24765-02-00 High Temperature Dual Transducer Case Expansion Transducer with Weatherproof LVDT Assembly for Thermal Growth Measurement
Description The 200200 dual-input ProTIM-R (DIN rail mount) provides 2 channels of measurement. All acceleration-to-velocity (A-V) channels condition the signal from an accelerometer and integrate it to velocity units. The low frequency A-V channels are better suited for slower speed applications. A-V with Acceleration Enveloping (AE) channels provide both integrated velocity units and advanced AE signal conditioning.
Temperature channel types include K-type thermocouples and 100W Platinum (Pt) RTDs with electrical isolation.
Each channel is independent and specified when the ProTIM is ordered. Table 1: ProTIM Measurement Types and Transducers Measurement Type Interfaced Transducer Acceleration-to-Velocity (General Purpose) 200150 Low Frequency Acceleration-to Velocity Acceleration-to-Velocity with AE K-type Thermocouple 2, 3, or 4 Wire Platinum RTD Rack Buffered Output (RBO) Process Variable (PV) Pressure Displacement 200155 200157 2001251 Industry standard Monitor Monitor 120M1644 330101/330103
Detailed Technical Parameters
According to technical specifications published by a distributor, this module falls under the Trendmaster ProTIM-R series-1. Key physical and operational parameters include:
| Parameter | Specification |
|---|---|
| Model Number | 200200-01-01-05 |
| Product Type | Programmable Controller (PC) Module / Trendmaster ProTIM-R Dual Input Module |
| Input Types | Supports analog and digital signals |
| Power Supply | 24 VDC |
| Mounting Style | DIN Rail or Rack Mount |
| Dimensions | 100.9 x 52.9 x 86.2 mm |
| Weight | 0.55 kg |
| Operating Temperature | -40°C to +70°C |
| System Compatibility | Seamlessly integrates with Bently Nevada 3500 series monitoring systems |
Application Scenario Analysis
The Bently Nevada PC module is a critical component in machinery protection and condition monitoring systems. It is designed to collect, process, and analyze data to predict potential failures-1.
Primary Application Scenarios:
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Rotating Machinery Protection: Used as the primary monitoring interface for turbines, generators, compressors, pumps, and motors. It continuously monitors critical parameters to safeguard assets.
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Vibration Analysis & Fault Diagnosis: The module acquires high-speed data from accelerometers, velocity, and displacement sensors. It employs advanced signal processing (filtering, spectral analysis) and built-in algorithms to identify specific faults, including unbalance, misalignment, and bearing wear-1.
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System Integration for Plant-Wide Monitoring: It can be integrated with larger Predictive Maintenance (PdM) systems. This allows for a consolidated view of machine health, event-based alarming, and automated responses within the plant’s Distributed Control System (DCS) or SCADA.
Industrial Environments:
The module's rugged design allows it to withstand harsh industrial applications, making it suitable for power generation, oil and gas, and heavy manufacturing environments where high reliability is required-1.
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