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The VIBER X5 MKIII is designed for machine diagnostics, route-based data collection, and bearing condition monitoring.
The VIBER X5 MKIII is a portable vibration analyser and data collector designed for on-site machine condition assessment. It supports both routine monitoring routes and detailed investigations, helping maintenance teams and vibration analysts assess machinery condition and investigate potential faults. Collected data can then be transferred to VibLyze PC software for further analysis and tracking of machine condition over time, making the instrument suitable for use within a condition-based maintenance programme.
Effective machine condition assessment helps maintenance teams decide where to focus their time and resources. The VIBER X5 MKIII portable vibration analyser supports this process by helping users investigate concerns more thoroughly and carry out field inspections efficiently. Below are some of the key benefits that highlights how the analyser supports day-to-day maintenance work while allowing room for changing diagnostic needs.
The VIBER X5 MKIII provides a range of measurement and analysis functions for examining vibration, bearing condition, temperature, and machinery behaviour. Explore the product capabilities below, with optional functions identified to help you select a configuration suited to your diagnostic requirements.
Examine the frequency components of measured vibration to investigate patterns associated with machine faults and identify frequencies that require closer assessment.
Assess bearing condition and use envelope analysis to examine repetitive impact signals that can indicate developing bearing defects. Users can also listen to bearing signals while measuring.
Measure vibration amplitude and phase to compare movement at different measurement points. These relationships support a more detailed investigation of machine behaviour.
Use the internal thermal camera to view surface temperature patterns and identify areas that warrant further investigation alongside vibration measurements.
Examine how vibration changes as machine speed increases or decreases, helping investigate speed-dependent behaviour and potential resonance.
Use orbit analysis to examine motion derived from measurements in two directions. Cross-spectrum analysis supports assessment of the relationship between two vibration signals.
Use bump testing to investigate a structure’s vibration response to an impact. Synchronous averaging helps emphasise vibration linked to a rotational reference while reducing unrelated signal components.
Record measurements over time to examine changes in operating behaviour. Multimeter and process measurement functions provide additional operating information. Loop-powered 4–20 mA measurement is optional.
Collect vibration measurements from three channels simultaneously. With a compatible triaxial sensor, measure in three directions at a single location.
Examine how vibration amplitude varies over time to investigate impacts, repeating events and other signal characteristics that complement frequency-based analysis.
Perform field balancing to address rotor unbalance using the optional balancing kit, which includes a laser tachometer and supporting accessories.
Extend investigations to electrical motors using an optional current clamp and MCSA software to analyse motor current signatures.
Use compatible measurements with VibShape software to visualise structural movement, supporting investigation of how a machine or structure behaves during operation.
* Optional/Optional Kit/Optional Software: Not included in the standard package. Please enquire with our representative about the required configuration and accessories.
| Specification | Capability |
|---|---|
| Vibration Frequency Range | 0.5–32,000 Hz, depending on transducer. |
| Vibration Amplitude Range | 0–80 g, depending on transducer. |
| Measurement Accuracy | Acceleration: 0.01 g ± 1% (non-integrated). Velocity: 0.1 mm/s ± 2% (single-integrated). Displacement: 2 µm ± 3% (double-integrated). |
| FFT Resolution | 25,600 lines. |
| Sampling Rate | Up to 131,072 Hz, depending on the selected frequency range. |
| Window Functions | Hanning, Hamming, Blackman and Kaiser–Bessel. |
| AC Inputs | Standard ICP accelerometers (4 mA/24 V), velocity transducers or general-purpose AC transducers in the 0–30 V RMS range. VMI default transducers are automatically recognised. |
| DC Input | 0–5 V. |
| External Reference Input | 0.8–24 V. |
| Infrared Temperature Range | −20°C to +120°C. |
| Display | 5-inch TFT LCD; 480 × 272 pixels; 65,536 colours. |
| Storage and Memory | 4 GB microSD card; 128 MB RAM; 2 × 16 MB fast flash memory. Minimum specifications; actual specifications depend on hardware revision. |
| Battery | 6.2 Ah lithium-ion smart battery pack with charge indication. |
| Battery Operating Time | Approximately 12 hours under typical use. |
| Charging Time | Approximately 4 hours. |
| Instrument IP Rating | IP65. |
| Operating Temperature | −20°C to +70°C. |
| Storage Temperature | −30°C to +80°C. |
| Net Weight | 1.8 kg. |
Explore the latest features of the VIBER X5 MKIII below.
The VIBER X5 MKIII portable vibration analyser is developed by VMI International AB. Vibtech Genesis Pte Ltd is the official Singapore distributor for VMI.
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