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L6599ATN датащи(PDF) 16 Page - STMicroelectronics |
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L6599ATN датащи(HTML) 16 Page - STMicroelectronics |
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16 / 31 page ![]() Application information L6599AT 16/31 Doc ID 15534 Rev 3 Figure 7. Burst-mode implementation: a) narrow input voltage range; b) wide input voltage range Essentially, RFmax defines the switching frequency fmax above which the L6599AT enters burst-mode operation. Once fixed fmax, RFmax is derived from the relationship: Equation 3 Note that, unlike the fmax considered in the previous section (“Section 6.1: Oscillator“), here fmax is associated to a load PoutB greater than the minimum. PoutB is such that the transformer's peak currents are low enough not to cause audible noise. The resonant converter's switching frequency, however, depends also on the input voltage. Therefore, in cases where there is quite a large input voltage range with the circuit of Figure 7 a, the value of PoutB changes considerably. In this case it is recommended to use the arrangement shown in Figure 7b, where the information on the converter's input voltage is added to the voltage applied to the STBY pin. Due to the strongly non-linear relationship between switching frequency and input voltage, it is more practical to find empirically the right amount of correction RA / (RA + RB) needed to minimize the change of PoutB. Care should be taken to choose a total value of RA + RB that is much greater than RC to minimize the effect on the LINE pin voltage (see Section 6.6: Line sensing function). Whichever circuit is used, its operation can be described as follows. As the load falls below the value PoutB the frequency tries to exceed the maximum programmed value fmax and the voltage on the STBY pin (VSTBY) falls below 1.24 V. The IC then stops with both gate-drive outputs low, so that both MOSFETs of the half-bridge leg are in an OFF-state. The voltage VSTBY now increases as a result of the feedback reaction to the energy delivery stop and, as it exceeds 1.29 V, the IC starts switching again. After a while, VSTBY goes down again in response to the energy burst and stops the IC. In this way the converter works in a burst- mode fashion with a nearly constant switching frequency. A further load decrease then causes a frequency reduction, which can go down to even a few hundred hertz. The timing diagram of Figure 8 illustrates this kind of operation, showing the most significant signals. A small capacitor (typically in the hundred pF range) from the STBY pin to ground, placed as close to the IC as possible to reduce switching noise pick-up, helps get clean operation. To help the designer meet energy saving requirements even in power-factor-corrected systems, where a PFC pre-regulator precedes the DC-DC converter, the L6599AT allows the PFC pre-regulator to be turned off during burst-mode operation, thereby eliminating the 1 f f RF 8 3 RF min max min max − = |
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