Computerized Vibration Analyzer | Vibrano X – 16
The Computerized Vibration Analyzer – Vibrano X – 16 analyzes machinery diagnostic experiments conducted on the base unit and other vibration setups. It includes two acceleration sensors (1~10000Hz, 100mV/g sensitivity), an optical speed sensor, and an adjustable gain measuring amplifier. This Computerized Vibration Analyzer features software with a two-channel oscilloscope, spectrum analyzer, envelope analysis, and a two-plane balancing module. It supports LAN/USB data acquisition and runs on Windows 10 and newer.
The Computerized Vibration Analyzer – Vibrano X – 16 was developed specifically to aid in analyzing machinery diagnostic experiments conducted on the base unit. It is also adaptable for various other vibration experiments. This Computerized Vibration Analyzer includes two acceleration sensors, an adjustable gain measuring amplifier, a USB interface box, and dedicated analysis software.
Product Overview
The specialized computerized vibration analyzer was developed specifically to aid in analyzing machinery diagnostic experiments conducted on the base unit. It is also adaptable for various other vibration experiments. The system includes two acceleration sensors, an adjustable gain measuring amplifier, a USB interface box, and dedicated analysis software.
The software provides several functionalities. A two-channel oscilloscope investigates time-domain signals. A two-channel spectrum analyzer examines frequency-domain signals. The software offers capabilities for measuring vibrations, envelope analysis to detect impacts and roller bearing damage, a traveling filter for capturing run-up curves, orbit display, and a balancing module for field balancing rigid rotors in one or two planes.
The software enables the application of different analytical methods to vibration signals, allowing users to effectively compare their effectiveness. This helps users understand the strengths and weaknesses of various techniques. The balancing process is clearly explained step-by-step within the software.
Featuring an intuitive user interface, the software is user-friendly and includes online help to assist users in utilizing its various functions. Measurement results can be easily printed out, and the system includes necessary cables, brackets, and fixings. This Computerized Vibration Analyzer supports data acquisition via LAN/USB and is compatible with Windows 10 and newer.
Computerized Vibration Analyzer – Vibrano X – 16, Technical Specifications
| Specification | Detail |
|---|---|
| Application | Computerized vibration analyzer for displaying and analyzing experiments conducted with the base unit |
| Acceleration Sensors | Two, for measuring vibration displacement, velocity, and acceleration |
| Speed Sensor | Optical sensor used for speed measurement |
| Software Capabilities | Two-channel oscilloscope, two-channel FFT analyzer, envelope analysis, run-up curve and order analysis, and two-plane field balancing |
| Measuring Amplifier | Two-channel, with adjustable gain |
| Displacement Sensor Option | Option to connect two displacement sensors (optional) |
| Application Range | Designed for various vibration measurement applications |
| Storage | Stackable storage system for organizing components |
| Software Compatibility | Supports data acquisition via LAN/USB, compatible with Windows 10 and newer |
Technical Data
Acceleration Sensors
| Parameter | Value |
|---|---|
| Frequency range | 1~10000Hz |
| Sensitivity | 100mV/g |
| Resonance frequency | 25kHz |
Optical Speed Sensor
| Parameter | Value |
|---|---|
| Sensing distance | 3~150mm |
| Laser class | II |
| Wave length | 650nm |
Measuring Amplifier
| Parameter | Value |
|---|---|
| Adjustable gain | x1, x10, x100 |
| Power supply | Powered by 12VDC power supply unit |
| L x W x H | 230x220x80mm |
DAQ Box
| Parameter | Value |
|---|---|
| Analogue inputs | 16x |
| Analogue outputs | 2x |
| Digital in/out | Each 4x digital in/out |
Key Features
- Core Function: this Computerized Vibration Analyzer analyzes machinery diagnostic experiments on the base unit and other vibration setups
- Acceleration Sensors: two included, frequency range 1~10000Hz, sensitivity 100mV/g, resonance frequency 25kHz
- Speed Sensor: optical, sensing distance 3~150mm, laser class II, wavelength 650nm
- Oscilloscope Function: two-channel, for time-domain signal investigation
- Spectrum Analyzer: two-channel, for frequency-domain signal examination
- Envelope Analysis: detects impacts and roller bearing damage
- Run-up Curve Capture: traveling filter function included
- Orbit Display: included in software functionality
- Balancing Module: field balancing of rigid rotors in one or two planes, with step-by-step guidance
- Measuring Amplifier: two-channel, adjustable gain x1, x10, x100
- Optional Expansion: connection for two displacement sensors
- Storage: stackable storage system for organizing components
- Software Interface: intuitive, user-friendly, includes online help and print output
- Connectivity: LAN/USB data acquisition, compatible with Windows 10 and newer
Experiments
- Understanding vibration signal characteristics
- Proper use of FFT (Fast Fourier Transform) analysis
- Measuring speed, vibration displacement, velocity, and acceleration
- Evaluating the vibration condition of machinery
- Analyzing roller bearings and gear damage using envelope spectra
- Detecting shaft cracks using run-up curves and order analysis
- Measuring imbalance vibrations and performing field balancing of rigid rotors in one and two planes
Construction and Design
The Computerized Vibration Analyzer – Vibrano X – 16 is built around two acceleration sensors, an adjustable gain measuring amplifier, a USB interface box, and dedicated analysis software. The acceleration sensors operate across a frequency range of 1~10000Hz, with a sensitivity of 100mV/g and resonance frequency of 25kHz. An optical speed sensor, laser class II with a wavelength of 650nm, measures speed at a sensing distance of 3~150mm.
The measuring amplifier offers adjustable gain of x1, x10, or x100, powered by a 12VDC power supply unit, with dimensions of 230x220x80mm. The DAQ box provides 16x analogue inputs, 2x analogue outputs, and 4x digital in/out channels each. This Computerized Vibration Analyzer includes a stackable storage system for organizing all components and supports data acquisition via LAN/USB, running on Windows 10 and newer environments.
Software
DAQ software specially designed in National Instrument™, LabVIEW™ environment to measure and calculate the results of the apparatus. While using the software, a set of electronic sensors is included. The software can be run with any Windows™ environment. Software functionalities include a two-channel oscilloscope, two-channel FFT analyzer, envelope analysis, run-up curve and order analysis, and two-plane field balancing, all delivered through an intuitive user interface with online help.
Optional Accessories
- Two displacement sensors (optional connection)
Scope of Delivery
- 1 Measuring amplifier
- 2 Acceleration sensors
- 1 Speed sensor with holder and reflective tape
- 1 Instructional Manual
Q: What is the Computerized Vibration Analyzer – Vibrano X – 16 used for?
A: It is used to analyze machinery diagnostic experiments conducted on the base unit and is also adaptable for various other vibration experiments.
Q: What software functions are included?
A: The software includes a two-channel oscilloscope, two-channel spectrum analyzer, envelope analysis, a traveling filter for run-up curves, orbit display, and a balancing module for one or two plane rotor balancing.
Q: What is the frequency range of the acceleration sensors?
A: The acceleration sensors operate across a frequency range of 1~10000Hz, with a sensitivity of 100mV/g and resonance frequency of 25kHz.
Q: Can additional sensors be connected to this system?
A: Yes, there is an option to connect two displacement sensors, available as an optional accessory.
Q: What operating system is required for the software?
A: The software supports data acquisition via LAN/USB and is compatible with Windows 10 and newer.
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