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AN4314 데이터시트(PDF) 13 Page - STMicroelectronics |
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AN4314 데이터시트(HTML) 13 Page - STMicroelectronics |
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13 / 31 page ![]() DocID024821 Rev 2 13/31 AN4314 Performance and considerations with LED loads 31 Figure 4. LED current vs. line voltage Unlike boost topology, the buck-boost topology does not permit unity power factor even in an ideal case. From AN1059 [ 1], the ratio is defined as: Equation 3 The power factor is a function of K v where V pk is the input peak mains voltage and V out is the nominal 70 V dc LED voltage drop. The current would normally be sinusoidal for K v = 0 but will be distorted from an ideal sinusoid in proportion to the increase of K V . Since K v in this application varies according to the mains [85-265] V ac in the range [1.7-5.3], a different PF versus input line voltage has been measured. The PF is then affected by the current phase shift caused by the CX capacitor of the input EMI. A common-mode choke with high leakage value has been selected in order to increase the power of the EMI filter but at the same time reducing the two CX capacitors. The test results of the following Figure 5 and Figure 6 show the PF and THD versus line voltage. The power factor remains above 0.9 up to the European range even considering the minimum tolerance value of the LED voltage drop (-10 %). Considering the LED voltage drop variation, the PF remains above 0.9 until 250 V ac . Vout V K PK V = |
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