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LTC4160EPDCPBF Datasheet(PDF) 5 Page - Linear Technology |
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LTC4160EPDCPBF Datasheet(HTML) 5 Page - Linear Technology |
5 / 32 page LTC4160/LTC4160-1 5 41601f TYPICAL PERFORMANCE CHARACTERISTICS USB Limited Load Current vs Battery Voltage (Battery Charger Disabled) USB Limited Load Current vs Battery Voltage (Battery Charger Disabled) Battery and VBUS Currents vs Load Current USB Limited Battery Charge Current vs Battery Voltage USB Limited Battery Charge Current vs Battery Voltage Battery and VBUS Currents vs Load Current Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. Note 2: The LTC4160E/LTC4160E-1 are guaranteed to meet performance specifications from 0°C to 85°C. Specifications over the –40°C to 85°C operating temperature range are assured by design, characterization and correlation with statistical process controls. Note 3: The LTC4160E/LTC4160E-1 include overtemperature protection that is intended to protect the device during momentary overload conditions. Junction temperature will exceed 125°C when overtemperature protection is active. Continuous operation above the specified maximum operating junction temperature may impair device reliability. ELECTRICAL CHARACTERISTICS TA = 25°C, unless otherwise noted. Note 4: Total input current is the sum of quiescent current, IVBUSQ, and measured current given by VCLPROG/RCLPROG • (hCLPROG + 1). Note 5: The current limit features of this part are intended to protect the IC from short term or intermittent fault conditions. Continuous operation above the maximum specified pin current rating may result in device degradation or failure. Note 6: The bidirectional switcher’s supply current is bootstrapped to VBUS and in the application will reflect back to VOUT by (VBUS/VOUT) • 1/efficiency. Total quiescent current is the sum of the current into the VOUT pin plus the reflected current. Note 7: hC/10 is expressed as a fraction of the measured full charge current with indicated PROG resistor. BATTERY VOLTAGE (V) 2.7 0 100 300 400 500 3.3 3.9 4.2 900 41601 G01 200 3.0 3.6 600 700 800 VBUS = 5V 5x MODE LOAD CURRENT (mA) 0 250 500 750 800 41601 G03 0 –250 –500 200 400 600 1000 VBUS CURRENT BATTERY CURRENT (CHARGING) VBUS = 5V BAT = 3.8V 5x MODE RCLPROG = 3.01k RPROG = 1k BATTERY CURRENT (DISCHARGING) BATTERY VOLTAGE (V) 2.7 0 20 60 80 100 3.3 3.9 4.2 160 41601 G02 40 3.0 3.6 120 140 VBUS = 5V 1x MODE BATTERY VOLTAGE (V) 2.7 0 100 300 400 500 3.3 3.9 4.2 700 41601 G04 200 3.0 3.6 600 VBUS = 5V 5x MODE RPROG = 1k BATTERY VOLTAGE (V) 2.7 3.3 3.9 4.2 41601 G05 3.0 3.6 VBUS = 5V 1x MODE RPROG = 1k 0 20 60 80 100 140 40 120 LOAD CURRENT (mA) 0 250 500 1000 750 41601 G06 0 –250 –500 250 500 750 1500 1250 1000 VBUS CURRENT BATTERY CURRENT (CHARGING) VBUS = 5V BAT = 3.8V 10x MODE RCLPROG = 3.01k RPROG = 2k BATTERY CURRENT (DISCHARGING) |
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