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OPA188 Datasheet(PDF) 8 Page - Texas Instruments

Part # OPA188
Description  Precision, Low-Noise, Rail-to-Rail Output,36-V, Zero-Drift Operational Amplifiers
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
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OPA188 Datasheet(HTML) 8 Page - Texas Instruments

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OPA188
SBOS642A – MARCH 2013 – REVISED MARCH 2013
www.ti.com
TYPICAL CHARACTERISTICS
Table 2. Characteristic Performance Measurements
DESCRIPTION
FIGURE
Offset Voltage Production Distribution
Figure 2
Offset Voltage Drift Distribution
Figure 3
Offset Voltage vs Temperature
Figure 4
Offset Voltage vs Common-Mode Voltage
Figure 5, Figure 6
Offset Voltage vs Power Supply
Figure 7
Open-Loop Gain and Phase vs Frequency
Figure 8
Closed-Loop Gain vs Frequency
Figure 9
IB and IOS vs Common-Mode Voltage
Figure 10
Input Bias Current vs Temperature
Figure 11
Output Voltage Swing vs Output Current (Maximum Supply)
Figure 12
CMRR and PSRR vs Frequency (Referred-to-Input)
Figure 13
CMRR vs Temperature
Figure 14, Figure 15
PSRR vs Temperature
Figure 16
0.1-Hz to 10-Hz Noise
Figure 17
Input Voltage Noise Spectral Density vs Frequency
Figure 18
THD+N Ratio vs Frequency
Figure 19
THD+N vs Output Amplitude
Figure 20
Quiescent Current vs Supply Voltage
Figure 21
Quiescent Current vs Temperature
Figure 22
Open-Loop Gain vs Temperature
Figure 23
Open-Loop Output Impedance vs Frequency
Figure 24
Small-Signal Overshoot vs Capacitive Load (100-mV Output Step)
Figure 25, Figure 26
No Phase Reversal
Figure 27
Positive Overload Recovery
Figure 28
Negative Overload Recovery
Figure 29
Small-Signal Step Response (100 mV)
Figure 30, Figure 31
Large-Signal Step Response
Figure 32, Figure 33
Large-Signal Settling Time (10-V Positive Step)
Figure 34
Large-Signal Settling Time (10-V Negative Step)
Figure 35
Short-Circuit Current vs Temperature
Figure 36
Maximum Output Voltage vs Frequency
Figure 37
EMIRR IN+ vs Frequency
Figure 38
8
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