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STBC21 数据表(PDF) 22 Page - STMicroelectronics |
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STBC21 数据表(HTML) 22 Page - STMicroelectronics |
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22 / 54 page ![]() Detailed description STBC21 22/54 Doc ID 023256 Rev 1 Equation 2 which is not compatible with the thermal specifications of the package used. In this situation either the charging current must be reduced (increasing the charging time) or the STBC21 enters into thermal shutdown. This effect can be seen even in pre-charge but is less critical because this phase generally last few minutes and the current is lower but can become longer in case the chip goes into thermal shutdown. To allow a higher current capability during charging, the power dissipation must be reduced acting on the voltage drop between input and output. To keep this difference at a minimum value the STBC21 provides a pin to drive a controller downstream so that the input voltage depends on the battery voltage. The input voltage waveform is shaped as reported in Figure 12. Figure 12. Charging process diagram During pre-charge, until VBAT reaches 2.8 V (VBAT_QP threshold), the input voltage must be regulated at VCC_QP. When VBAT goes over 2.8 V, VCC starts to increase, keeping a constant voltage difference with VBAT (IODROP_QP). 5.7 Alarms The STBC21 implements four kinds of alarms: battery alarm, charger alarm, ASD (automatic shutdown) alarm and device temperature alarm. W 6 . 6 I ) V V ( P BAT OUT IN = × − = |
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