BENTLY 3500/42M

¥5,622.00

Parameters and Specifications:

  • Type: Vibration Sensor
  • Frequency Range: Typically specified in the technical data sheet or manual, but common ranges for this type of sensor are 10 Hz to 1 kHz or more.
  • Sensitivity: Measured in mV/g or mV/m/s²; specific value depends on the model and application.
  • Operating Temperature Range: Specified in the technical data sheet or manual.
Category:

Description

Parameters and Specifications:

  • Type: Vibration Sensor
  • Frequency Range: Typically specified in the technical data sheet or manual, but common ranges for this type of sensor are 10 Hz to 1 kHz or more.
  • Sensitivity: Measured in mV/g or mV/m/s²; specific value depends on the model and application.
  • Operating Temperature Range: Specified in the technical data sheet or manual.

Dimensions and Weight:

  • Dimensions: The exact dimensions of the BENTLY 3500/42M depend on the specific model and configuration. Please refer to the technical data sheet or contact the manufacturer for precise measurements.
  • Weight: Similarly, the weight varies based on the model and accessories. Consult the technical data sheet or manufacturer for the exact weight.

Series:

  • The BENTLY 3500/42M is likely a part of the BENTLY 3500 series of vibration sensors or transducers. However, this information may vary depending on the manufacturer’s classification.

Features:

  • High Sensitivity: Provides accurate vibration measurements for condition monitoring and predictive maintenance.
  • Wide Frequency Range: Captures a broad range of vibration frequencies, suitable for various applications.
  • Rugged Construction: Designed for industrial environments, withstanding harsh conditions and mechanical stress.
  • Easy Installation: Typically offers a variety of mounting options for easy installation on machinery.
  • Compatibility: Compatible with standard data acquisition systems and analysis software.

Applications:

  • Condition Monitoring: Used to monitor the condition of rotating machinery, such as motors, pumps, fans, and turbines.
  • Predictive Maintenance: Helps identify potential problems before they become critical, enabling proactive maintenance and reducing downtime.
  • Fault Detection: Detects various fault conditions in machinery, such as imbalance, misalignment, bearing wear, and looseness.
  • Quality Control: Used in manufacturing processes to ensure product quality and reliability.

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