The GDS-3000A
series is the flagship
product of GW Instek's new generation digital storage oscilloscope.
Its highest frequency
bandwidth has been elevated to 650MHz, and the 350MHz model is also
available. The memory
depth of each channel is up to 200Mpts.
The sampling rate is 5GSa/s interleaved. The display is 10.2" TFT
LCD and the RGB display
output is 8 bits each, allowing users to clearly analyze the
strength distribution of the
measured signal. The models include two-channel and four-channel
selections and an optional
16-channel logic analyzer.
GDS-3000A is equipped with a standard dual-channel 25MHz arbitrary
waveform generator.
Users can select the arbitrary waveform function to store the signal
measured by the analog
channel or directly output it from the signal generator.
This function allows users to conveniently generate various types of
measured signals to simulate
diversified signal outputs. The frequency response analysis function
(Bode Plot) is also equipped,
which can be applied to product circuit and component characteristic
verification and analysis,
including RLC circuit design, filter design and amplifier design
verification and analysis.
The GDS-3000A
series is the flagship
product of GW Instek's new generation digital storage oscilloscope.
Its highest frequency
bandwidth has been elevated to 650MHz, and the 350MHz model is also
available. The memory
depth of each channel is up to 200Mpts.
The sampling rate is 5GSa/s interleaved. The display is 10.2" TFT
LCD and the RGB display
output is 8 bits each, allowing users to clearly analyze the
strength distribution of the
measured signal. The models include two-channel and four-channel
selections and an optional
16-channel logic analyzer.
GDS-3000A is equipped with a standard dual-channel 25MHz arbitrary
waveform generator.
Users can select the arbitrary waveform function to store the signal
measured by the analog
channel or directly output it from the signal generator.
This function allows users to conveniently generate various types of
measured signals to simulate
diversified signal outputs. The frequency response analysis function
(Bode Plot) is also equipped,
which can be applied to product circuit and component characteristic
verification and analysis,
including RLC circuit design, filter design and amplifier design
verification and analysis.