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AN3027 bảng dữ liệu(PDF) 28 Page - STMicroelectronics |
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AN3027 bảng dữ liệu(HTML) 28 Page - STMicroelectronics |
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28 / 41 page ![]() Designing a TM PFC AN3027 28/41 Doc ID 16134 Rev 4 With this IC the function can be implemented by connecting a resistor (RT) between the TBO pin and ground. The TBO pin presents a DC level equal to the peak of the MULT pin voltage and is then representative of the mains RMS voltage. The resistor defines a current, equal to V(TBO)/RT, that is internally 1:1 mirrored and sunk from pin INV (pin #1) input of the error amplifier. In this way, when the mains voltage increases, the voltage at TBO pin increases as well which increases the current flowing through the resistor connected between TBO and GND. Then a larger current is sunk by the INV pin and the output voltage of the PFC preregulator is forced to go higher. Obviously, the output voltage moves in the opposite direction if the input voltage decreases. To avoid undesired output voltage rise should the mains voltage exceed the maximum specified value, the voltage at the TBO pin is clamped at 3 V. By properly selecting the multiplier bias it is possible to set the maximum input voltage above which input-to-output tracking ends and the output voltage becomes constant. If this function is not used, leave the pin open: the device regulates a fixed output voltage. Starting from the following data: To set the output voltage at the desired values use the following design procedure: 1. Determine the input RMS voltage VinCLAMP that produces Vo = Vox: Equation 62 and choose a value Vinx such that Vin2 = Vinx < VinCLAMP. This results in a limitation of the output voltage range below Vox (it equals Vox if one chooses Vinx = VinCLAMP) 2. Determine the divider ratio of the MULT pin (pin #3) bias: ● Minimum specified input RMS voltage (18) ● Maximum specified input RMS voltage (19) ● Regulated output voltage at Vin = Vin1 (20) ● Regulated output voltage at Vin = Vin2 (21) ● Absolute maximum limit for the regulated output voltage (22) ● Maximum output voltage (Vdc) - (7) (23) Vin1 Vin2 Vo1 Vo2 Vox VOVP 1 in 1 O 2 O 2 O OX 2 in 1 O 2 O 1 O OX inCLAMP V V V V V V V V V V V ⋅ − − − ⋅ − − = |
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