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Display | Color LCD |
---|---|
Battery Life | Up to 10 hours |
Data Transfer | USB, Bluetooth |
Accuracy | ±5% |
Power Supply | Rechargeable Li-ion battery |
Operating Temperature | -10°C to +50°C |
Weight | 1.2 kg |
Measurement Methods | Balancing |
Type | Portable Vibration Analyzer |
Spectral Range | 2 Hz to 20 kHz |
Provides a detailed description of the Leonova Emerald device and its components.
Instructions on how to charge the instrument's rechargeable battery pack.
Explains the device's interface, navigation keys, and menu operations.
Covers general instrument settings, including units, language, and display options.
Configuration of units, icons, layout, and power saving features.
Process for registering and configuring vibration and shock pulse transducers.
Connecting Leonova to a computer for data transfer and management.
Procedure for updating the Leonova instrument software.
Explains different operational modes for data logging and measurements.
Testing signal integrity between transducer and instrument.
Using pre-configured settings for quick measurements without saving.
Downloading and executing measurement routes from Condmaster software.
Analyzing frequency data with zoom, cursor, and display options.
Calculating rotational speed from vibration spectrum data.
Procedures for measuring rotational speed using optical or contact methods.
Measuring vibration levels based on ISO standards for machine condition.
Setting up vibration measurements specific to ISO 10816 standards.
Classifying machines according to ISO 10816 standards.
Performing analysis on electrical motor current using a current clamp.
Introduction to SPM HD, dBm/dBc, LR/HR, and SPM Spectrum methods.
Guidelines for selecting optimal locations for shock pulse measurements.
Details on required transducers, cables, and accessories for shock pulse measurements.
Interpreting shock pulse results using condition scales and status indicators.
Performing spectral analysis of shock pulse signals for fault identification.
Describes methods like ISO 10816, EVAM, FFT, and HD ENV for vibration analysis.
Guidelines for selecting representative locations for vibration measurements.
Setting up vibration measurement parameters specific to the ISO 10816 standard.
Creating and configuring vibration measurement tasks.
Configuring detailed parameters for vibration measurements like frequency and filters.
Setting up HD ENV measurements for early fault detection.
Explains single plane balancing methods: 4-run and 2-run.
Lists necessary transducers, cables, and accessories for rotor balancing.
Procedures for measuring and analyzing rotor unbalance.
Performing measurements with trial weights to determine correction.
Standard for permissible residual unbalance in rotors.