- Overview
- Quick Detail
- Description
- Applications
- Specifications
- Competitive Advantage
- Recommended Products
Overview
Place of Origin: |
USA |
Brand Name: |
Bently Nevada |
Model Number: |
330103-00-08-05-02-00 |
Packaging Details: |
Original new Factory Sealed |
Delivery Time: |
5-7 days |
Payment Terms: |
T/T |
Supply Ability: |
In stock |
Quick Detail
|
Unthreaded Length Option(Minimum unthreaded length): |
00 mm |
|
Overall Case Length Option(Minimum case length): |
80 mm |
|
Total Length Option: |
0.5 meter (1.6 feet) |
|
Connector and Cable-Type Option: |
Miniature coaxial ClickLoc connector, standard cable |
|
Agency Approval Option: |
Not required |
|
Probe Case Thread: |
M10x1 |
|
Maximum Length of Thread Engagement: |
15 mm |
|
Dimension: |
18x18x2cm |
|
Weight: |
0.1kg |
Description
The 330103-00-08-05-02-00 3300 XL 8 mm Proximity Probe measures distance between the probe tip and conductive surfaces with a 2 mm linear range, supporting static position and dynamic vibration detection in automated machinery. Its 0.5-meter total length, M10x1 case thread, and 15 mm maximum thread engagement allow secure installation. The 330103-00-08-05-02-00 3300 XL 8 mm Proximity Probe operates from -52°C to +177°C, with 50 Ω output resistance and less than 2 mV change per volt supply variation. The miniature coaxial ClickLoc connector and 69.9 pF/m cable capacitance maintain accurate signal transmission. Ideal for position monitoring, vibration analysis, and Keyphasor speed measurement, the 330103-00-08-05-02-00 3300 XL 8 mm Proximity Probe features TipLoc and CableLoc designs providing 330 N pull strength and optional FluidLoc cabling to prevent fluid leakage, ensuring precise automated measurements in fluid-film bearing and rotating machinery applications.
Applications
Measure Shaft Position on Fluid-Film Bearings
The 330103-00-08-05-02-00 measures shaft displacement within a 2 mm linear range. Its M10x1 thread with 15 mm maximum engagement and 0.5-meter total cable length allows secure mounting on fluid-film bearing machinery. The probe operates from -52°C to +177°C and produces less than 2 mV output variation per volt supply change.
Monitor Vibration in Rotating Equipment
The 330103-00-08-05-02-00 captures dynamic vibration signals in turbines, pumps, and compressors. With 50 Ω output resistance and 69.9 pF/m cable capacitance, it maintains accurate vibration readings over the 0.5-meter cable.
Generate Keyphasor Signals for Speed Control
The 330103-00-08-05-02-00 delivers precise Keyphasor signals for automated speed monitoring. Its miniature coaxial ClickLoc connector and 0.2–1.5 mm² compatible field wiring allow direct integration with control systems.
Specifications
|
Operating and Storage Temperature: |
-52°C to +177°C (-62°F to +350°F) |
|
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) |
Competitive Advantage
Direct Voltage Output Linked to Probe Distance
The 330103-00-08-05-02-00 produces an output voltage directly proportional to probe tip displacement, keeping variations under 2 mV per volt supply change across a 2 mm linear range.
Robust Probe-Cable Connection
TipLoc and CableLoc designs give the 330103-00-08-05-02-00 330 N pull strength, reducing probe or cable detachment during automated operations.
Plug-and-Play Integration with 3300 Series Components
The 330103-00-08-05-02-00 can replace other 8 mm probes without bench calibration. Its 0.5-meter cable length and 69.9 pF/m capacitance enable immediate deployment in automated measurement setups.
High-Temperature Operation for Automation
Operating from -52°C to +177°C, the 330103-00-08-05-02-00 supports accurate position and vibration measurements in high-temperature rotating machinery.
Compact Installation for Limited Space
With an overall case length of 80 mm and 0.5-meter cable, the 330103-00-08-05-02-00 fits in tight mounting areas while maintaining signal accuracy.