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AN2982 Datasheet(PDF) 13 Page - STMicroelectronics |
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AN2982 Datasheet(HTML) 13 Page - STMicroelectronics |
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13 / 31 page ![]() AN2982 Designing the application Doc ID 15599 Rev 1 13/31 1.2.8 Input rectifier A 2KBP06M bridge rectifier is able to sustain 600 V in reverse condition and 2 A of forward current. Its maximum power dissipation is equal to: Equation 29 1.2.9 Input capacitor Let r = 10% be the maximum allowed ratio between the high-frequency ripple amplitude seen at the input of the PFC stage and the mean value of the input current: Equation 30 1.2.10 Input circuitry The input circuitry is composed of: – A fuse: avoids damage due to ballast breaking or excessive current from the mains – An NTC: limits the inrush current which avoids blowing the fuse and reduces the effects of a burst from the mains. This component reduces its resistance at a higher temperature. A 5 Ω NTC (at 25 °C) is used – A varistor (not present): absorbs the energy associated with a mains surge avoiding that Vout increases over the rated voltage of the components (Cout, MOSFETs, IC,…) – An EMI filter: an LC network able to reduce the HF noise coming from the application and traveling through the mains. This filter has to filter both the common mode component of the noise (which can be measured between the AC input and the EARTH) and the differential mode component of the noise (which can be measured between the two AC inputs) The first component (the fuse) is filtered by a CM filter (a current transformer that forces the AC input currents to travel in the opposite way) and two 1 nF capacitor placed between each AC input and EARTH. The second component (the NTC) is filtered by two capacitors placed across the AC inputs and by the leakage inductance of the CM filter. In fact by using a CM transformer having a high leakage inductance, a differential filtering can be obtained. The differential capacitors are equal to CX = 100 nF, while the CM capacitors are equal to CY = 1 nF. The CM transformer, TCM, is a B82733F series transformer from EPCOS. W 73 . 1 V V P 2 2 P F (min) rms , in in B = = nF 470 C nF 87 . 401 V f r 2 P C in 2 (min) RMS , in sw in min , in min = → = ⋅ ⋅ ⋅ π = |
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