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LED2000PUR 数据表(PDF) 29 Page - STMicroelectronics |
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LED2000PUR 数据表(HTML) 29 Page - STMicroelectronics |
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29 / 40 page ![]() DocID023432 Rev 4 29/40 LED2000 Application information 40 In overcurrent condition, the duty cycle is strongly reduced and, in most applications, this is enough to limit the switch current to the current threshold. The inductor current ripple during ON and OFF phases can be written as: ON phase Equation 40 OFF phase Equation 41 where DCRL is the series resistance of the inductor. The pulse-by-pulse current limitation is effective to implement constant current protection when: Equation 42 From Equation 40 and Equation 41 it can be seen that the implementation of the constant current protection becomes more critical the lower the VOUT and the higher the VIN. In fact, in short-circuit condition the voltage applied to the inductor during the OFF-time becomes equal to the voltage drop across parasitic components (typically the DCR of the inductor and the RDSON of the low-side switch) since VOUT is negligible, while during TON the voltage applied at the inductor is maximized and is approximately equal to VIN. In general, the worst case scenario is heavy short-circuit at the output with maximum input voltage. Equation 40 and Equation 41 in overcurrent conditions can be simplified to: Equation 43 considering TON which has already been reduced to its minimum. Equation 44 where TSW = 1/FSW and considering the nominal FSW. At higher input voltage I L TON may be higher than IL TOFF and so the inductor current can escalate. As a consequence, the system typically meets Equation 42 at a current level IL TON VIN VOUT – DCRL RDSON HS + I – L ----------------------------------------------------------------------------------------------- TON = IL TON VOUT DCRL RDSON LS + I + – L ---------------------------------------------------------------------------------------- TOFF = IL TON IL TOFF = IL TON VIN DCRL RDSON HS + I – L ------------------------------------------------------------------------ TON MIN VIN L --------- 90ns = IL TOFF DCRL RDSON LS + – I L -------------------------------------------------------------- TSW 90ns – DCRL RDSON LS + – I L -------------------------------------------------------------- 1,18 s = |
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