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PM8908 数据表(PDF) 20 Page - STMicroelectronics |
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PM8908 数据表(HTML) 20 Page - STMicroelectronics |
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20 / 28 page ![]() Application information PM8908 20/28 DocID027688 Rev 3 with: RDROOP is the resistor between the COMP pin and the REF pin (see also Figure 9) ILOAD is the output current GM is the transconductance of the amplifier (1 mS) ACS is the current sense gain (53 mV/A) Figure 9. Typical application with droop configuration 6.3 Non-droop setting The advantage of a non-droop configuration is that the load regulation is flat. It can be implemented by connecting a resistor (RC) and a capacitor (CC) between the COMP pin and the REF pin (see also Figure 1 on page 4). 6.4 Inductor design The inductance value is defined by a compromise between the dynamic response time, the efficiency, the cost, and the size. The inductor must be calculated to maintain the ripple current ( I L) between 20% and 30% of the maximum output current (typ.). The inductance value can be calculated with the following relationship: Equation 5 where fSW is the switching frequency, VIN is the input voltage, and VOUT is the output voltage. L RPGOOD PM8908 PGOOD EN MODE VOUT COMP REFIN PGND PHASE BOOT VIN VCC GND VIN = 1 V to 3.5 V VCC = 5 V CBOOT COUT CVIN CVCC 20 4, 5 1, 2, 3 11, 12, 13, 14, 15 16 10 8 9 6 19 17 18 R1 RDROOP RM REF 7 R2 CREF VOUT CP L V IN V OUT – F SW I L ------------------------------ V OUT V IN -------------- = |
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