ADG528FTYPICAL PERFORMANCE CHARACTERISTICS20002000V1750TDD = +15VA = 25°C1750VSS = –15V1500150012501250))ΩVDD = +5VΩ( 1000VSS = –5V( 1000ONONRR750750TA = 85°C TA = 125°C500VDD = +10V500VSS = –10V250250VDD = +15VTVA = 25°CSS = –15V00 1 –15–10–5051015 08 0 –15–10–5051015 1 0 5- 5- VD, VS (V) 65 V 65 09 D, VS (V) 09 Figure 5. On Resistance as a Function of VD (VS) Figure 8. On Resistance as a Function of VD (VS) for Different Temperatures 1m1m100µVDD = 0V100µVDD = +15VVSS = 0VV10µSS = –15VVD = 0V10µV)D = 0VA)(1µAE(1µEAGG100n100nAK EAKA EL10nL10nUTOPERATING RANGEUTOPERATING RANGEINP1nINP1nI SI S100p100p10p10p1p1p 2 –50 –40 –30 –20 –100102030405060 09 0 –50 –40 –30 –20 –100102030405060 01 5- 5- VIN INPUT VOLTAGE (V) 65 INPUT VOLTAGE (V) 65 09 09 Figure 6. Input Leakage Current as a Function of VS (Power Supplies Off) Figure 9. Input Leakage Current as a Function of VS (Power Supplies On) During Overvoltage Conditions During Overvoltage Conditions 1m0.3100µVDD = +15VVDD = +15VVSS = –15V0.2VSS = –15V10µVD = 0VTA)A = 25°CnA)(I(1µSS (OFF)ENT0.1100nIS (OFF)AKAGRREE L10nCUTEU0INP1nIOPERATING RANGEAKAGS (ON)I DE L100p–0.110p1p–0.2–50 –40 –30 –20 –100102030405060 10 0 –14–10–6–2261014 13 0 5- 5- V 65 VIN INPUT VOLTAGE (V)S, VD (V) 65 09 09 Figure 7. Output Leakage Current as a Function of VS (Power Supplies On) Figure 10. Leakage Currents as a Function of VD (VS) During Overvoltage Conditions Rev. F | Page 8 of 16 Document Outline FEATURES APPLICATIONS FUNCTIONAL BLOCK DIAGRAM GENERAL DESCRIPTION PRODUCT HIGHLIGHTS TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS DUAL SUPPLY TRUTH TABLE TIMING DIAGRAMS ABSOLUTE MAXIMUM RATINGS ESD CAUTION PIN CONFIGURATION AND FUNCTION DESCRIPTIONS TYPICAL PERFORMANCE CHARACTERISTICS TERMINOLOGY THEORY OF OPERATION TEST CIRCUITS OUTLINE DIMENSIONS ORDERING GUIDE