


Bently Nevada 3500/64M 140734-05 | Dynamic Pressure Monitor Module
Manufacturer: Bently Nevada
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Part Number: 3500/64M 140734-05
Condition:New with Original Package
Product Type: Dynamic Pressure Monitor Module
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Country of Origin: USA
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
Product Overview
The Bently Nevada 3500/64M 140734-05 is a 4-channel dynamic pressure monitor for the 3500 Series Machinery Protection System. It measures pressure fluctuations from compatible transducers, enabling real-time diagnostics of turbines, compressors, and other rotating machinery.
This module is specifically designed to detect combustion instabilities, surge, cavitation, and other pressure-related anomalies. Its compact and reliable design ensures seamless integration with Bently Nevada 3500 series systems for advanced machinery protection.
Technical Specifications
Specification | Details |
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Model Number | 3500/64M 140734-05 |
Function | Dynamic pressure monitoring |
Channels | 4 independent input channels |
Input Range | 0–100 psi |
Output Signal | 4–20 mA |
Accuracy | ±0.5% Full Scale |
Power Consumption | 15 W |
Operating Temperature | –40°C to +85°C |
Dimensions (D×W×H) | 241.3 × 24.4 × 99.1 mm |
Weight | 0.2 kg |
Reliability | MTBF > 10 years |
Country of Origin | USA |
Applications | Combustion dynamics monitoring, surge and cavitation detection, real-time pressure diagnostics in turbomachinery |
FAQs
Q1: Is the 3500/64M 140734-05 module brand new?
A1: Yes, it is brand new with original factory packaging and comes with a 12-month warranty.
Q2: How many channels does it support?
A2: This module provides 4 independent input channels for dynamic pressure monitoring.
Q3: What is the input range for the pressure signals?
A3: It supports 0–100 psi input from compatible pressure transducers.
Q4: What is the module’s output signal?
A4: It outputs a 4–20 mA linear signal for integration with control systems.
Q5: Can it detect surge or cavitation in turbines?
A5: Yes, it is specifically designed for combustion instabilities, surge, and cavitation detection.