- Overview
- Quick Detail
- Description
- Applications
- Specifications
- Competitive Advantage
- Recommended Products
Overview
Place of Origin: |
USA |
Brand Name: |
Bently Nevada |
Model Number: |
21504-000-016-05-02 |
Packaging Details: |
Original new Factory Sealed |
Delivery Time: |
5-7 days |
Payment Terms: |
T/T |
Supply Ability: |
In stock |
Quick Detail
|
Probe Diameter |
8 mm |
|
Probe Type |
Proximity Probe |
|
Armored Options |
Armored and Unarmored available |
|
Connector Options |
Multiple connector options |
|
Dimension: |
1.6x1.3x69cm |
|
Weight: |
0.05kg |
Description
The 21504-000-016-05-02 3300 XL 8 mm Reverse Mount Probe is engineered for automated monitoring of fluid-film bearing machines, turbines, compressors, and high-speed motors where precise measurement of shaft position and vibration is required. The 21504-000-016-05-02 features an 8 mm probe diameter, standard 3/8-24 threading, and unthreaded length of 0 inches with overall case length of 0.8 inches. Its 1.0 meter standard cable with miniature male coaxial connector supports full interchangeability with other 3300 XL system units and cabling. The 21504-000-016-05-02 delivers a calibrated output range of 80 mils (2.0 mm), starting at 10 mils (0.25 mm) from the probe face, operating reliably from -51°C to +177°C. Input power ranges from -17.5 VDC to -26 VDC at a maximum 12 mA consumption. Optional armored and unarmored lead configurations allow adaptation to harsh industrial environments. The 21504-000-016-05-02 3300 XL 8 mm Reverse Mount Probe enhances automated condition monitoring, predictive maintenance, and vibration analysis, ensuring accurate, repeatable data while minimizing downtime and supporting advanced industrial control systems.
Applications
Applications in Fluid-Film Bearing Machines
The 21504-000-016-05-02 3300 XL 8 mm Reverse Mount Probe is applied to turbines compressors pumps and high-speed motors for automated measurement of shaft position and vibration. With an 8 mm probe diameter, calibrated output range of 80 mils (2.0 mm), and starting distance of 10 mils (0.25 mm) from the probe face, the 21504-000-016-05-02 provides precise static and dynamic distance data. Its 1.0 meter cable with miniature male coaxial connector allows integration into distributed control systems, enabling real-time monitoring and predictive maintenance in automated industrial environments.
Applications in Harsh Industrial Automation
The 21504-000-016-05-02 operates reliably across a temperature range of -51°C to +177°C and supports input power from -17.5 VDC to -26 VDC at a maximum 12 mA. Optional armored and unarmored leads allow the 21504-000-016-05-02 to maintain accurate measurements even in high-vibration or abrasive conditions, enhancing automated control and machinery protection in critical industrial processes.
Specifications
|
Unit and Cabling |
Complete interchangeability of units and cabling |
|
Unthreaded Length |
0.0 inches |
|
Overall Case Length |
0.8 inches |
|
Total Length |
1.0 m |
|
Total Length Tolerance |
+0.25 m / -0.10 m |
|
Connector Type |
Miniature male coaxial connector |
|
Thread Type |
Standard, 3/8-24 |
|
Lead Armor |
Not armored (Nc) |
|
Input Power |
-17.5 VDC to -26 VDC at 12 mA max consumption |
|
Output Calibrated Range |
80 mils (2.0 mm), begins at approx. 10 mils (0.25 mm) from probe face |
|
Storage Temperature |
-51°C to +177°C (-60°F to +351°F) |
Competitive Advantage
Competitive Advantage in Accuracy and Reliability
The 21504-000-016-05-02 ensures consistent measurement performance with full interchangeability of units and cabling across the 3300 XL system. Its standard 3/8-24 thread and 0-inch unthreaded length secure stable mounting, minimizing signal noise and providing repeatable results for automated condition monitoring.
Competitive Advantage in Integration and Maintenance Efficiency
The 21504-000-016-05-02 3300 XL probe integrates seamlessly with other 3300 XL components, simplifying installation and reducing downtime. Its miniature coaxial connector and robust design support reliable automated operation, predictive maintenance, and efficient data acquisition in complex industrial systems.