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20 MHz Digital Oscilloscope, 2 Channels, 100 MSa/s

Dual channel digital oscilloscope with 20 MHz bandwidth, max. real-time sample rate up to 100 MSa/s. The digital oscilloscope with FFT display function can analyze the spectral characteristics of the signal.
SKU: CCHN-SCOPE-20M
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Delivery date: 6-25 days

Digital storage oscilloscope with 20 MHz bandwidth, 2 channels, 100 MSa/s sampling rate, 7 inches color LCD screen. The oscilloscope with innovative design, compact appearance, and abundant functionalities together facilitate people to easily solve complex measurement issues.

Specification

Model CCHN-NDS-1022S
Bandwidth 20 MHz
Channel 2 Channel
Sample rate 100 MSa/s
Acquisition model Sample, Peak detect
Record length 10K
Display 7 inch LCD
Waveform refresh rate 10000 wfrms/s
Input coupling DC, AC, Ground
Probe attenuation 1X, 10X, 100X, 1000X
Input Impedance 1MΩ ± 2%, in parallel with 20pF ± 5pF
Max. input voltage 400V (DC+AC, PK - PK)
Bandwidth limit(typical) 20MHz/ Full bandwidth
Sampling rate range 5ns/div ~ 1000s/div, step by 1-2-5
Vertical Resolution 8 bits
Sensitivity Resolution 5mV/div~5V/div
Low Frequency(-3db) ≥10 Hz (at input, AC coupling)
Rise time (at input, Typical) ≤17.5ns
Trigger type Edge
Trigger model Auto, Normal, Single
Trigger level range ±6 div from the screen center
Automatic measurement Vpp, Vavg, Vrms, Frequency, Period, Vmax, Vmin, Vtop, Vbase, Vamp, Overshoot,
Preshoot, Rise Time, Fall Time, +Width, -Width, +Duty, -Duty, DelayA→B , DelayA→B
Cursor measurement ΔV, ΔT, ΔT&ΔV between cursors,auto cursor
Dimension 301*152*70mm
Weight 1.1kg


Accessories

  • Power cable
  • USB cable
  • Probe
  • Probe Adjust
  • Quick Guide

Dimension

Dimension of 20 MHz digital scilloscope

Details

20MHz Digital Oscilloscope Details.jpg

Tips: What is a digital oscilloscope used for?

The oscilloscope is used for electronics measurements, particularly for waveform measurements on analog circuits. The principle is that a CRT beam is deflected horizontally by a sawtooth waveform, the timebase, while the vertical deflection is caused by an input signal.