User`s manual

30
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Dual-channel WaveGen built-in function/arbitary waveform generator (specifications are typical)
Sine Frequency range: 0.1 Hz to 20 MHz
Amplitude flatness: ±0.5 dB (relative to 1 kHz)
Harmonic distortion: –40 dBc
Spurious (non harmonics): –40 dBc
Total harmonic distortion: 1%
SNR (50-ohm load, 500-MHz BW): 40 dB (Vpp ≥ 0.1 V); 30 dB (Vpp < 0.1V)
Square wave /pulse Frequency range: 0.1 Hz to 20 MHz
Duty cycle: 20 to 80%
Duty cycle resolution: Larger of 1% or 10 ns
Rise/fall time: 19 ns (10 to 90%)
Overshoot: <2%
Asymmetry (at 50% DC): ±1% ± 5ns
Jitter (TIE RMS): 500 ps
Ramp/triangle wave Frequency range: 0.1 Hz to 200 kHz
Linearity: 1%
Variable symmetry: 0 to 100%
Symmetry resolution: 1%
Pulse Frequency range: 0.1 Hz to 10 MHz
Pulse width 20 ns minimum
Pulse with resolution: 10 ns
Edge time: Fixed at 19 ns (not variable)
Overshoot: <2%
Noise Bandwidth: 20 MHz typical
Sine cardinal (Sinc) Frequency range: 0.1 Hz to 1.0 MHz
Exponential rise/fall Frequency range: 0.1 Hz to 5.0 MHz
Cardiac Frequency range: 0.1 Hz to 200.0 kHz
Gaussian pulse Frequency range: 0.1 Hz to 5.0 MHz
Arbitrary Waveform length: 1 to 8,192 points
Amplitude resolution: 10 bits (including sign bit)**
Repetition rate: 0.1 Hz to 12 MHz
Sample rate: 100 MSa/s
Filter bandwidth: 20 MHz
Frequency Sine wave and ramp accuracy: 130 ppm (frequency < 10 kHz)
50 ppm (frequency > 10 kHz)
Square wave and pulse accuracy: [50 + frequency/200] ppm (frequency < 25 kHz)
50 ppm (frequency ≥ 25 kHz)
Resolution: 0.1 Hz or 4 digits, whichever is larger
Amplitude Range: minimum 20 mVpp if |offset| ≤ 0.5 Vpp into Hi-Z*
10 mVpp if |offset| ≤ 0.5 Vpp into 50Ω*
Range: maximum 10 Vpp except, 9 Vpp if Sinc or Cardiac, 7.5 Vpp if
Gaussian pulse into Hi-Z; 5 Vpp/4.5 Vpp into 50 Ω
Resolution: 100 μV or 3 digits, whichever is higher
Accuracy: 1.5% (frequency = 1 kHz)
Oscilloscope Experience Redefined:
InfiniiVision 4000 X-Series Performance Characteristics
* Sinc, cardiac and Gaussian pulse: ±1.25 V into Hi-Z; ± 625 mV into 50 Ω
** Full resolution is not available at output due to internal attenuator stepping