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AN2528 数据表(PDF) 16 Page - STMicroelectronics |
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AN2528 数据表(HTML) 16 Page - STMicroelectronics |
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16 / 21 page ![]() Experimental results: efficiency and further considerations AN2528 16/21 reduction at high input voltage is very effective in improving the overall efficiency, since the higher turn-on and turn-off voltages make the switching losses critical. Thanks to the storage time (lasting about 1.5 µs under this condition), that adds a delay to the current on-time, the minimum on-time is much longer than the one imposed by the L6565. This leads to a lower Vcomp value, and as a consequence, to a longer minimum OFF-time (see Figure 19 below). The system then works in advance at lower frequency as soon as the input voltage increases or the load decreases. Figure 19. Vcomp vs TBlank (minimum OFF-time) In the next figures the frequency reduction as a consequence of an increased input voltage is shown. Figure 20. 110 Vac input voltage, max load From Figure 21 the frequency is reduced due to the storage time presence at 380 Vac, becoming more and more evident at higher input voltage, 600 Vac. This "enhanced" frequency foldback created by the storage time allows keeping the total power dissipation on the device very low regardless of the very high voltage needed to sustain. |
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