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AN4242 датащи(PDF) 22 Page - STMicroelectronics |
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AN4242 датащи(HTML) 22 Page - STMicroelectronics |
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22 / 26 page ![]() Efficiency measurement AN4242 22/26 DocID024196 Rev 1 4.1 dI/dt optimization The contribution of the SiC diode in the switching cell is essential. Its switching performance leads to new optimizations that can help to go a step forward in increasing the efficiency. It is well known that the MOSFET switching speed (dI/dt) is an important parameter to optimize the efficiency. The dI/dt slope (when the transistor turns on and when the diode turns off) can be easily changed by tuning the value of the gate resistor Rg of the transistor. Figure 19 shows, the efficiency drop between SiC diodes and silicon diodes for different dI/dt slopes. This efficiency drop is defined by the total power losses due to the diode divided by POUT. The conduction power losses, the switch-off power losses in the diode and the switch-on power losses in the transistor due to the Qrr of the silicon diodes are taken into account. Figure 19. Comparison of efficiency drop in a 500 W PFC with VIN = 90 V F = 100 kHz, Tj = 125 °C With silicon bipolar rectifiers, there is an optimized dI/dt slope to reduce the power losses. When the slope increases, the switching time decreases but the reverse recovery current increases. For low dI/dt values, the impact of the switching time dominates, and for higher dI/dt the impact of Qrr may become more important. Hence, the switching power losses due to the recovery charges (Qrr) decrease with the increase of dI/dt until a certain point from which they start to increase again due to Qrr. For those silicon diodes, the slope choice must also be made taking into account electromagnetic considerations (EMC) which sometimes impose a limitation of that slope. With SiC diodes, the power losses continue to decrease whenever dI/dt increases. Being naturally soft (due to capacitive nature of the recovery current), they offer the possibility to switch the transistor more quickly and thus increase the efficiency of the converter. 8A Tandem G2 8A Tandem G1 8A Ultrafast diode 6A SiC G1 6A SiC G2 Efficiency (%) dI/dt (A/µs) 0 100 200 300 400 500 600 700 800 900 1000 1100 6 5 4 3 2 1 0 |
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