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MP44014 Datasheet(PDF) 11 Page - Monolithic Power Systems |
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MP44014 Datasheet(HTML) 11 Page - Monolithic Power Systems |
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11 / 12 page ![]() MP44014 – BOUNDARY MODE PFC CONTROLLER MP44014 Rev. 1.01 www.MonolithicPower.com 11 11/10/2015 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2015 MPS. All Rights Reserved. Boundary Conduction Mode When the current of the boost inductor reaches zero, the voltage on the inductor is reversed. ZCS then generates the turn-on signal of the MOSFET by sensing the falling edge of the voltage on the auxiliary winding coupled with the inductor. If the ZCS voltage rises above 2.1V, the comparator waits until the voltage falls below 1.6V. Once the voltage falls below 1.6V, the MP44014 turns on the MOSFET. The 7.8V high clamp and 0.55V low clamp protect ZCS. The internal 175µs timer generates a signal to turn on the MOSFET if the driver signal has been low for more than 175µs. This also allows the MOSFET to turn on during the start-up period since no signal is generated from ZCD during start-up. Zero-Crossing Compensation The MP44014 offers 30mV voltage offset for the multiplier output near the zero crossing of the line voltage (which can force the circuit to process more energy at the bottom of the line voltage). With this function, the THD of the current is reduced. To prevent redundant energy, this offset is reduced as the instantaneous line voltage increases. Therefore the offset will be negligible near the top of the line voltage. Power Factor Correction The MP44014 senses the inductor current through the current sense pin and compares it to the sinusoidal-shaped signal, which is generated from the output of the multiplier. When the external power MOSFET turns on, the inductor current rises linearly. When the peak current hits the sinusoidal-shaped signal, the external power MOSFET begins to turn off, and the diode turns on. Also, the inductor current begins to fall. When the inductor current reaches zero, the power MOSFET begins to turn on again, which causes the inductor current to start rising again. The power circuit works in boundary conduction mode, and the envelope of the inductor current is sinusoidal shaped. The average input current is half of the peak current, so the average input current is also sinusoidal shaped. A high power factor can be achieved through this control method (see Figure 4). Multiplier output Inductor current Input average current Figure 4: Inductor Current Waveform The control flow chart of the MP44014 is shown in Figure 5. Figure 5: Control Flow Chart |
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