• Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer
  • Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer
  • Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer
  • Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer
Product Overview The Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer is a wireless vibration monitoring device for machinery where continuous access to vibration data is use……
Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer
  • Bently Nevada
  • 70M303-10-01-01-02
  • Tri-Axial Wireless Accelerometer
  • USA
  • 88 × 40 mm
  • 0.23 kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
  • 24-Hour Service
  • COO
  • 15

Our advantage

Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer

Global Logistics

We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer

Brand new and original

Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer

24-hour service

We provide 7*24 hours service to our customers. We will be there whenever you need us.

Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer

Price advantage

All our products are priced very favorably because we have our own warehouse and supply.


Company Information
E-mail [email protected]
Mobile +8615980777398
Whatsapp +8615980777398
WeChat 15980777398

Product Overview

The Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer is a wireless vibration monitoring device for machinery where continuous access to vibration data is useful but installing conventional wired accelerometers is difficult or costly. It belongs to the Ranger Pro wireless monitoring family and measures vibration in three axes from a single sensor location.

The sensor can be installed on rotating equipment such as motors, pumps, fans, compressors, gearboxes, and other machinery where changes in vibration behavior can indicate developing mechanical problems. A typical installation places the accelerometer directly on the machine housing, while the wireless monitoring infrastructure transfers measurement data to the plant monitoring or analysis system.

The tri-axial arrangement is particularly useful when the dominant vibration direction is not known in advance. Instead of installing separate sensors for multiple directions, one device can capture vibration along three axes at the selected measurement point. This helps maintenance teams compare vibration behavior during normal operation and investigate changes associated with imbalance, misalignment, looseness, bearing deterioration, or other mechanical conditions.


Technical Specifications

Parameter Specification
Product Bently Nevada 70M303-10-01-01-02 Ranger Pro Tri-Axial Wireless Accelerometer
Product Type Tri-Axial Wireless Accelerometer
Model 70M303-10-01-01-02
Series Ranger Pro
Measurement Three-axis vibration
Communication Wireless
Application Wireless machinery condition monitoring
Installation Machine-mounted vibration measurement
Dimensions 88 × 40 mm
Weight 0.23 kg

Product Features

  • Tri-axial vibration measurement captures vibration in three directions from one mounting location.
  • Wireless operation reduces the need for dedicated signal cables between individual sensors and monitoring equipment.
  • Compact form factor suits distributed monitoring points on rotating machinery.
  • Ranger Pro platform supports wireless condition-monitoring architectures for industrial assets.
  • Single-point installation can simplify vibration coverage where access for multiple wired sensors is limited.
  • Suitable for expanding condition-monitoring coverage across machines that were previously monitored only through periodic inspection.

Working Principle

The accelerometer is mounted directly to the monitored machine so that mechanical vibration is transferred to the sensing element. Vibration along the three measurement axes is detected and converted into measurement data for wireless transmission.

In practical use, the sensor acts as the measurement point rather than the complete monitoring system. The measured vibration data is passed through the wireless monitoring network to the receiving and analysis infrastructure. Maintenance personnel can then compare current vibration behavior with historical or expected operating conditions.

For troubleshooting, the physical mounting point matters as much as the wireless connection. A loose mounting surface, unsuitable installation position, excessive mechanical interference, or changes in the machine structure can affect the measured signal. If a reading changes unexpectedly, engineers should separate sensor mounting issues from genuine changes in machine vibration.


Role in a Wireless Machinery Condition Monitoring Architecture

System Element Function
70M303-10-01-01-02 Accelerometer Measures tri-axial vibration at the machine
Ranger Pro Wireless Sensor Network Transfers sensor measurement data wirelessly
Wireless Gateway / Receiver Collects data from wireless monitoring devices
Condition Monitoring Software Stores, trends, and analyzes vibration information
PLC / DCS / Plant Monitoring System Receives relevant condition information for operational monitoring
Rotating Machinery Provides the mechanical vibration being monitored
Maintenance System Uses condition information to support inspection and maintenance decisions

