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L6599AFD 数据表(PDF) 21 Page - STMicroelectronics |
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L6599AFD 数据表(HTML) 21 Page - STMicroelectronics |
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21 / 32 page ![]() DocID028175 Rev 3 21/32 L6599AF Application information 32 The circuit shown in Figure 11 b can be operated in two different ways. If the resistor RA in series to CA is small (not above some hundred , just to limit current spiking), the circuit operates like a capacitive current divider; CA is typically selected equal to Cr/100 or less and is a low-loss type, the sense resistor RB is selected as: Equation 7 and CB is such that RB·CB is in the range of 10 /fmin. If the resistor RA in series to CA is not small (in this case it is typically selected in the ten k ), the circuit operates like a divider of the ripple voltage across the resonant capacitor Cr, which, in turn, is related to its current through the reactance of Cr. Again, CA is typically selected equal to Cr/100 or less, not necessarily a low-loss type this time, while RB (provided it is << RA) according to: Equation 8 where the reactance of CA (XCA) and Cr (XCr) should be calculated at the frequency where ICrpk = ICrpkx. Again, CB is such that RB·CB is in the range of 10 /fmin. Whichever circuit is used, the calculated values of Rs or RB should be considered just a first cut value that needs to be adjusted after experimental verification. OCP is effective in limiting primary-to-secondary energy flow in case of an overload or an output short-circuit, but the output current through the secondary winding and rectifiers under these conditions might be so high as to endanger converter safety if continuously flowing. To prevent any damage during these conditions, it is customary to force the converter’s intermittent operation, in order to bring the average output current to values such that the thermal stress for the transformer and the rectifiers can be easily handled. With the L6599AF the designer can externally program the maximum time TSH that the converter is allowed to run overloaded or under short-circuit conditions. Overloads or short- circuits lasting less than TSH do not cause any other action, therefore providing the system with immunity to short duration phenomena. If, instead, TSH is exceeded, an overload protection (OLP) procedure is activated that shuts down the L6599AF and, in the case of continuous overload/short-circuit, results in continuous intermittent operation with a user- defined duty cycle. A r Crpkx B C C 1 I 8 . 0 R Cr 2 C 2 A Crpkx B X X R I 8 . 0 R A |
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