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HCF1305-2R2-R Folha de dados(PDF) 20 Page - Microchip Technology |
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HCF1305-2R2-R Folha de dados(HTML) 20 Page - Microchip Technology |
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20 / 39 page ![]() MIC24054 DS20007043B-page 20 2025-2026 Microchip Technology Inc. and its subsidiaries 5.2 Output Capacitor Selection The type of the output capacitor is usually determined by its equivalent series resistance (ESR). Voltage and RMS current capability are two other important factors for selecting the output capacitor. Recommended capacitor types are tantalum, low-ESR aluminum electrolytic, OS-CON, and POSCAP. The output capacitor’s ESR is usually the main cause of the output ripple. The output capacitor ESR also affects the control loop from a stability point of view. The maximum value of ESR is calculated: EQUATION 5-7: The total output ripple is a combination of the ESR and output capacitance. The total ripple is calculated in Equation 5-8: EQUATION 5-8: As described in the Theory of Operation section, the MIC24054 requires at least 20 mV peak-to-peak ripple at the FB pin to make the gm amplifier and the error comparator behave properly. Also, the output voltage ripple should be in phase with the inductor current. Therefore, the output voltage ripple caused by the output capacitors value should be much smaller than the ripple caused by the output capacitor ESR. If low-ESR capacitors, such as ceramic capacitors, are selected as the output capacitors, a ripple injection method should be applied to provide the enough feedback voltage ripple. Please refer to the Ripple Injection section for more details. The voltage rating of the capacitor should be twice the output voltage for a tantalum and 20% greater for aluminum electrolytic or OS-CON. The output capacitor RMS current is calculated below: EQUATION 5-9: The power dissipated in the output capacitor is: EQUATION 5-10: 5.3 Input Capacitor Selection The input capacitor for the power stage input VIN should be selected for ripple current rating and voltage rating. Tantalum input capacitors may fail when subjected to high inrush currents, caused by turning the input supply on. A tantalum input capacitor’s voltage rating should be at least two times the maximum input voltage to maximize reliability. Aluminum electrolytic, OS-CON, and multilayer polymer film capacitors can handle the higher inrush currents without voltage de-rating. The input voltage ripple will primarily depend on the input capacitor’s ESR. The peak input current is equal to the peak inductor current, so: EQUATION 5-11: The input capacitor must be rated for the input current ripple. The RMS value of input capacitor current is determined at the maximum output current. Assuming the peak-to-peak inductor current ripple is low: EQUATION 5-12: The power dissipated in the input capacitor is: EQUATION 5-13: ESRC OUT VOUT PP IL PP --------------------------- Where: ΔVOUT(PP) = Peak-to-peak output voltage ripple ΔIL(PP) = Peak-to-peak inductor current ripple VOUT PP = IL PP COUT fSW 8 -------------------------------------- 2 IL PP ESRC OUT 2 + Where: COUT = Output capacitance value fSW = Switching frequency ICOUT RMS IL PP 12 ------------------ = PDISS COUT ICOUT RMS 2 ESR COUT = VIN IL PK ESRCIN = ICIN RMS IOUT MAX D 1 D – PDISS CIN ICIN RMS 2 ESR CIN = |
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