at TA = 25°C,
VS = ±8 V, VCM = VS / 2, RLOAD = 10 kΩ
connected to VS / 2, and CL = 100 pF (unless otherwise noted)

| Distribution from 13, 481 amplifiers; TA = 25°C |
Figure 6-1 Offset Voltage Production Distribution
| VCM = V+ |
| Each color represents one sample device. |
Figure 6-3 Offset Voltage
vs Temperature
| TA = 25°C |
| Each color represents one sample device. |
Figure 6-5 Offset Voltage
vs Common-Mode Voltage
| TA =
125°C |
| Each color
represents one sample device. |
Figure 6-7 Offset Voltage vs Common-Mode Voltage
| VCM =
V– |
| Each color
represents one sample device. |
Figure 6-9 Offset Voltage vs Power Supply
Figure 6-11 Closed-Loop Gain and Phase vs Frequency
Figure 6-13 Input Bias Current vs Temperature
Figure 6-15 Output Voltage
Swing vs Output Current (Sinking)
| VS = 5 V,
RL connected to V+ |
Figure 6-17 Output Voltage
Swing vs Output Current (Sinking)
Figure 6-19 CMRR vs Temperature (dB)
Figure 6-21 0.1-Hz to 10-Hz Noise
| BW = 80 kHz, VOUT = 3.5 VRMS |
Figure 6-23 THD+N Ratio vs Frequency
Figure 6-25 Quiescent Current per
Channel vs Supply Voltage
Figure 6-27 Open-Loop Voltage Gain vs Temperature (dB)
| G = –1, 100-mV output step |
Figure 6-29 Small-Signal Overshoot vs Capacitive Load
| G = –1, 100-mV output step |
Figure 6-31 Small-Signal Overshoot vs Capacitive Load
Figure 6-33 Positive Overload Recovery
| CL = 20 pF, G = 1, 20-mV step response |
Figure 6-35 Small-Signal Step Response
Figure 6-37 Large-Signal Step Response (Falling)
Figure 6-39 Large-Signal Step Response
Figure 6-41 Maximum Output Voltage vs Frequency
Figure 6-43 EMIRR (Electromagnetic Interference Rejection Ratio) vs Frequency
| Distribution from 175 amplifiers |
Figure 6-2 Offset Voltage
Drift Distribution
| VCM = V– |
| Each color represents one sample device. |
Figure 6-4 Offset Voltage
vs Temperature
| TA = 25°C |
| Each color represents one sample device. |
Figure 6-6 Offset Voltage
vs Common-Mode Voltage
(Transition Region)
| TA =
–40°C |
| Each color
represents one sample device. |
Figure 6-8 Offset Voltage vs Common-Mode Voltage
Figure 6-10 Open-Loop Gain
and Phase vs Frequency
Figure 6-12 Input Bias Current vs Common-Mode Voltage
Figure 6-14 Output Voltage
Swing vs Output Current (Sourcing)
| VS = 5 V, RL connected
to V– |
Figure 6-16 Output Voltage Swing vs Output Current (Sourcing)
Figure 6-18 CMRR and PSRR vs Frequency
Figure 6-20 PSRR vs Temperature (dB)
Figure 6-22 Input Voltage Noise Spectral Density vs Frequency
Figure 6-24 THD+N vs Output
Amplitude
Figure 6-26 Quiescent
Current per Channel vs Temperature
Figure 6-28 Open-Loop Output Impedance vs Frequency
| G = 1, 100-mV output step |
Figure 6-30 Small-Signal Overshoot vs Capacitive Load
Figure 6-32 No Phase
Reversal
Figure 6-34 Negative Overload Recovery
| RL = 1 kΩ, CL = 20 pF, G = –1, 10-mV step response |
Figure 6-36 Small-Signal Step Response
Figure 6-38 Large-Signal Step Response (Rising)
Figure 6-40 Short-Circuit Current vs Temperature
Figure 6-42 Channel
Separation vs Frequency