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MCP1632-BAE/MS 데이터시트(PDF) 19 Page - Microchip Technology |
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MCP1632-BAE/MS 데이터시트(HTML) 19 Page - Microchip Technology |
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19 / 34 page ![]() A typical charger application for one- or two-cell Li-Ion batteries is presented in Figure 5-3. The PIC microcontroller handles all the necessary functions of the charger and the MCP1632 device controls the power train. Using the SEPIC converter allows developing a universal charger where the input voltage can be higher or lower than the battery voltage. The microcontroller can control the reference voltage across certain limits using its internal high-frequency PWM generator and the external circuit consisting of D2 and R1. This circuit can be replaced with a digital-to-analog converter (DAC) for a better range and accuracy of the reference voltage control. The charging current is monitored using a low-side shunt (RS) and an inverting amplifier. The floating voltage of the charger is controlled by MCP1632 and can be adjusted by varying the value of the RVREF resistor or the ratio of the feedback divider (R5, R6). Additional protection features can be implemented in the microcontroller’s firmware. FIGURE 5-3: Battery Charger Circuit. MCP1632 RVREF CSS VIN VREF COMP EN FB CS VEXT GND VIN LDO Q1 RSENSE RSLOPE L1A D1 + - CIN COUT L1B RS R1 CC C1 C2 C3 R2 R3 Battery PIC Micro - + VSENSE CSENSE VSENSE Status AN1 AN2 PWM I/O I/O VCC D2 R4 R5 R6 R7 R8 |
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