Industrial Applications

Application Typical Use
Motor Monitoring Tracking changes in motor housing vibration
Pump Condition Monitoring Monitoring vibration trends on pump assemblies
Compressor Monitoring Detecting changes in compressor mechanical condition
Fan and Blower Monitoring Observing vibration behavior on rotating fan equipment
Gearbox Monitoring Monitoring vibration changes associated with mechanical transmission components
General Rotating Equipment Extending vibration monitoring to additional plant assets
Remote Condition Monitoring Collecting machine data where conventional wired installation is inconvenient

Installation and Maintenance

  1. Verify the Model — Confirm that 70M303-10-01-01-02 matches the intended Ranger Pro monitoring application before installation.
  2. Inspect the Sensor — Check the housing and mounting interface for visible damage, contamination, or deformation.
  3. Select the Measurement Point — Choose a structurally representative location close to the machine component being monitored.
  4. Prepare the Mounting Surface — Keep the contact surface clean and mechanically suitable for vibration measurement.
  5. Secure the Sensor Correctly — Follow the applicable installation method and ensure the sensor is firmly coupled to the machine.
  6. Check Mechanical Interference — Make sure nearby structures, covers, or moving components cannot contact the sensor during operation.
  7. Confirm Wireless Network Coverage — Verify that the sensor has an appropriate communication path to the Ranger Pro wireless infrastructure.
  8. Check Device Configuration — Confirm sensor identification and monitoring configuration before placing the measurement point into service.
  9. Record the Initial Condition — Capture baseline vibration behavior when the machine is operating under a known condition.
  10. Trend the Measurement Data — Compare subsequent measurements against historical trends instead of relying only on a single vibration reading.
  11. Investigate Abnormal Changes — If vibration changes significantly, check both the machine and the sensor installation before concluding that the equipment has developed a fault.
  12. Maintain the Mounting Area — During scheduled inspections, check the sensor attachment, surrounding machine surface, and wireless communication condition.

Compatible System Components

Component Function
Ranger Pro Wireless Monitoring Devices Provides additional wireless measurement points
Ranger Pro Wireless Network Infrastructure Handles communication between field sensors and the monitoring system
Wireless Gateway / Receiver Collects sensor data for system-level processing
Condition Monitoring Software Provides vibration trending and analysis
Plant Monitoring System Integrates equipment condition information with broader plant operation
Rotating Equipment Supplies the vibration measurement source
Maintenance Workstation Supports vibration review and equipment diagnosis

Recommended Related Models

Model / Product Family Product Type Typical Application
Bently Nevada 70M301 Ranger Pro Single-Axis Wireless Vibration Sensor Single-direction vibration monitoring
Bently Nevada 70M303 Ranger Pro Tri-Axial Wireless Vibration Sensor Multi-direction vibration monitoring
Bently Nevada 70M303-10-01-00-02 Ranger Pro Tri-Axial Wireless Vibration Sensor Wireless condition monitoring of rotating equipment
Bently Nevada 70M300 Ranger Pro Wireless Repeater Extending wireless monitoring network coverage
Ranger Pro Wireless Monitoring System Wireless Condition Monitoring Platform Distributed machinery monitoring

Key Advantages

  • Three-axis vibration measurement from one sensor location.
  • Wireless installation reduces field signal cabling.
  • Compact format suits distributed machinery monitoring.
  • Useful for condition-monitoring expansion across rotating equipment.
  • Supports vibration trending for maintenance analysis.

Technical FAQs

What is the main difference between the 70M303-10-01-01-02 and a single-axis vibration sensor?

The 70M303-10-01-01-02 measures vibration along three axes. This gives engineers directional information from one installation point and can be useful when the dominant vibration direction is uncertain or may change with machine operating conditions.

Where should the 70M303-10-01-01-02 be installed on rotating equipment?

The sensor should normally be mounted on a mechanically representative part of the machine housing, as close as practical to the component being monitored. The mounting surface should be rigid and suitable for transferring vibration to the sensor.

What should be checked if the wireless sensor suddenly reports an abnormal vibration value?

Check the machine operating condition, sensor mounting, physical contact with the machine, and wireless communication condition. Comparing the current reading with historical trends can help determine whether the change is associated with the machine or the measurement installation.

Can one tri-axial sensor replace all vibration sensors on a machine?

Not necessarily. The three-axis measurement capability can reduce the number of sensors needed at some measurement locations, but the required sensor arrangement depends on the machine, monitored components, measurement objectives, and overall condition-monitoring architecture.



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