AD8131000700VS = 6 15V900RL = 500 V 600800500G = +10700ss m m 600400G = –1500G = +10300400G = –1SLEW RATE – V/SLEW RATE – V/300G = +2200G = +2200100100G = +1G = +100 01.53.04.56.07.59.010.512.013.515.0012345678910OUTPUT STEP SIZE – V p-pSUPPLY VOLTAGE – 6 Volts Figure 22. Slew Rate vs. Output Step Size Figure 25. Maximum Slew Rate vs. Supply Voltage 2V50ns5 00 m V2 0n s100 AAA A AA A 1 00VIN 9090 A AAA AA A VIN AA A AA AA AAA A AA A AA A A AAA A 101 0VOUT0% A A VOUT0 %2V AA AA A AAA A A 5 0 0m V Figure 23. Large Signal Pulse Response, Gain = +1, Figure 26. Small Signal Pulse Response, Gain = +1, (RF = 750 Ω, RL = 150 Ω, VS = ±5 V) (RF = 750 Ω, RL = 150 Ω, VS = ±5 V) +90PHASERL = 150 V V0S = 6 15V140–903V5V 6 5V120+1–180GAIN1000–270PHASE SHIFT – DegreesVR–1S = 6 15V80RF = 750 V F = 866 V 3V–260RF = 1k V –35V 6 5V40–3dB BANDWIDTH – MHz–4CLOSED-LOOP GAIN – dB –5–61101001000246810121416SUPPLY VOLTAGE – 6 VoltsFREQUENCY – MHz Figure 24. Closed-Loop Gain and Phase vs. Frequency, Figure 27. –3 dB Bandwidth vs. Supply Voltage, G = +1 G = +1 –10– REV. B