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100 MHz PC Based Oscilloscope, Dual Channel, 1 GSa/s

100 MHz PC Based Oscilloscope, Dual Channel, 1 GSa/s
100 MHz PC Based Oscilloscope, Dual Channel, 1 GSa/s
100 MHz PC Based Oscilloscope, Dual Channel, 1 GSa/s
100 MHz PC Based Oscilloscope, Dual Channel, 1 GSa/s
100 MHz PC Based Oscilloscope, Dual Channel, 1 GSa/s
from
$750.95
Ex Tax: $750.95
  • Stock: In Stock
  • Model: RDDLZ-PBO-10
  • Weight: 1.00
  • SKU: RDDLZ-PBO-10

Available Options

Create unlimited custom product blocks and display them in accordions or tabs or open blocks. Each block can be assigned to all products at once or specific products according to advanced criteria.
Create unlimited custom product blocks and display them in accordions or tabs or open blocks. Each block can be assigned to all products at once or specific products according to advanced criteria.

100 MHz PC oscilloscope with 1 GSa/s sampling rate, with multiple trigger modes: edge, video, ramp, pulse width, alternate. The digital PC-based oscilloscope is suitable for portable computers, and tablet PC, and suitable for wild mobile use, and business trip use.

Specification

ModelRDDLZ-VDC-3102RDDLZ-VDC-3102L
Communication InterfaceUSB2.0

USB 2.0 (with LAN network port)

Bandwidth100 MHz
Channel2 Channel+ Multi
Sample Rate1 GSa/s
Max. Input Voltage40V(DC + AC peak)
Horizontal Scale (s/div)2ns/div - 100s/div, step by 1 - 2 - 5
Record Length10M
Input Impedance1MΩ ± 2%, in parallel with 10pF ± 5pF
Vertical Sensitivity5mV/div - 5V/div
Vertical Resolution8 bits
Trigger TypeEdge, Pulse, Video, Slope, and Alternate
Automatic MeasurementVpp, Vavg, Vrms, Frequency, Period, Vmax, Vmin, Vtop, Vbase, Vamp, Overshoot,
Pre-shoot, Rise Time, Fall Time, +Width, -Width, +Duty, -Duty, DelayA→B , DelayA→B
Waveform Math+, -, *, /, FFT
Power Supply≤6.5W
Dimension (W * H * D)190* 18* 120mm
Weight0.3 kg

 

Accessories

  • CD ROM
  • USB cable
  • Probe
  • Probe Adjust
  • Silicon Gel Case
  • Quick Guide

Dimension (mm)

Tips: Can an oscilloscope measure current?

Most oscilloscopes only directly measure voltage, not current, however, you can measure current with an oscilloscope, using one of two methods. Measure the voltage dropped across a shunt resistor: Some power supply designs may have shunt resistors built into the design for feedback.

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