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ADP2443ACPZN-R7 数据表(PDF) 21 Page - Analog Devices |
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ADP2443ACPZN-R7 数据表(HTML) 21 Page - Analog Devices |
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21 / 25 page ![]() ADP2443 Data Sheet Rev. 0 | Page 20 of 24 OUTPUT CAPACITOR SELECTION The output capacitor is required to meet both the output voltage ripple and load transient response requirements. To meet the output voltage ripple requirement, use the following equation to calculate the ESR and capacitance value of the output capacitor: RIPPLE OUT SW L RIPPLE OUT V f I C _ _ 8 ∆ × × ∆ = L RIPPLE OUT ESR I V R ∆ ∆ = _ This calculation results in COUT_RIPPLE = 4.04 μF, and RESR = 51.5 mΩ. To meet the ±5% overshoot and undershoot transient requirements, use the following equations to calculate the capacitance: 2 2 _ 2 _ ) ( OUT OV OUT OUT STEP OV OV OUT V V V L I K C − ∆ + × ∆ × = where: KOV = KUV = 2 are the coefficients for estimation purposes. ∆ISTEP = 2 A is the load transient step. ∆VOUT_OV = 5% VOUT is the overshoot voltage. UV OUT OUT IN STEP UV UV OUT V V V L I K C _ 2 _ ) ( 2 ∆ × − × × ∆ × = where ∆VOUT_UV = 5% VOUT is the undershoot voltage. This calculation results in COUT_OV = 21.2 μF, and COUT_UV = 5.7 μF. According to the calculation, the output capacitance must be greater than 21.2 μF, and the ESR of the output capacitor must be smaller than 51.5 mΩ. It is recommended that one 47 μF/X5R/16 V ceramic capacitor be used, such as the GRM32ER61C476KE15K from Murata, with an ESR of 2 mΩ. SLOPE COMPENSATION SETTING The ramp resistor, RRAMP, determines the slope compensation. Use the following equation to calculate the RRAMP value: MΩ 74 . 1 9 . 3 10 μH 8 . 6 9 . 3 10 12 12 = × = × = L RRAMP Choose a standard component value, as follows: RRAMP = 1.5 MΩ. COMPENSATION COMPONENTS For better load transient and stability performance, set the cross frequency, fC, to fSW/10. In this case, fSW is running at 600 kHz; therefore, the fC is set to 60 kHz. The 47 µF ceramic output capacitor has a derated value of 32 µF. kΩ .5 19 A/V 10 µs 515 V 0.6 kHz 60 µF 32 V 5 π 2 = × × × × × × = C R pF 2739 kΩ 19.5 µF 32 Ω 0.002 Ω 1.667 = × + = C C pF 3 . 3 kΩ 19.5 µF 32 Ω 0.002 = × = CP C Choose standard components, as follows: RC = 20 kΩ, CC = 2700 pF, and CCP = 3.3 pF. Figure 40 shows the Bode plot at a 3 A load current. The cross frequency is 59 kHz, and the phase margin is 66°. 60 –60 –24 12 48 –36 0 36 –48 –12 24 180 –180 –72 36 144 –108 0 108 –144 –36 72 1k 10k 100k 1M FREQUENCY (Hz) PHASE MAGNITUDE Figure 40. Bode Plot at 3 A SOFT START TIME PROGRAM The soft start feature allows the output voltage to ramp up in a controlled manner, eliminating output voltage overshoot during soft start and limiting the inrush current. Set the soft start time to 4 ms. nF 7 . 2 2 V 0.6 µA 4 3. ms 4 V 0.6 _ = × = × = SS EXT SS SS I t C Choose a standard component value, as follows: CSS = 22 nF. INPUT CAPACITOR SELECTION A minimum 10 μF ceramic capacitor must be placed near the PVIN pin. In this application, it is recommended that one 10 μF, X5R, 50 V ceramic capacitor be used. |
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