AD8610/AD862012.0560VS = ±13VVS = ±13VRL = 1kΩRL = 2kΩCL = 20pF) 12.0040V) BG = +100H (dG(HIINE 11.9520GAAGG = +10T LOOPO-LV 11.90D0EUT PG = +1OSUTL CO 11.85–20 15 18 0 0 0- 0- 73 73 11.80 02 –40 02 –4025851251k10k100k1M10M100MTEMPERATURE (°C)FREQUENCY (Hz) Figure 15. Output Voltage High vs. Temperature Figure 18. Closed-Loop Gain vs. Frequency –11.80260VS = ±13VRVS = ±13VL = 1kΩ240VO = ±10VRL = 1kΩ) –11.85V (220W O L)200E –11.90VAG/mTVL180(OVOV –11.95A160UT P UT O140–12.00 6 120 19 01 0 0- 0- 73 73 –12.05 02 100 02 –402585125–402585125TEMPERATURE (°C)TEMPERATURE (°C) Figure 16. Output Voltage Low vs. Temperature Figure 19. AVO vs. Temperature 120190VS = ±5V)180VS 100O = ±3VERL = 1kΩRE170G80160ND DE)60VA150B/mdV((E14040VOASAHAD861013020VS = ±13VCL = 20pF120N AND P AI0G110 20 0 0- 73 –20100 02 1kHz10kHz100kHz1MHz10MHz50MHz 170 –402585125 0- FREQUENCY 73 TEMPERATURE (°C) 02 Figure 17. Open-Loop Gain and Phase vs. Frequency Figure 20. AVO vs. Temperature Rev. F | Page 8 of 24 Document Outline FEATURES APPLICATIONS PIN CONFIGURATIONS GENERAL DESCRIPTION TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ELECTRICAL SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS ESD CAUTION TYPICAL PERFORMANCE CHARACTERISTICS THEORY OF OPERATION FUNCTIONAL DESCRIPTION Power Consumption Driving Large Capacitive Loads Slew Rate (Unity Gain Inverting vs. Noninverting) Input Overvoltage Protection No Phase Reversal THD Readings vs. Common-Mode Voltage Noise vs. Common-Mode Voltage Settling Time Output Current Capability Operating with Supplies Greater than ±13 V Input Offset Voltage Adjustment Programmable Gain Amplifier (PGA) High Speed Instrumentation Amplifier High Speed Filters Second-Order, Low-Pass Filter High Speed, Low Noise Differential Driver OUTLINE DIMENSIONS ORDERING GUIDE