at VS+ = 5 V,
VS– = –5 V, RF = 0 Ω for Gain = 1 V/V, otherwise
RF = 1 kΩ for other gains, CL = 1 pF, RL = 2 kΩ
referenced to mid-supply, G = 1 V/V, input and output referenced to mid-supply, and
TA ≅ 25°C (unless otherwise noted)
Figure 7-1 Small-Signal Frequency Response vs Gain Figure 7-3 Frequency Response vs Load Capacitance Figure 7-5 Frequency Response vs Ambient Temperature Figure 7-7 Large-Signal Frequency Response vs Gain Figure 7-9 Harmonic Distortion vs Frequency Figure 7-11 Small-Signal Transient Response Figure 7-13 Input
Overdrive Recovery Figure 7-15 Input
Offset Voltage vs Input Common-Mode Voltage Figure 7-17 Output Voltage vs Load Current Figure 7-19 Quiescent Current
Distribution Figure 7-21 Input Offset Voltage
Distribution
32 units, μ = −0.02 μV/°C, σ
= 0.98 μV/°C, DBV-6 package |
Figure 7-23 Input Offset Voltage Drift
DistributionFigure 7-25 Input Bias Current vs
Ambient Temperature Figure 7-27 Turn-On Time to DC
Input
μ = 1.86 μA, σ = 0.076
μA |
Figure 7-29 Power-Down Quiescent
Current DistributionFigure 7-2 Small-Signal Frequency Response vs Output Load Figure 7-4 Small-Signal Response Flatness vs Gain Figure 7-6 Frequency Response vs Output Voltage Figure 7-8 Frequency Response vs Ambient Temperature Figure 7-10 Harmonic Distortion vs Gain Figure 7-12 Large-Signal Transient Response Figure 7-14 Output Overdrive Recovery Figure 7-16 Input
Bias Current vs Input Common-Mode Voltage
Output saturated and then
short-circuited to opposite supply |
Figure 7-18 Output Short-Circuit Current vs Ambient TemperatureFigure 7-20 Input Bias Current
Distribution
35 units, μ =-0.26 μV/°C, σ =
0.49 μV/°C, DGK package |
Figure 7-22 Input Offset Voltage Drift
DistributionFigure 7-24 Quiescent Current vs
Ambient Temperature
Normalized to 25°C values, 35
units, DGK package |
Figure 7-26 Input Offset Voltage vs
Ambient TemperatureFigure 7-28 Turn-Off Time to DC
Input Figure 7-30 Power-Down IQ
vs Ambient Temperature