems.
Applications
Axial shaft position monitoring
The 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe measures axial displacement on fluid film bearings with 3.94 V/mm output, providing precise voltage signals to automation controllers. Its 60 mm overall case and 21 mm thread engagement ensure accurate tip placement in automated turbine and pump monitoring.
Rod drop detection in reciprocating compressors
Using the 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe, automation systems can detect rod position or rod drop events. The probe’s 1.0 m standard cable allows direct connection to control modules, enabling immediate response to abnormal rod travel.
Keyphasor signal generation
The 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe outputs phase reference signals to vibration monitoring systems. Its M14 × 1.5 probe thread and IP67-rated body make it suitable for generating consistent Keyphasor signals in automated speed and phase control systems.
Vibration monitoring on pumps and motors
Installed near journal bearings, the 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe converts non-contacting vibration into 3.94 V/mm electrical signals. Automation modules use these signals for real-time monitoring, enabling early detection of misalignment or imbalance.
Specifications
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Shielding: |
99.9% braided copper shielding |
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Connectors: |
Industry-standard RJ45 connectors |
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Environment Resistance: |
IP67 rated for dust and water resistance |
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Operating Temperature: |
-40°C to +85°C |
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Storage Temperature: |
-40°C to +85°C |
Competitive Advantage
Direct installation for precise tip alignment
The M14 × 1.5 probe thread with 21 mm engagement of the 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe allows direct installation on machinery bearings, reducing setup errors and improving measurement accuracy.
Cable length optimized for automation
The 1.0 m cable of 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe provides a reliable connection to automation monitoring systems, minimizing voltage drop and signal distortion in industrial environments.
IP67-rated for harsh environments
The 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe resists dust and water ingress, ensuring uninterrupted operation for automated processes in pumps, compressors, and turbines.
Electromagnetic noise reduction
With 99.9% braided copper shielding, the 330704-000-060-10-02-00 3300 XL 11 mm Proximity Probe delivers clean 3.94 V/mm output signals, supporting precise automation decisions and reducing false readings in complex industrial setups.