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Overview
  This GD32-based digital oscilloscope operates on the principle of analog signal digitization and signal processing technology. When the signal under test is input to the oscilloscope, it is first sampled by an analog signal sampler, converting the analog signal into a digital signal. The higher the sampling frequency, the higher the digitization accuracy; therefore, the digital oscilloscope has higher resolution and more accurate waveform display.
  The digitized signal is stored in memory and can be processed and analyzed by a processor. The oscilloscope's processor can perform various digital signal processing operations and can also transmit data to a computer for further processing and analysis via a computer interface.

  The advantages of a digital oscilloscope lie in its high precision, high speed, and rich functionality. Digital oscilloscopes can acquire high-speed signals, a requirement that analog oscilloscopes cannot meet. Digital oscilloscopes can also perform more precise waveform analysis and processing, thus playing an important role in electronic design and debugging. This GD32-based digital oscilloscope also features programmability and automated testing capabilities, which can greatly improve testing efficiency and accuracy.
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