- Overview
- Quick Detail
- Description
- Applications
- Specifications
- Competitive Advantage
- Recommended Products
Overview
Place of Origin: |
USA |
Brand Name: |
Bently Nevada |
Model Number: |
330104-00-10-10-01-CN |
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): |
100 mm |
|
Total Length Option: |
1.0 meter (3.3 feet) |
|
Connector and Cable-Type Option: |
Miniature coaxial ClickLoc connector with connector protector, standard cable |
|
Agency Approval Option: |
CSA, ATEX, IECEx Approvals |
|
Probe Case Thread: |
M10x1 |
|
Maximum Length of Thread Engagement: |
15 mm |
|
Dimension: |
1.8x1.5x118cm |
|
Weight: |
0.16kg |
Description
The 330104-00-10-10-01-CN 3300 XL 8 mm Proximity Probe is an eddy current sensor designed for automated shaft position and vibration measurement in rotating machinery. The 330104-00-10-10-01-CN generates an output voltage proportional to the distance between the probe tip and a conductive surface, enabling automation systems to capture real-time shaft movement and vibration data.
The 330104-00-10-10-01-CN features an M10×1 threaded probe body with zero unthreaded length and a maximum thread engagement of 15 mm, supporting precise probe mounting near bearings. With an overall case length of 100 mm and a 1.0-meter standard cable, the 330104-00-10-10-01-CN fits compact machine layouts while ensuring secure signal transfer through its miniature coaxial ClickLoc connector with connector protector. CSA, ATEX, and IECEx approvals allow the 330104-00-10-10-01-CN to operate safely in hazardous areas.
Operating from –52°C to +177°C, the 330104-00-10-10-01-CN provides a 2 mm linear range, 50 Ω output resistance, supply sensitivity below 2 mV/V, and typical cable capacitance of 69.9 pF/m. These parameters enable predictable signal behavior for automated monitoring modules, supporting shaft position tracking, vibration measurement, and speed reference input in industrial automation systems.
Applications
Measure Axial Shaft Movement in Compact Turbines
The 330104-00-10-10-01-CN is installed near thrust bearings to measure axial shaft displacement. The 2 mm linear range allows automation systems to detect shaft movement and trigger alarms when it exceeds defined limits.
Capture Radial Vibration in Small Footprint Machines
Mounted near journal bearings, the 330104-00-10-10-01-CN detects radial shaft vibration caused by imbalance or wear. Its 50 Ω output resistance and controlled 69.9 pF/m cable capacitance allow clean transmission of vibration waveforms to monitoring modules.
Provide Speed Reference for Rotating Equipment
When paired with a reference target, the 330104-00-10-10-01-CN generates speed-related signals for compressors, pumps, and generators. Low supply sensitivity below 2 mV/V enables consistent speed signal output despite input voltage variations.
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
Allow Installation in Compact Machinery
The 100 mm case length, zero unthreaded length, and M10×1 thread allow the 330104-00-10-10-01-CN to be installed in confined bearing housings without interfering with nearby components.
Operate in High-Temperature Bearing Zones
With an operating range up to +177°C, the 330104-00-10-10-01-CN can be positioned directly in hot bearing housings, providing continuous measurement data without relocating the probe.
Deliver Predictable Electrical Signals
The 50 Ω output resistance, supply sensitivity below 2 mV per volt, and defined cable capacitance allow the 330104-00-10-10-01-CN to provide consistent signals for automated shaft position, vibration analysis, and speed reference input.