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MP4433GL 数据表(PDF) 22 Page - Monolithic Power Systems |
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MP4433GL 数据表(HTML) 22 Page - Monolithic Power Systems |
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22 / 29 page ![]() MP4433 - 36V, 3A, LOW IQ, SYNCHRONOUS STEP-DOWN CONVERTER MP4433 Rev. 1.01 www.MonolithicPower.com 22 1/12/2018 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2018 MPS. All Rights Reserved. APPLICATION INFORMATION Setting the Output Voltage The external resistor divider connected to FB sets the output voltage (see Figure 5). RFB1 Vout FB MP4433 RFB2 Figure 5: Feedback Network Choose RFB1 to be around 40kΩ. RFB2 can then be calculated with Equation (3): 1 0.8V V R R OUT FB1 FB2 (3) Table 1 lists the recommended feedback resistor values for common output voltages. Table 1: Resistor Selection for Common Output Voltages VOUT (V) RFB1 (kΩ) RFB2 (kΩ) 3.3 41.2 (1%) 13 (1%) 5 68.1 (1%) 13 (1%) Selecting the Input Capacitor The input current to the step-down converter is discontinuous and therefore requires a capacitor to supply AC current to the converter while maintaining the DC input voltage. For the best performance, use low ESR capacitors. Ceramic capacitors with X5R or X7R dielectrics are highly recommended because of their low ESR and small temperature coefficients. For most applications, use a 4.7µF to 10µF capacitor. It is strongly recommended to use another lower-value capacitor (e.g.: 0.1µF) with a small package size (0603) to absorb high- frequency switching noise. Place the smaller capacitor as close to VIN and GND as possible. Since CIN absorbs the input switching current, it requires an adequate ripple current rating. The RMS current in the input capacitor can be estimated with Equation (4): OUT OUT CIN LOAD IN IN VV I I (1 ) VV (4) The worst-case condition occurs at VIN = 2VOUT, shown in Equation (5): LOAD CIN I I 2 (5) For simplification, choose an input capacitor with an RMS current rating greater than half of the maximum load current. The input capacitor can be electrolytic, tantalum, or ceramic. When using electrolytic or tantalum capacitors, add a small, high-quality ceramic capacitor (e.g.: 0.1μF) as close to the IC as possible. When using ceramic capacitors, ensure that they have enough capacitance to provide a sufficient charge to prevent excessive voltage ripple at input. The input voltage ripple caused by capacitance can be estimated with Equation (6): LOAD OUT OUT IN SW IN IN IN I V V V (1 ) f C V V (6) Selecting the Output Capacitor The output capacitor maintains the DC output voltage. Use ceramic, tantalum, or low-ESR electrolytic capacitors. For best results, use low ESR capacitors to keep the output voltage ripple low. The output voltage ripple can be estimated with Equation (7): OUT OUT OUT ESR SW IN SW OUT VV 1 V (1 ) (R ) f L V 8f C (7) Where L is the inductor value, and RESR is the equivalent series resistance (ESR) value of the output capacitor. For ceramic capacitors, the capacitance dominates the impedance at the switching frequency, and the capacitance causes the majority of the output voltage ripple. |
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