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R5972D bảng dữ liệu(PDF) 23 Page - STMicroelectronics |
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R5972D bảng dữ liệu(HTML) 23 Page - STMicroelectronics |
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23 / 35 page ![]() DocID026873 Rev 1 23/35 R5972D Application information 35 The overall losses are: Equation 25 The junction temperature of device will be: Equation 26 Where TA is the ambient temperature and RthJ-A is the thermal resistance junction to ambient. Considering that the device is mounted on the board with a good ground plane, that it has a thermal resistance junction to ambient (RthJ-A) of about 65 °C/W, and an ambient temperature of about 70 °C: Equation 27 8.4 Short-circuit protection In overcurrent protection mode, when the peak current reaches the current limit, the device reduces the TON down to its minimum value (approximately 250 nsec) and the switching frequency to approximately one third of its nominal value even when synchronized to an external signal (see Section 5.3: Current protection on page 9). In these conditions, the duty cycle is strongly reduced and, in most applications, this is enough to limit the current to ILIM. In any event, in case of heavy short-circuit at the output (VO = 0 V) and depending on the application conditions (VCC value and parasitic effect of external components) the current peak could reach values higher than ILIM. This can be understood considering the inductor current ripple during the ON and OFF phases: ON phase Equation 28 OFF phase Equation 29 where VD is the voltage drop across the diode, DCRL is the series resistance of the inductor. In short-circuit conditions VOUT is negligible so during TOFF the voltage across the inductor is very small as equal to the voltage drop across parasitic components (typically the DCR of the inductor and the VFW of the freewheeling diode) while during TON the voltage applied the inductor is instead maximized as approximately equal to VIN. PTOT RDSON IOUT 2 DVIN IOUT TSW FSW VIN IQ= + + = 0.4 1.5 2 0.3 12 1.5 70 10 9 – 250 10 3 12 2.5 10 3 – + + 0.615W = TJ TA RthJA – PTOT + = TJ 70 0.615 65 110 C + = IL TON VIN Vout – DCRL RDSON + I – L ------------------------------------------------------------------------------------ TON = IL TOFF VD Vout DCRL I ++ – L --------------------------------------------------------------- TOFF = |
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