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STBB3JCC Datasheet(PDF) 19 Page - STMicroelectronics |
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STBB3JCC Datasheet(HTML) 19 Page - STMicroelectronics |
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19 / 27 page ![]() DocID025425 Rev 5 19/27 STBB3JCC Application information 8.3 Inductor selection The inductor is the key passive component for switching converters. With a buck-boost device, the inductor selection must take into consideration the following two conditions in which the converter works: • as buck region at the maximum input voltage • as boost region at the minimum input voltage Two critical inductance values are then obtained according to the following formulas: Equation 3 Equation 4 where fs is the minimum value of the switching frequency and ΔIL is the inductor ripple current. The amplitude of the inductor ripple current is typically set between 20% and 40% of the maximum inductor current. To guarantee an inductor ripple current always lower than the selected value ΔIL, the higher value between LMIN_BUCK and LMIN_BOOST have to be chosen. In addition to the inductance value, also the maximum current which the inductor can handle must be calculated in order to avoid saturation. Equation 5 Equation 6 where η is the estimated efficiency. The maximum of the two values above must be considered when selecting the inductor. 8.4 Input and output capacitor selection It is recommended to use ceramic capacitors with low ESR as input and output capacitors in order to filter any disturbance present in the input line and to obtain stable operation. Minimum values of 10 µF for both capacitors, CIN and COUT, are needed to achieve good behavior of the device. The input capacitor must be placed as close as possible to the device. An R-C filter is added to VINA pin (R3-C5 Figure 30 and Figure 31) to assure a clean input voltage to the internal logic block. L MIN_BUCK V OUT V IN_MAX V OUT – () × V IN_MAX f S ΔI L × × --------------------------------------------------------------------- = L MIN_BOOST V IN_MIN V OUT V IN_MIN – () × V OUT f S ΔI L × × ------------------------------------------------------------------------- = I PEAK_BUCK I OUT η ------------ V OUT V IN_MAX V OUT – () × 2V IN_MAX f S L × × × --------------------------------------------------------------------- + = I PEAK_BOOST V OUT I OUT × η V IN_MIN × --------------------------------- VIN_MIN V OUT V IN_MIN – () × 2V OUT f S L × × × ------------------------------------------------------------------------- + = |
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