at TA ≅ 25°C, VS
= ±15 V, RF = 1.21 kΩ, G = +2 V/V, and RL = 100 Ω (unless
otherwise noted)
Figure 7-1 Noninverting Small-Signal Frequency Response Figure 7-3 Inverting Small-Signal Frequency Response Figure 7-5 Noninverting Large-Signal Frequency Response
VOUT = 200 mVPP, Gain = 5
V/V, RF = 1 kΩ |
Figure 7-7 Capacitive Load Frequency ResponseFigure 7-9 Harmonic Distortion vs
Frequency
Gain
= 5 V/V, RF = 1 kΩ, f = 1 MHz |
Figure 7-11 Harmonic Distortion vs Output Voltage Swing
Gain
= 1 V/V, RF = 1.78 kΩ |
Figure 7-13 Slew
Rate vs Output Voltage StepFigure 7-15 Slew
Rate vs Output Voltage Step Figure 7-17 Settling Time Figure 7-19 Quiescent Current vs Supply Voltage Figure 7-21 Input
Bias and Offset Current vs Case Temperature Figure 7-23 Transimpedance vs Frequency Figure 7-25 Noninverting Small-Signal Transient Response
Gain
= -5 V/V, RF = 909 Ω |
Figure 7-27 Inverting Large-Signal Transient ResponseFigure 7-29 Closed-Loop Output Impedance vs Frequency Figure 7-31 Turnon and Turnoff Time Delay Figure 7-2 Noninverting Small-Signal Frequency Response Figure 7-4 0.1-db Gain Flatness Frequency Response Figure 7-6 Inverting Large-Signal Frequency Response Figure 7-8 Recommended RISO vs Capacitive Load Figure 7-10 Harmonic Distortion vs
Frequency
Gain
= 5 V/V, RF = 1 kΩ, f = 8 MHz |
Figure 7-12 Harmonic Distortion vs Output Voltage SwingFigure 7-14 Slew
Rate vs Output Voltage Step Figure 7-16 Noise
vs Frequency Figure 7-18 Settling Time Figure 7-20 Output Voltage vs Load Resistance Figure 7-22 Input
Offset Voltage vs Case Temperature Figure 7-24 Rejection Ratio vs Frequency
Gain
= -5 V/V, RF = 909 Ω |
Figure 7-26 Inverting Large-Signal Transient ResponseFigure 7-28 Output Overdrive Recovery Time Figure 7-30 Power-Down Quiescent Current vs Supply Voltage