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AN1344 датащи(PDF) 9 Page - STMicroelectronics |
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AN1344 датащи(HTML) 9 Page - STMicroelectronics |
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9 / 14 page ![]() AN1344 Layout considerations 9/14 3 Layout considerations Some simple rules to improve the performance and minimize noise should be followed: 1. Minimize power loops. Switched power current paths inner loop area must be as small as possible. This can be achieved by careful layout of the printed circuit board. This avoids radiated and conducted EMI noise, and improves efficiency by eliminating parasitic inductance, thus reducing or eliminating the need for snubbers and EMI filtering. 2. Use separate tracks for low level signal and power traces carrying fast switching pulses. This can be seen on the VIPer100A-E pin 4. Ground is split between power and signal traces on the printed circuit lay out. When signal paths share the same trace as a power path, instabilities may result. The compensation components, C7, R6, and C9 are on a separate trace connected directly to the source of the device. 4 Burst mode When the output current is too low, the minimum on time, fixed by the internal blanking time, is too high to control the output voltage. In this case the burst mode operation takes over automatically. The VIPer100A-E switch stays off when the voltage on the compensation pin goes below 0.5 V. This results in missing cycles as shown in Figure 6. Vin is 115 VAC, minimum output current is at 40 mA. Figure 6. Good burst mode As can be seen, there is a burst of pulses followed by a pause of 600 ms. This repetitive burst reduces power consumption while maintaining a negligible ripple on the output. The Vdd voltage is stable, just above the low threshold of 8 V of the internal under voltage lock out. The under voltage lock out can be reached by further reducing the output current. As the current decreases, the Vdd voltage on the primary side also decreases. When Vdd falls below the under voltage lock out of 8 V, another type of burst mode appears which is controlled by the Vdd voltage. This is called “bad” burst mode (see Figure 7) because it has drawbacks, but the output voltage is still under control. |
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