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MP2635 Datasheet(PDF) 3 Page - Monolithic Power Systems |
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MP2635 Datasheet(HTML) 3 Page - Monolithic Power Systems |
3 / 33 page MP2635 – 2A SINGLE CELL SWITCH MODE BATTERY CHARGER MP2635 Rev. 1.05 www.MonolithicPower.com 3 6/27/2013 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2013 MPS. All Rights Reserved. ORDERING INFORMATION Part Number* Package Top Marking MP2635GR QFN24 (4×4mm) M2635E * For Tape & Reel, add suffix –Z (e.g. MP2635GR–Z); PACKAGE REFERENCE TOP VIEW ABSOLUTE MAXIMUM RATINGS (1) VIN .................................................–0.3V to 20V SYS...............................................–0.3V to 6.5V SW…………….. ................................................. –0.3V (-2V for <20ns) to 6.5V (8.5V for <20ns) BATT.............................................–0.3V to 6.5V ACOK ----------------- , CHG ------------- , BOOST --------------------- ...................–0.3V to 6.5V All Other Pins ................................–0.3V to 6.5V Junction Temperature ...............................150°C Lead Temperature ....................................260°C Continuous Power Dissipation (TA = +25°C) (2) ........................................................... 2.97W Junction Temperature ...............................150°C Operating Temperature............. –20°C to +85°C Recommended Operating Conditions (3) Supply Voltage VIN............................4.5V to 6V Battery Voltage VOUT .....................2.5V to 4.35V Operating Junction Temp. (TJ).−40°C to +125°C Thermal Resistance (4) θJA θJC QFN24 (4×4mm)..................... 42 ........9 ....°C/W Notes: 1) Exceeding these ratings may damage the device. 2) The maximum allowable power dissipation is a function of the maximum junction temperature TJ (MAX), the junction-to- ambient thermal resistance θJA, and the ambient temperature TA. The maximum allowable continuous power dissipation at any ambient temperature is calculated by PD (MAX) = (TJ (MAX)-TA)/θJA. Exceeding the maximum allowable power dissipation will cause excessive die temperature, and the regulator will go into thermal shutdown. Internal thermal shutdown circuitry protects the device from permanent damage. 3) The device is not guaranteed to function outside of its operating conditions. 4) Measured on JESD51-7, 4-layer PCB. |
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