Product Introduction
Bently Nevada 2155/00‑11‑03‑00‑01‑11‑11‑11‑11‑11‑10 TDXnet Transient Data Interfac is an interface device used for collecting, processing and transmitting critical dynamic data (transient and steady-state data) during the operation of industrial equipment to the monitoring system. It is an important component of modern industrial-grade condition monitoring and protection solutions.
Technical Specifications
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Manufacture |
BENTLY NEVADA |
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Model |
2155/00 |
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Part Number |
2155/00-11-03-00-01-11-11-11-11-11-10 |
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Description |
TDXnet Transient Data Interface |
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Origin |
USA |
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Dimension |
38*22*26cm |
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Weight |
8kg |
Main features
Real-time transient and steady-state data processing
2155/00‑11‑03‑00‑01‑11‑11‑11‑11‑11‑11‑10 (Transient Data Interface) Can accurately collect dynamic signals such as transient vibration, shock and temperature changes of industrial equipment during startup, shutdown and operation stages.
High-quality data transmission and integration capabilities
The 2155/00 TDXnet transient data interface module features a fast and stable data transmission path, which can seamlessly connect with the control system and monitoring software, ensuring that critical data is promptly delivered to the analysis platform or monitoring host.
The system has strong compatibility.
2155/00‑11‑03‑00‑01‑11‑11‑11‑11‑11‑11‑10 is compatible with the entire series of monitoring equipment from Bently Nevada and third-party DCS/PLC systems, helping to build a reliable equipment status monitoring framework.
Preprocessing and data augmentation functions
Built-in filtering, noise suppression, and feature extraction functions enhance the data collected through the Transient Data Interface, making it more conducive to subsequent analysis and diagnostic decision-making.
High reliability and durability design
This model of equipment uses industrial-grade electronic components and a stable structure, featuring strong resistance to vibration and interference. It can operate stably for a long time in factory-level environments.
Products Advantages
✅ Enhance monitoring accuracy
With the high-resolution acquisition capability of the 2155/00 series transient data interface, it can capture the critical transient data of the equipment operation, providing a more accurate basis for condition assessment.
✅ Industry integration ease of use
High compatibility with Bently Nevada monitoring system and mainstream PLC/DCS control platforms, simplifying the integration deployment process.
✅ Enhance fault diagnosis capabilities
The preprocessing data function reduces noise interference and improves the effectiveness and response speed of fault analysis.
✅ Industrial-grade stability
Designed to operate reliably in harsh conditions such as vibration and electromagnetic interference, suitable for long-term monitoring strategies.
FAQ
Q1:What is the core function of this product?
A1: The Bently Nevada 2155/00-11-03-00-01-11-11-11-11-11-10 Transient Data Interface is mainly used for high-resolution, low-latency collection, processing, and transmission of dynamic data from industrial equipment, supporting condition monitoring and fault diagnosis.
Q2: How is it different from the traditional data acquisition module?
A2: Compared to the basic acquisition module, this Transient Data Interface focuses on capturing transient events (such as the moment of start/stop, shock vibration, etc.), and can provide more comprehensive instrument-level dynamic data support.
Q3: Does this interface module require separate software support?
A3: It is usually used in conjunction with Bently Nevada's monitoring/analysis software, and can also be output to third-party DCS/PLC systems for further analysis.
Q4: Is it suitable for harsh industrial environments?
A4: Yes, this model is designed for industrial use and features resistance to vibration and high stability. It operates reliably in typical industrial environments.
Q5: Is it suitable for retrofitting the old system?
A5: It can be integrated with the old system through a compatibility interface, but it is recommended to conduct an assessment based on the actual communication protocol and control architecture of the system.













