Data SheetAD810TYPICAL PERFORMANCE CHARACTERISTICS2010) V ± (GE915VS = ±15VOLTAmA)8T VNO LOAD(UNTVTPS = ±5V107OU ECURRE Y LRPL = 150Ω6OF TH EUPD5SITU5GN A M0405101520 004 –60–40–20020406080100120140 007 SUPPLY VOLTAGE (±V) 1737- JUNCTION TEMPERATURE (°C) 1737- Figure 6. Magnitude of the Output Voltage vs. Supply Voltage Figure 9. Supply Current vs. Junction Temperature 3510830)±15V SUPPLY6Vp)m25(p-4VGE(VS = ±5V2GE20OLTA0T VOLTAE15VS = ±15VT V–2U TP10T OFFS–4UOUP±5V SUPPLYIN–65–80–10101001k10k 005 –60–40–20020406080100120140 008 LOAD RESISTANCE (Ω) 1737- JUNCTION TEMPERATURE (°C) 1737- Figure 7. Output Voltage vs. Load Resistance Figure 10. Input Offset Voltage vs. Junction Temperature 1025086A)mA)200µ(4(NONINVERTING INPUTNTNT2VS = ±5V, ±15VVS = ±15V0CURRE150CURRETAS–2RCUIBI-CIUTINVERTING INPUT–4VS = ±5V, ±15VRTINP100–6HO SVS = ±5V–8–1050–60–40–20020406080100120140 006 –60–40–20020406080100120140 009 JUNCTION TEMPERATURE (°C) 1737- JUNCTION TEMPERATURE (°C) 1737- Figure 8. Input Bias Current vs. Junction Temperature Figure 11. Short-Circuit Current vs. Junction Temperature Rev. B | Page 7 of 22 Document Outline FEATURES APPLICATIONS CONNECTION DIAGRAM GENERAL DESCRIPTION TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS THERMAL RESISTANCE MAXIMUM POWER DISSIPATION ESD CAUTION PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS TEST CIRCUITS THEORY OF OPERATION GENERAL DESIGN CONSIDERATIONS ACHIEVING VERY FLAT GAIN RESPONSE AT HIGH FREQUENCY CHOICE OF FEEDBACK RESISTOR PRINTED CIRCUIT BOARD LAYOUT QUALITY OF COAXIAL CABLE POWER SUPPLY BYPASSING POWER SUPPLY OPERATING RANGE OFFSET NULLING DISABLE MODE APPLICATIONS INFORMATION CAPACITIVE LOADS OPERATION AS A VIDEO LINE DRIVER 2:1 VIDEO MULTIPLEXER 4:1 MULTIPLEXER OUTLINE DIMENSIONS ORDERING GUIDE