Digital Storage Oscilloscopes

Digital Storage Oscilloscopes (DSOs) are advanced electronic test and measurement instruments used to observe, analyze, and store electrical signals with high precision. By converting analog signals into digital data, DSOs enable accurate waveform capture, long-term storage, and detailed analysis, making them essential tools in electronics laboratories, R&D centers, educational institutions, and industrial applications.

Equipped with high sampling rates, wide bandwidth, and deep memory depth, Digital Storage Oscilloscopes can capture fast transient events and complex waveforms that are difficult to observe with analog oscilloscopes. The large LCD display provides clear visualization of voltage signals over time, while built-in measurement functions allow users to quickly analyze parameters such as frequency, amplitude, rise time, and duty cycle.

Product Information:-

Digital Storage Oscilloscope is an essential piece of equipment used in science labs to observe and measure electrical signals. Unlike analog oscilloscopes, DSOs digitize incoming signals and store them in memory for analysis.troubleshooting signal issues, analyzing transient events, and conducting experiments in physics, engineering, and communication systems.

Determines the frequency range the oscilloscope can accurately measure.Higher sample rates provide better resolution for capturing fast signals.Allows storage of a large number of samples for detailed signal analysis.Offers flexibility for analyzing signals of different types and frequencies.High-resolution color display for clear waveform viewing.FFT analysis for frequency domain measurements.

Features:-

  • High bandwidth and fast real-time sampling rate for accurate capture of fast transient signals
  • Large high-resolution LCD/TFT display for clear waveform visualization and analysis
  • Digital storage capability allows saving, recalling, and comparing waveforms
  • Advanced triggering modes (edge, pulse, video, alternate) for precise signal capture
  • Automatic measurements for voltage, frequency, period, rise/fall time, and duty cycle
  • Deep memory depth ensures detailed waveform acquisition and long signal records
  • Multiple input channels enable simultaneous measurement of different signals

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