Data SheetAD8615/AD8616/AD8618500VS = ±2.5VVS = 2.7VVIN = 2V p-p400TA = 25°CAV = 10300V) µ)(200EIVG/DAVT100L(2O VGE0AETTSLF –100FVOO T –200 PU IN –300–400–500 24 7 0 00.30.60.91.21.51.82.12.42.7 8- 02 8- TIME (200ns/DIV) 64 64 04 COMMON-MODE VOLTAGE (V) 04 Figure 24. Settling Time Figure 27. Input Offset Voltage vs. Common-Mode Voltage (200 Units, Five Wafer Lots Including Process Skews) 500VS = 2.7VVS = 3.5V400TA = 25°C)300V µ) V200E ( G/DIAVTµ100L(1 EVO0TAG TSELF –100OFVO T –200 PU IN –300–400–500 5 02 00.51.01.52.02.53.03.5 8 8- 02 8- TIME (1s/DIV) 64 04 COMMON-MODE VOLTAGE (V) 64 04 Figure 25. 0.1 Hz to 10 Hz Input Voltage Noise Figure 28. Input Offset Voltage vs. Common-Mode Voltage (200 Units, Five Wafer Lots Including Process Skews) 14001000VS = 2.7VVTS = ±1.35VA = 25°C1200TVA = 25°CCM = 0V TO 2.7VS100R 1000LIFIEV)P800M(m TA FOU10OV600R–ESYSOURCEBV400SINKNUM120000.1 9 –700–500–300–100100300500700 6 0.0010.010.1110 02 8- 02 I 64 OFFSET VOLTAGE (µV) 8- LOAD (mA) 04 464 0 Figure 26. Input Offset Voltage Distribution Figure 29. Output Voltage to Supply Rail vs. Load Current Rev. G | Page 9 of 20 Document Outline Features Applications General Description Pin Configuration Table of Contents Revision History Specifications Absolute Maximum Ratings Thermal Resistance ESD Caution Typical Performance Characteristics Applications Information Input Overvoltage Protection Output Phase Reversal Driving Capacitive Loads Overload Recovery Time D/A Conversion Low Noise Applications High Speed Photodiode Preamplifier Active Filters Power Dissipation Power Calculations for Varying or Unknown Loads Calculating Power by Measuring Ambient Temperature and Case Temperature Calculating Power by Measuring Supply Current Outline Dimensions Ordering Guide