Bently Nevada 3500/15 129478-01 Transient Data Interface Module
This module is designed to assist in continuously collecting steady-state and transient dynamic (waveform) data from M-series monitors (such as 3500/40M, 3500/42M), and then transmitting this data to the host software for analysis and monitoring through an Ethernet link. The TDI module can capture both static and dynamic data. Although it supports static data capture itself, adding optional channels to enable disks can expand its functionality, including dynamic and high-resolution transient data collection. This dual functionality enables TDI to be applicable to various monitoring scenarios, from routine operations to detecting and analyzing transient events.
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3500/15 129478-01
Other names:
Monitoring module 3500/15 129478-01
3500/15 129478-01 Interface Module
Analog module 3500/15 129478-01
The Bently Nevada 3500/15 129478-01 Data Interface (TDI) module is a critical component in the Bently Nevada 3500 monitoring system, serving as an intermediary between the monitoring system and compatible software. This module aims to facilitate the continuous collection of steady-state and transient dynamic (waveform) data by the 3500 system and software platforms (such as 3500/40M, 3500/42M), and then transmit these data to the host software for analysis and monitoring through Ethernet links.
The
following is a detailed introduction about the module:
Basic Overview
Product Name: 3500/15 129478-01 Transient Data Interface Module (TDI)
Developer: Bently Nevada
Main function: As an interface between the 3500 monitoring system and compatible software (such as System 1 status monitoring and diagnostic software and 3500 system configuration software), responsible for data acquisition, processing, and transmission.
Description and Function
The 3500/15 129478-01 TDI module combines the functionality of the 3500/20 Rack Interface Module (RIM) with the data collection capabilities of communication processors such as TDXnet. It is installed in a slot near the 3500 rack power supply and connected to M-series monitors (such as 3500/40M, 3500/42M, etc.) to continuously collect steady-state and transient dynamic (waveform) data. Then, the data is transmitted to the host software through an Ethernet link.
The TDI module supports standard static data capture, but can be enhanced by enabling disks through optional channels to capture dynamic and high-resolution transient data. Although it provides functions common to the entire rack, it does not form part of the critical monitoring path and therefore will not affect the normal operation of the entire automatic mechanical protection monitoring system.
Specifications
Dimensions: 241.3 x 24.4 x 241.8 millimeters (9.50 x 0.96 x 9.52 inches).
Weight: 0.91 kilograms.
Working temperature range: -30 ° C to+65 ° C.
Storage temperature range: -40 ° C to+85 ° C.
Humidity: up to 95%.
Power consumption: 10.5 watts.
Data collection function: including key phase input supporting multiple events per revolution, start/slide data collection, alarm data collection including pre - and post alarm data, static value data collection, and waveform sampling of 48 channels with various sampling rates.
Supported communication protocols: BN host protocol, BN TDI protocol, front panel communication USB-B protocol.
Compliance
and Certification
This module complies with FCC, EMC, electrical safety, RoHS, cybersecurity, maritime, functional safety, and hazardous area certification (cNRTLus, ATEX/IECEx) standards.
Function and Features
Data collection:
TDI can continuously collect steady-state and transient waveform data, which is very useful for analyzing the operating status of mechanical equipment and diagnosing potential problems.
It combines the functionality of the 3500/20 Rack Interface Module (RIM) with the data collection capabilities of communication processors such as TDXnet, ensuring the comprehensiveness and accuracy of the data.
Data transmission:
Through Ethernet connection, TDI can quickly transmit the collected data to the main computer software, ensuring the real-time and accuracy of the data.
The supported speed range depends on the number of dynamic channels enabled, up to a maximum of 20 kHz.
Compatibility and Scalability:
TDI is compatible with the 3500 monitoring system and Bentley System 1TM mechanical management software, making it easy to integrate into existing industrial automation systems.
It also supports connection with M-series monitors (such as 3500/40M, 3500/42M, etc.), providing critical data for monitoring and diagnosing various rotating equipment.
Data capture capability:
The static data collection function is a standard configuration of TDI.
By using optional channels to enable disks, TDI can also capture dynamic and high-resolution transient data, which is crucial for in-depth analysis of mechanical faults and abnormal behavior.
Integrated functions:
TDI integrates communication processor functionality within the 3500 rack. Although it provides certain general functions for the entire rack, it does not belong to the critical monitoring path and has no impact on the normal operation of the entire monitoring system for automatic mechanical protection.
Physical location and interface:
TDI is located in the slot next to the 3500 rack power supply (usually occupying slot 1).
The TDI I/O module has a 2-pin connector used to connect the signal common terminal to the single point instrument ground terminal of the rack.
Control and Safety:
TDI supports four 3500 system key signals for controlling the operating mode and configuration of the rack.
It is also equipped with various indicator lights such as normal indicator light, transmit/receive LED, TM LED, etc., which are used to indicate the operating status of the module and the communication status with the host.
Key
Data collection capability: TDI module can capture both static and dynamic data. Although it supports static data capture itself, adding optional channels to enable disks can expand its functionality, including dynamic and high-resolution transient data collection. This dual functionality enables TDI to be applicable to various monitoring scenarios, from routine operations to detecting and analyzing transient events.
Integration with software: The TDI module can seamlessly integrate with compatible software, including System 1 status monitoring and diagnostic software, as well as 3500 system configuration software. This integration ensures efficient processing and analysis of collected data, providing valuable insights into the condition and performance of monitored assets.
Function of Communication Processor: By integrating the functions of the communication processor into the 3500 rack, the TDI module enhances the system's data collection capability. This integration simplifies setup and operation, reducing the complexity of managing separate communication processors and data collection devices.
Rack Placement: The TDI module is specifically designed to be located in a slot near the 3500 rack power supply. This strategic placement ensures optimal use of power resources and helps to efficiently transfer data to host software.
Non critical path operation: Although the TDI module provides functions common to the entire rack, it operates outside of the critical monitoring path. This design choice ensures that the presence or failure of modules will not have adverse effects on the main operation of the automatic mechanical protection monitoring system.
Application
scenarios
The 3500/15 129478-01 transient data interface module is widely used in the fields of industrial automation and mechanical equipment monitoring. It provides users with real-time and accurate data support through close integration with the 3500 monitoring system, which helps to timely detect and solve problems in the operation of mechanical equipment, improve production efficiency and equipment reliability.
Conclusion:
The 3500/15 129478-01 Transient Data Interface Module is an important component of the Bently Nevada 3500 Monitoring System, which enhances the system's data collection and analysis capabilities. It can capture static and dynamic data and seamlessly integrate with compatible software, making it an essential tool for effective mechanical condition monitoring and diagnosis. Whether used for standard monitoring applications or specialized settings that require high-resolution transient data capture, TDI modules can provide reliable performance and versatility.
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