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L6739 Datasheet(PDF) 25 Page - STMicroelectronics |
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L6739 Datasheet(HTML) 25 Page - STMicroelectronics |
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25 / 30 page ![]() DocID026384 Rev 1 25/30 L6739 Application information 30 10.2 Output capacitor(s) The output capacitors are basic components to define the ripple voltage across the output and for the fast transient response of the power supply. They depend on the output voltage ripple requirements, as well as any output voltage deviation requirement during a load transient. During steady state conditions, the output voltage ripple is influenced by both the ESR and capacitive value of the output capacitors as follows: Equation 14 Equation 15 where IL is the inductor current ripple. In particular, the expression that defines VOUT_C takes into consideration the output capacitor charge and discharge as a consequence of the inductor current ripple. During a load variation, the output capacitors supply the current to the load or absorb the current stored in the inductor until the converter reacts. In fact, even if the controller immediately recognizes the load transient and sets the duty cycle at 80% or 0%, the current slope is limited by the inductor value. The output voltage has a drop that, also in this case, depends on the ESR and capacitive charge/discharge as follows: Equation 16 Equation 17 where VL is the voltage applied to the inductor during the transient response ( for the load appliance or VOUT for the load removal). MLCC capacitors have typically low ESR to minimize the ripple but also have low capacitance which does not minimize the voltage deviation during dynamic load variations. On the contrary, electrolytic capacitors have large capacitance to minimize voltage deviation during load transients while they do not show the same ESR values as the MLCC, resulting therefore in higher ripple voltages. For these reasons, a mix between electrolytic and MLCC capacitors is suggested to minimize ripple as well as reduce voltage deviation in dynamic mode. V OUT_ESR I L ESR = V OUT_C I L 1 8COUT FSW --------------------------------------- = V OUT_ESR I OUT ESR = V OUT_C I OUT L I OUT 2COUT VL -------------------------------------- = DMAX VIN VOUT – |
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