← Virtual Labs Instrumentation · CRO-2200D
Instrumentation Lab
Oscilloscope Bench
A genuine dual-channel cathode-ray oscilloscope and twin function generators. Set VOLTS/DIV and TIME/DIV, trigger the sweep, read amplitude and frequency straight off the graticule, switch to X-Y mode for Lissajous figures, and let the AutoMeasure unit confirm your readings. Every trace is computed from the live generator settings.
AquinScope
Dual-Channel Cathode-Ray Oscilloscope · 200 MHz
Power
CH1 2.00 V/div CH2 2.00 V/div TIME 0.50 ms/div TRIG CH1 UP 0.0 V MODE BOTH
Vertical
Horizontal
Trigger
Source
Edge
Display
Mode
Sweep
Function Gen A → CH1
SOURCE 1
Frequency1.000 kHz
Amplitude (Vpp)4.00 Vpp
DC Offset0.00 V
Phase0°
Function Gen B → CH2
SOURCE 2
Frequency1.000 kHz
Amplitude (Vpp)2.00 Vpp
DC Offset0.00 V
Phase90°
AutoMeasure
| Frequency | -- |
| Period | -- |
| Vpp | -- |
| Vrms | -- |
| Vavg (DC) | -- |
| Vmax / Vmin | -- |
CH2 − CH1 Phase / Lissajous
--
Guided Task
Free Bench
Turn the knobs and drag the sliders. Read amplitude on the vertical graticule (multiply divisions by VOLTS/DIV) and the period on the horizontal axis (divisions multiplied by TIME/DIV). Frequency equals one divided by the period. AutoMeasure on the left confirms your hand readings.
Quick Reference
GRATICULE: 10 horizontal × 8 vertical divisions.
AMPLITUDE: Vpp = (vertical divisions spanned) × (VOLTS/DIV).
PERIOD: T = (horizontal divisions per cycle) × (TIME/DIV).
FREQUENCY: f = 1 / T.
LISSAJOUS: ratio of horizontal-to-vertical tangent points gives fCH1 : fCH2.
AMPLITUDE: Vpp = (vertical divisions spanned) × (VOLTS/DIV).
PERIOD: T = (horizontal divisions per cycle) × (TIME/DIV).
FREQUENCY: f = 1 / T.
LISSAJOUS: ratio of horizontal-to-vertical tangent points gives fCH1 : fCH2.