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ADP5140WACCZ-R7 数据表(PDF) 56 Page - Analog Devices |
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ADP5140WACCZ-R7 数据表(HTML) 56 Page - Analog Devices |
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56 / 128 page ![]() ADP5140 Data Sheet Rev. 0 | Page 56 of 128 selected inductor is large enough to avoid the current limit throughout the entire input voltage range. Use the following equation to calculate the peak inductor current: __ _ 12 OUT BOOST PP BOOST PEAK BOOST BOOST II I D = + − where IPEAK_BOOST is the peak inductor current of the boost. IPP_BOOST is the peak-to-peak inductor ripple current. _ _ IN BOOST BOOST PP BOOST BOOST SW VD I Lf × = × where LBOOST is the inductor value of the boost. The saturation current of the inductor must be larger than the peak inductor current. For ferrite core inductors with a quick saturation characteristic, the saturation current rating of the inductor must be higher than the current-limit threshold of the boost regulator to prevent the inductor from reaching saturation. OUTPUT CAPACITOR SELECTION The output capacitor selection affects both the output voltage ripple and the loop dynamics of the regulators in the ADP5140. The ADP5140 functions with small ceramic capacitors that have low equivalent series resistance (ESR) and low equivalent series inductance (ESL) and can, therefore, easily meet the output voltage ripple specifications. Ceramic capacitors are manufactured with a variety of dielectrics, each with different behavior over temperature and applied voltage. X5R or X7R dielectrics are recommended for best performance because of the low ESR and small temperature coefficients. Output Capacitor Selection for the Buck Regulators During a load step transient where the load suddenly increases, the output capacitor supplies the load until the control loop can ramp up the inductor current. The delay caused by the control loop causes output to undershoot. To calculate the output capacitance that is required to satisfy the voltage drop requirement, use the following equation: 2 __ _ 2 ( ) UV STEP BUCK OUT_UV IN BUCK OUT BUCK OUT UV KI L C VV V ×∆ × = × − ×∆ where: KUV is a factor, with a typical setting of KUV = 2. ΔISTEP is the load step. ΔVOUT_UV is the allowable undershoot on the output voltage of buck regulator. Another example occurs when a load is suddenly removed from the output, and the energy stored in the inductor rushes into the output capacitor, causing the output to overshoot. To calculate the output capacitance that is required to meet the overshoot requirement, use the following equation: 2 22 _ __ () OV STEP BUCK OUT_OV OUT BUCK OUT OV OUT BUCK K I L C V VV ×∆ × = +∆ − where: KOV is a factor, with a typical setting of KOV = 2. LBUCK is the inductor current ripple ΔVOUT_OV is the allowable overshoot on the output voltage of buck regulator. When the buck regulator operates in continuous conduction mode, the overall output voltage ripple is the sum of the voltage spike caused by the output capacitor ESR plus the voltage ripple caused by the charging and discharging of the output capacitor, as follows: _ _ __ 1 8 RIPPLE BUCK L BUCK BUCK SW OUT RIPPLE BUCK V I ESR fC ∆= ∆× + ×× where: ΔVRIPPLE_BUCK is the allowable output ripple voltage of the buck regulator. COUT_RIPPLE_BUCK is the output capacitance to meet the voltage ripple requirement. ESRBUCK is the equivalent series resistance of the output capacitor of buck regulator in ohms (Ω). Capacitors with lower ESR are preferable to guarantee low output voltage ripple, as shown in the following equation: _ _ RIPPLE BUCK BUCK L BUCK V ESR I ∆ ≤ ∆ Select the largest output capacitance given by COUT_UV, COUT_OV, and COUT_RIPPLE_BUCK to meet both load transient and output ripple performance. Output Capacitor Selection for the Boost Regulator In the boost regulator, the output capacitor supplies the load current while the inductor current ramps up. Therefore, the output ripple usually determines the output capacitance required, as follows: ( ) _ _ _ __ RIPPLE BOOST OUT BOOST BOOST BOOST PEAK BOOST OUT RIPPLE BOOST SW V ID ESR I Cf ∆= × +× × where: ΔVRIPPLE_BOOST is the allowable output ripple voltage of the boost regulator. ESRBOOST is the equivalent series resistance of the output capacitor of boost regulator in Ω. The output voltage of the boost regulator in the ADP5140 is fixed. A ceramic capacitor with a typical value of 10 μF or greater and low ESR is recommended. Larger capacitance values lower the output ripple and improve transient response and loop stability. |
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