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UB10803L-SH2-R 数据表(PDF) 5 Page - Unisonic Technologies |
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UB10803L-SH2-R 数据表(HTML) 5 Page - Unisonic Technologies |
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5 / 10 page ![]() UB10803 Preliminary CMOS IC UNISONICTECHNOLOGIESCO.,LTD 5 of 10 www.unisonic.com.tw QW-R502-A26.a OPERATION The UTC UB10803 charges a single-cell Li-ion/Polymer battery with a programmed constant current (CC) or a constant voltage (CV) profile. The constant fast charge current ICHG is programmable by setting an external resistor RIREF while the constant voltage is factory-trimmed at 4.2V (4.10V or 4.36V options are available upon request). If the battery voltage is deeply discharged to lower than 2.75V, The UTC UB10803 pre-charges the battery with a 20% programmable current until the battery voltage rises above the pre-charge threshold. After pre-charge finishes, constant-current (CC) charging mode begins with the pre-set fast charge current. Normally, the battery voltage rises gradually during CC charge phase. When the battery voltage reaches nearly 4.2V, the charger enters the constant-voltage (CV) charging mode and begins to regulate the battery voltage at 4.2V while diminishing the charging current gradually. When the charging current is reduced to an amount smaller than the programmed End-Of-Charge (EOC) current level, the charger gives out a “full-charge” indication through the CHG pin, but the charger still continues to regulate the battery voltage at 4.2V with safe & small current. The end-of-charge (EOC) current level (IMIN) can be easily programmed with an external resistor RIMIN. The CHG signal turns to LOW when pre-charge starts and rises to HIGH when EOC is reached. After reaching EOC, the charge current has to rise again to typically 76% of ICHG before the CHG signal will turn on again. The current surge after EOC can be caused by a load connected to the battery. When the die temperature reaches 115°C (typically), a thermal regulation function is employed to reduce the charge current accordingly to maintain the temperature from increasing furthermore. This is an important function to achieve safe operation even when the printed circuit board (PCB) is not effective in leaking out the heat generated by the linear charger. 1. PPR Indication The PPR pin is implemented as an open-drain output to provide a power-good indication of the input power source such as an AC adapter. When the input voltage is higher than the POR (Power-On Reset) threshold, the PPR pin turns on the internal open-drain MOSFET to indicate logic LOW signal. The PPR indication is designed to be independent on the chip enable (EN-pin) input. When the internal open-drain FET is turned off, the PPR pin should leak less than 1μA current. When turned on, the PPR pin should be able to sink at least 5mA current under all operating conditions. The PPR pin can be used to drive an LED or worked as logic interface to a microprocessor. 2. Power-Good Range The input voltage is considered as power good when it meets the following three conditions: (1). VIN > VPOR (2). VIN - VBAT > VOS Where the VOS is the offset voltage, it determines if the battery voltage is even higher than the input voltage. All VPOR and VOS are realized with sufficient hysteresis, as given in the Electrical Specification table. All charging activities are disabled when the input voltage falls out of the power-good range. 3. Input and Output Comparator Obviously, when the input source voltage is lower than the battery voltage, no charging activity could be started and the charger will disable the internal pass element to prevent battery leakage. Charge begins when the input voltage is higher than the battery voltage by a defined offset voltage (VOS). This scheme also ensures that the charger is completely turned off when the input power is removed from the charger. 4. CHG Indication The CHG pin is implemented as an open-drain output to give a logic LOW when a charge cycle begins and turn HIGH when an end-of-charge (EOC) condition is reached. This pin is designed with a sinking ability of more than 5mA so as to drive an LED. When the charger is disabled through EN-pin, the CHG output is high impedance. The CHG pin can also be used to interface with a microprocessor. 5. EN Input The chip is enabled by a logic LOW signal applied to the EN pin. This pin is realized with a 200kΩ internal pull-down resistor such that even the EN pin is left floating, the input is equivalent to logic LOW and the chip is enabled by default. Similarly, the chip is disabled when the EN pin receives a logic HIGH signal. |
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