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VT DSO-2A20 Manual Rev. 1.1
Virtins Technology
(11)
IMDccif: IMD CCIF2 (19 kHz + 20 kHz, 1:1) (Avg. 10)
A 19 kHz and a 20 kHz sine waves mixed at an amplitude ratio of 1:1 will be generated
by pressing the start button of the signal generator. The mixed signal will be injected into
the DUT (Device Under Test), and the response of the DUT will be captured and
analyzed by the oscilloscope and spectrum analyzer. The CCIF2 IMD value of the DUT
will be measured and displayed.
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FRwns: Magnitude Frequency Response (White Noise, Streaming Mode, Avg. 30)
White noise will be generated by pressing the start button of the signal generator. The
white noise will be injected into the DUT (Device Under Test), and the response of the
DUT will be captured and analyzed by the oscilloscope and spectrum analyzer. The curve
in the spectrum analyzer indicates the magnitude frequency response of the DUT.
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FRwnd: Magnitude Frequency Response (White Noise, DDS Mode, Avg. 30)
White noise will be generated by pressing the start button of the signal generator. The
white noise will be injected into the DUT (Device Under Test), and the response of the
DUT will be captured and analyzed by the oscilloscope and spectrum analyzer. The curve
in the spectrum analyzer indicates the magnitude frequency response of the DUT.
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FRmls: Magnitude Frequency Response (MLS, Streaming Mode, Avg. 30)
MLS (Maximum Length Sequence) will be generated by pressing the start button of the
signal generator. The MLS signal will be injected into the DUT (Device Under Test), and
the response of the DUT will be captured and analyzed by the oscilloscope and spectrum
analyzer. The curve in the spectrum analyzer indicates the magnitude frequency response
of the DUT.
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FRmld: Magnitude Frequency Response (MLS, DDS Mode, Avg. 30)
MLS (Maximum Length Sequence) will be generated by pressing the start button of the
signal generator. The MLS signal will be injected into the DUT (Device Under Test), and
the response of the DUT will be captured and analyzed by the oscilloscope and spectrum
analyzer. The curve in the spectrum analyzer indicates the magnitude frequency response
of the DUT.
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FRswLin: Magnitude Frequency Response (Frequency Sweep, Linear)
A 0.4-second 10Hz-to-25kHz linear frequency swept sine wave will be generated once by
pressing the start button of the signal generator. The signal will be injected into the DUT
(Device Under Test), and the response of the DUT will be captured by the oscilloscope
and spectrum analyzer. The curve in the spectrum analyzer indicates the magnitude
frequency response of the DUT. Note that you may have to adjust the trigger level so that
the oscilloscope will be triggered just upon the start of the sweep.
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FRswLog: Magnitude Frequency Response (Frequency Sweep, Log)
A 0.4-second 10Hz-to-25kHz logarithmic frequency swept sine wave will be generated
once by pressing the start button of the signal generator. The signal will be injected into
the DUT (Device Under Test), and the response of the DUT will be captured by the
oscilloscope and spectrum analyzer. The curve in the spectrum analyzer indicates the
magnitude frequency response of the DUT. Note that you may have to adjust the trigger
level so that the oscilloscope will be triggered just upon the start of the sweep.
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