AD8267100+100PHASE5V OR15V SUPPLIES680+80AGAIN15V SUPPLIES–5dB –60+60Degrees –440+40GAIN5V SUPPLIES320+20OPEN-LOOP GAININPUT BIAS CURRENTPHASE MARGIN200RL = 1k1–20–60–40–200204060801001201401k10k100k1M10M100M1GTEMPERATURE –CFREQUENCY – Hz Figure 7. Input Bias Current vs. Temperature Figure 10. Open-Loop Gain and Phase Margin vs. Frequency 130715V1106mA –SOURCE CURRENT5V/mV –905VSINK CURRENT4703OPEN-LOOP GAIN50SHORT CIRCUIT CURRENT2301–60–40–200204060801001201401001k10kTEMPERATURE –CLOAD RESISTANCE – Figure 8. Short Circuit Current vs. Temperature Figure 11. Open-Loop Gain vs. Load Resistance 10010090808080MHz –PHASE MARGINPOSITIVE70SUPPLYDegrees –60dBNEGATIVE6060–SUPPLY50PSR40GAIN BANDWIDTHPHASE MARGIN4040UNITY GAIN BANDWIDTH3020202010–60–40–200204060801001201401001k10k100k1M10M100MTEMPERATURE –CFREQUENCY – Hz Figure 9. Unity Gain Bandwidth and Phase Margin Figure 12. Power Supply Rejection vs. Frequency vs. Temperature REV. C –5–