Typical Performance Characteristics–ADG431/ADG432/ADG4335050TA = 25CTA = 25CVL = 5VVL = 5V4040VDD = 5VVDD = +5VVSS = 0VVSS = –5V3030VVDD = +10VDD = 10VVDD = 12V–V–VSS = –10VVSS = 0VVSS = 0VONDD = +12VONRV20SS = –12VR 201010VDD = +15VVDD = 15VVSS = –15VVSS = 0V00–20–100102005101520VD OR VS – DRAIN OR SOURCE VOLTAGE – VVD OR VS – DRAIN OR SOURCE VOLTAGE – V TPC 1. On Resistance as a Function of VD (VS) Dual TPC 4. On Resistance as a Function of VD (VS) Single Supplies Supply 50100mAVDD = +15VVDD = +15V 4 SWVSS = –15VVSS = –15V1 SW10mA40VL = +5VVL = +5V1mA30I+, I––100AON125CR 20I SUPPLY85C10A25CIL101A0100nA–20–1001020101001k10k100k1M10MVD OR VS – DRAIN OR SOURCE VOLTAGE – VFREQUENCY – Hz TPC 2. On Resistance as a Function of VD (VS) for Different TPC 5. Supply Current vs. Input Switching Frequency Temperatures 100.04VVDD = +15VDD = +15VVVSS = –15VSS = –15VTVA = +25CL = +5VIVD (ON)L = +5V10.02nA –VS =15VIS (OFF)nA –VD =15VIS (OFF)0.10.00IID (OFF)D (OFF)LEAKAGE CURRENT 0.01ID (ON)LEAKAGE CURRENT –0.020.001–0.0420406080100120140–20–1001020TEMPERATURE –CVD OR VS – DRAIN OR SOURCE VOLTAGE – V TPC 3. Leakage Currents as a Function of Temperature TPC 6. Leakage Currents as a Function of VD (VS) REV. C –5–