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AN2644 датащи(PDF) 35 Page - STMicroelectronics |
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AN2644 датащи(HTML) 35 Page - STMicroelectronics |
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35 / 64 page ![]() AN2644 The LLC resonant half-bridge converter 35/64 Figure 22. Capacitive mode operation below resonance (fR2 < f < fR1, R<Rcrit): main waveforms d) t3 → t4. The tank current IR(t3) as Q2 is switched on is already negative and flowing through the body diode of Q1, DQ1. The voltage of the half-bridge midpoint, VHB, is abruptly pulled down to ground at t=t3 with a large dv/dt. The body diode DQ1 is then reverse-recovered and a large current spike flows through Q2 and DQ1 until the latter recovers completely. Again there is a condition functionally equivalent to a cross-conduction of the half-bridge leg. Very high di/dt may occur and, as a result, large voltage spikes are generated across the parasitic inductances experiencing this large di/dt. The voltage VHB may have large negative undershoots. During this phase energy is internally recirculated, the tank current reaches its minimum value and then increases. The phase ends when IR=I(Lp) and, then, I(D2)=0 at t=t4. e) t4 → t5. This phase mirrors exactly (t1, t2). The voltage across the resonant capacitor is so large that D1 is forward-biased and, thereby, starts conducting immediately at t=t4. IR starts increasing, becoming higher than I(Lp) and eventually crosses zero before Q2 turns off, which marks the end of this phase at t=t5. f) t5 → t6. This is the deadtime during which both Q1 and Q2 are OFF. During this phase IR is already positive and increasing. Since Q2 is off, it is flowing through DQ2. Note again that the voltage of the half-bridge midpoint VHB does not change. This phase ends when Q2 turns on at t=t3 and another switching cycle begins. I(D2) = D2 current V(D2) = D2 anode voltage I(Q2) = Q2 current I(Lp) = Lp (magnetizing) current Vc = Resonant capacitor voltage LVG = Q2 gate I(D1) = D1 current V(D1) = D1 anode voltage I(Q1) = Q1 current IR = Tank circuit’s current VHB = Node HB voltage HVG= Q1 gate I(D2) = D2 current V(D2) = D2 anode voltage I(Q2) = Q2 current I(Lp) = Lp (magnetizing) current Vc = Resonant capacitor voltage LVG = Q2 gate I(D1) = D1 current V(D1) = D1 anode voltage I(Q1) = Q1 current IR = Tank circuit’s current VHB = Node HB voltage HVG= Q1 gate t 0 t 0 t 1 t 1 t 3 t 3 t 4 t 4 t 2 t 2 Q1 ON Q2 OFF t 5 t 5 t6 Q1 OFF Q2 ON |
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