- Overview
- Quick Detail
- Description
- Applications
- Specifications
- Competitive Advantage
- Recommended Products
Overview
Place of Origin: |
USA |
Brand Name: |
Bently Nevada |
Model Number: |
21505-00-60-10-02 |
Packaging Details: |
Original new Factory Sealed |
Delivery Time: |
5-7 days |
Payment Terms: |
T/T |
Supply Ability: |
In stock |
Quick Detail
|
Unthreaded Length Option: |
00 in |
|
Overall Case Length Option: |
6.0 in |
|
Total Length Option: |
1.0 M(39 in) |
|
Connector Option: |
With Miniature Male Coaxial Connector |
|
Dimension: |
55x1.5x1.5cm |
|
Weight: |
0.06kg |
Description
The 21505-00-60-10-02 8 mm Probe is a precision non-contact gap-to-voltage transducer designed for automation applications requiring accurate measurement of static and dynamic displacement. This 8 mm probe provides an output voltage directly proportional to the distance between the probe tip and the measured surface, enabling precise monitoring in motors, pumps, turbines, and fluid-film bearing systems. With a total length of 1.0 meter (39 in) and overall case length of 6.0 in, the 21505-00-60-10-02 8 mm Probe fits compact spaces while maintaining high reliability. The probe includes a miniature male coaxial connector, ensuring secure and interference-free signal transmission in automated systems. Its frequency response from 0 Hz (DC) to 10 kHz allows it to capture both low-frequency static positions and high-frequency vibration signals, providing essential data for machinery control and predictive maintenance. Designed with non-contact sensing technology, the 21505-00-60-10-02 8 mm Probe eliminates mechanical wear, extending service life and reducing downtime in industrial automation environments. This probe is fully compatible with existing gap-to-voltage transducer systems, making the 21505-00-60-10-02 8 mm Probe a versatile and reliable choice for process monitoring, vibration analysis, and position feedback in modern automated facilities.
Applications
1. Vibration Monitoring on Fluid-Film Bearings
The 21505-00-60-10-02 8 mm Probe provides precise dynamic displacement measurements up to 10 kHz, enabling accurate monitoring of vibration amplitudes on fluid-film bearings in pumps, turbines, and compressors. Its non-contact sensing method ensures minimal mechanical wear, extending service life in continuous automation operations.
2. Shaft Position Measurement in Rotating Machinery
With a linear range compatible with standard gap-to-voltage systems and a total length of 1.0 meter (39 in), the 21505-00-60-10-02 8 mm Probe measures static shaft positions with high accuracy. This makes it ideal for motors, gearboxes, and industrial drives where real-time position feedback is critical for automation control.
3. Process Equipment Monitoring
Equipped with a miniature male coaxial connector and frequency response from 0 Hz (DC) to 10 kHz, the 21505-00-60-10-02 8 mm Probe captures both low-frequency displacement and high-frequency vibrations in automated chemical, oil, and gas processing systems, providing key inputs for predictive maintenance and process optimization.
Specifications
|
Frequency Response: |
0 Hz (DC) to 10 kHz |
|
Measurement: |
Static & Dynamic Displacement |
|
Sensing Method: |
Non-Contact |
|
System Type: |
Gap-to-Voltage Transducer |
Competitive Advantage
1. High Reliability and Long Service Life
The 21505-00-60-10-02 8 mm Probe features a non-contact sensing system, reducing mechanical wear and enabling extended operation in harsh industrial environments. Its overall case length of 6.0 in allows compact installations without sacrificing performance.
2. Wide Frequency and Measurement Range
With a 0 Hz to 10 kHz frequency response, the 21505-00-60-10-02 8 mm Probe handles both static and dynamic displacement measurements, providing versatile solutions for automated machinery monitoring.
3. Easy Integration and Signal Security
The 21505-00-60-10-02 8 mm Probe comes with a miniature male coaxial connector, ensuring secure and interference-free connections. Its design is compatible with existing gap-to-voltage transducer systems, simplifying integration into automated monitoring setups.