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SPV1050 데이터시트(PDF) 14 Page - STMicroelectronics |
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SPV1050 데이터시트(HTML) 14 Page - STMicroelectronics |
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14 / 36 page ![]() Functional description SPV1050 14/36 DocID025569 Rev 4 Figure 3. Battery management section Before the first startup the pass transistor is open, so that the leakage from the battery is lower than 1 nA. The pass transistor will be closed once the voltage on the STORE pin will rise such that the EOC threshold VEOC is triggered. If the battery is full, and until VSTORE > VEOC - EOCHYS, the DC-DC converter will stop switching to avoid battery overcharge. On the contrary, in order to avoid the overdischarge of the battery, the pass transistor will be opened once the voltage on the STORE pin will decrease down to UVP threshold VUVP. These functions are simply implemented by the control of two voltage thresholds, VUVP and VEOC, which can be regulated by a resistor partitioning (R4, R5, R6) between STORE, UVP and EOC pins. The scaled voltages on the UVP and EOC pins will be compared with the internal bandgap voltage reference VBG set at 1.23 V. The design rules to setup the R4, R5 and R6 are the following: Equation 1 VBG = VUVP • (R5 + R6) / (R4 + R5 + R6) Equation 2 VBG = VEOC • R6 / (R4 + R5 + R6) In order to minimize the leakage due to the output resistor partitioning it has to be typically: |
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