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MAX8606ETD+ Datasheet(PDF) 3 Page - Maxim Integrated Products |
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MAX8606ETD+ Datasheet(HTML) 3 Page - Maxim Integrated Products |
3 / 12 page USB/AC Adapter, Li+ Linear Battery Charger with Integrated 50m Ω Battery Switch in TDFN _______________________________________________________________________________________ 3 ELECTRICAL CHARACTERISTICS (continued) (VIN = 5.0V, VBAT = 3.3V, EN1 = EN2 = GND, RSETI = 23.58k Ω, CVL = 0.1µF, CSYS = 4.7µF, TA = -40°C to +85°C, unless otherwise noted. Typical values are at TA = +25°C.) (Note 1) PARAMETER CONDITIONS MIN TYP MAX UNITS EN1 = low, EN2 = low, ISYS = 0mA 87 95 100 EN1 = low, EN2 = high, ISYS = 0 to 350mA 95 BAT Prequal Current VBAT = 2.0V EN1 = high, EN2 = low, ISYS = 0 to 575mA 95 mA Soft-Start Time 1.5 ms BAT Prequal Threshold VBAT rising, 150mV hysteresis (typ) 2.9 3.0 3.1 V BAT Dropout Voltage (VIN - VBAT)VBAT = 4.1V, IBAT = 400mA 200 400 mV BAT Short-Circuit Current Limit BAT = GND 70 95 120 mA BAT to SYS Switch RON VBAT = 3.5V, VSYS = 3.4V, VIN = 0V 50 100 m Ω BAT to SYS Switch Threshold BAT rising, 160mV hysteresis (typ) 3.4 3.5 3.6 V Battery-Removal Threshold BAT rising, 210mV hysteresis (typ) 4.5 4.75 5.0 V TA = +25°C 0.1 10 VIN = 0V TA = +85°C 0.1 TA = +25°C 0.1 10 VIN = 2.4V TA = +85°C 0.1 TA = +25°C -10 0.1 +10 BAT Leakage Current EN1 = high, EN2 = high TA = +85°C 0.1 µA VL VL Output Voltage IVL = 0 to 500µA 3.1 3.3 3.5 V VL Shutdown Voltage V EN1 = V EN2 = 5V 0 V THM THM Internal Pullup Resistance 10 k Ω THM Resistance Threshold, Hot 10% hysteresis 3.72 3.93 4.13 k Ω THM Resistance Threshold, Cold 10% hysteresis 26.6 28.3 30.0 k Ω THM Resistance Threshold, Disabled 70% hysteresis 274 305 336 Ω SETI EN1 = low, EN2 = low 0.28 EN1 = low, EN2 = high 1.4 SETI Servo Voltage EN1 = high, EN2 = low 2.1 V SETI Resistance Range 17.68 23.58 35.36 k Ω POK VIN rising 150 250 350 POK Trip Threshold (VIN - VBAT) 4.1V < VIN < 5.6V, VBAT = 4.1V VIN falling 5 55 125 mV POK Voltage, Low IPOK = 5mA 0.05 0.2 V TA = +25°C 0.01 1 POK Leakage Current, High V POK = 6V TA = +85°C 0.01 µA |
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