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600 MHz Digital Oscilloscope, 2/4 Channels, 5 GSa/s


$6074.58
The low cost digital storage oscilloscope is designed and produced by RIGOL with up to 600 MHz bandwith, 5 GSa/s sample rate,
SKU: CHN-SCOPE-600M
Free Shipping Worldwide
Delivery date: 6-12 days

Features

  • 600 MHz bandwidth digital oscilloscope with 2 (4) channels
  • Max. real-time sample rate up to 5 GSa/s
  • Standard 140 Mpts deep memory
  • Up to 180,000 waveforms per second capture rate
  • Up to 200,000 frames for waveform record and replay
  • A variety of trigger functions and automatic measurements with statistics
  • 10.1 inch WVGA (800X480) display

Models and Key Specifications

Brand NameRIGOL
ModelDS6062DS6064
Number of Analog Channels24
Bandwidth600 MHz
Max. Real-time Sample RateUp to 5 GSa/s
Max. Memory DepthUp to 140 Mpts
Max. Waveform Capture RateUp to 180,000 wfms/s per sencond
Real-time, Hardware Waveform Recording, Playback, and Analysis FunctionsAnalog channel up to 200,000 frames
Standard probes600 MHz Bandwidth Passive Probes, 2 sets for 2 channel model, 4 sets for 4 channel model
DimensionWidth x Height x Depth = 399 mm x 255.3 mm x 123.8 mm
Weight7 Kg (Package Included)
Packing Included1 x Digital Oscilloscope; 2 (4) x Probes; 1 x USB Cable; 1 x Power Cord; 1 x Quick Guide

RIGOl DS6000 Series Digital Oscilloscope Specs PDF

Digital Oscilloscope Detail
DS6000 digital oscilloscope detailTips: How does an oscilloscope measure voltage?
The oscilloscope can measure the voltage amplitude of various waveforms. It can measure both DC voltage and sinusoidal voltage as well as the amplitude of pulsed or non-sinusoidal voltages. What is more useful is that it can measure the voltage amplitude of each part of a pulse voltage waveform, such as the amount of impulse or the decrease in the top.

The comparative measurement method uses a known standard voltage waveform to compare with the measured voltage waveform to obtain the measured voltage value.

The measured voltage Vx is input to the oscilloscope's Y-axis channel, adjust the sensitivity of the Y axis, select the switch "V/div" and its fine adjustment knob, so that the screen displays a convenient measurement height Hx and make records, and “V/div” switch and the fine adjustment knob position remains unchanged. Remove the voltage under test, input a known adjustable standard voltage Vs into the Y-axis, and adjust the output amplitude of the standard voltage so that it shows the same amplitude as the measured voltage. At this point, the standard voltage output amplitude is equal to the measured voltage amplitude. The comparison method measures the voltage to avoid vertical system errors and errors, thereby improving the measurement accuracy.