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DS4024 200 MHz Digital Oscilloscope

RIGOL DS4024 200 MHz Digital Oscilloscope
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Brand:RIGOL
Warranty:3 years
User's Guide:Download
Datasheet:Download
Quick Start Guide:Download
USB Host LAN (Local Area Network)

Retail price :$2,800.00
Discount price:$2,520.00
You save:$280

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Rigol DS4024 digital oscilloscope is an optimal research and development instrument since it combines exclusive technical characteristics, wide signal analysis capabilities and innovative technologies.

Original innovative UltraVision technology developed by Rigol combines easy captured waveform navigation, high memory depth (up to 140 Mpts), perfect waveform capture rate (up to 110K Wfms/s). In this technology real-time signal record is combined with advanced signal analysis capabilities and bus signal decode function. At the same time the signal is displayed with controllable brightness (up to 256 levels) depending on the signal intensity.

Using this technology in Rigol DS4024 digital oscilloscope makes it a perfect instrument for the development and debugging of digital and analogue equipment.

DS4024 digital oscilloscope is capable of IC, RS-232, SPI, CAN, USB bus signal triggering. Besides you may add serial bus decode function to Rigol DS4024 digital oscilloscope.

RIGOL DS4024 Features and Benefits

  • 200 MHz bandwidth
  • 4 GSa/s sample rate
  • 4 Analog channels available
  • 140 million memory points, standard
  • 110,000 Waveforms per second
  • Original Ultravision technology
  • Hardware allows for real-time, continuous waveform recording and waveform analysis

Channels4
Bandwidth200 MHz
Sample rate4 GSa/s
Memory depth140 Mpts
Vertical resolution (bits)8
InterfaceUSB Host, USB Device, LAN, VGA
Display9 inches (229 mm) TFT LCD
Power supply100-240 V
Dimensions440.0 mm 218.0 mm130.0 mm

RIGOL DS4024 digital oscilloscope is a versatile, high performance oscilloscope that incorporates many of today’s most advanced technologies and processes. Featuring bandwidths between 100MHz and 500MHz, sample rates up to 4GSa/s and up to 4 analog channels, the RIGOL DS4024 digital oscilloscope is ideal for a wide variety of markets including communications, defense, aerospace, industrial electronics, R&D and educational fields.

Frequently Asked Questions

  • High voltage measurement testing are not allowed over 300 volts
  • After the oscilloscope is powered on the display remains dark, what should I do?
  • The measured voltage amplitude value is 10 times greater or smaller than the actual value
  • When changing the horizontal sweep on the digital oscilloscope at different horizontal points observed inexplicable change in the form of the same signal, why is this happening?
  • There is wave form displayed, but it is not stable

  • High voltage measurement testing are not allowed over 300 volts

    Even when you can read in a probe 600V PK CAT I. The Aktakom, Owon or Rigol oscilloscopes does not support more than 300V RMS or 400V PK. For higher voltage please contact us to request a special device.


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    After the oscilloscope is powered on the display remains dark, what should I do?

    Please implement the following fault treatment procedure.

    • Check whether the powercable is connected properly.
    • Ensure the power switch is turned on.
    • Restart the instrument after completing the checks above.
    • Ifthe oscilloscopestill can not work normally, please call for service.

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    The measured voltage amplitude value is 10 times greater or smaller than the actual value

    Check whether the channel attenuation coefficient and the attenuation coefficient of the probe used is match.
    Up

    When changing the horizontal sweep on the digital oscilloscope at different horizontal points observed inexplicable change in the form of the same signal, why is this happening?

    In fact, this is not a problem.

    Just keep in mind that you're using a digital oscilloscope, which digitizes the signal with different sampling rates depending on the selected horizontal sweep, and then connects the digitized points with strait line while restoring the real shape of the signal.

    Your first screen shows that you are measuring voltage 50 Hz with the 10 ms / div sweep and a sampling frequency of 20 kHz Ks/s

    One signal period (20 ms), digitized in this mode, 20E-03 (sec) * 20E03 (1/sec) = 400 points. This is enough to properly restore and interpolate a sine wave of 50 Hz (i.e. in a period of 20 ms).

    Normal display, with a sweep 10 ms / div:

    Distortion of the same signal at 10 s / div sweep

    Your second screen is set to sweep 10 sec / div, and sample rate on a sweep turned to 20 samples per second (20 Sa / s). I.e. one signal period 20 ms had: 20E-03 (sec) * 20 (1/sec) = 0.4 points. That means that to restore (to interpolate the points) a sine wave with less than one point in time is impossible, so you get this mess (known as "aliasing" or a false frequency) formed by the beats of the measured frequency and sampling frequency.

    In order to correctly install a data collection in a digital oscilloscope one should follow a simple rule - the sampling rate must be at least 5-10 times higher than the frequency signal, in that case you will not have the issues that we just discussed.

    This applies to all digital oscilloscopes and in no way connected to any particular make or model of oscilloscope or its probes.


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    There is wave form displayed, but it is not stable

    • Check whether the Source item in the TRIG MODE menu is in conformity with the signal channel used in the practical application.
    • Check on the trigger Type item: The common signal chooses the Edge trigger mode for Type and the video signal the Video. Only if a proper trigger mode is applied, the wave form can be displayed steadily.
    • Try to change the trigger coupling into the high frequency suppress and the low frequency suppress to smooth the high frequency or low frequency noise triggered by the interference.

    Up


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