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SC4525EEVB 数据表(PDF) 14 Page - Semtech Corporation |
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SC4525EEVB 数据表(HTML) 14 Page - Semtech Corporation |
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14 / 23 page ![]() SC4525E 4 Applications Information (Cont.) If V IN(MAX) + VOUT > 42V, then a Zener diode D3 can be used in series with D to lower the BST voltage [Figure 6(c)]. The following inequality gives a suitable range for the Zener voltage V Z: The SC4525E can also be bootstrapped from the input [Figure 6(b)]. This configuration is not as efficient as Figure 6(a). However this may be the only option if the output voltage is less than 2.5V and there is no other supply with voltage higher than 2.5V. Voltage stress at the BST pin can be somewhat higher than 2V IN. The BST pin voltage should not exceed its absolute maximum rating of 42V. To reduce BST voltage stress when stepping down from high V IN (>20V) to low VOUT (<2.5V), a Zener diode can be added in series with D . This is shown in Figure 6(d). The Zener voltage can be selected as follows: Figures 6(e) and (f) show how to bootstrap the SC4525E from a second independent power supply V S. The minimum bootstrap capacitance C can be estimated as: where V S is the voltage applied to the anode of D. The inductor current charges the bootstrap capacitor when it pulls the SW node low during the switch off time. If D is connected to the converter input, then C will be charged as soon as V IN is applied. If the bootstrap diode is tied to the converter output [Figures 6(a) and 6(c)], then C can only be charged from the regulator output through the inductor. Before the converter starts, there is no output voltage or inductor current. Hence it is necessary for the regulator to deliv- er some inductor current to the output before C can be charged. If V IN is not much higher than the programmed V OUT and it ramps up very slowly, then the inductor cur- rent will not be high enough for the bootstrap circuit to run, especially at light loads. In order to have some induc- tor current to charge C , the converter output needs to be loaded or V IN needs to be increased. Using larger soft-start capacitor C SS will also help the bootstrap circuit to run be- cause there will be current in the inductor over a longer period of time. Figures 7(a) and 7(b) show the minimum input voltage required to start bootstrap and to run be- fore dropping out as a function of the load current. The minimum start-up V IN decreases with higher dVIN/dt or larger soft-start capacitor C SS. The lines labeled “dropout” in these graphs show that once started, the bootstrap cir- cuit is able to sustain itself down to zero load. (a) (b) Figure 7. The Minimum Input Voltage to Start and to Run Before Dropout. The Regulator is Bootstrapped from its Output [Figure 6(a)]. D 1 is 1N4148. (a) VOUT = 5V (b) VOUT = 3.3V |
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