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MP4031GS датащи(PDF) 12 Page - Monolithic Power Systems |
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MP4031GS датащи(HTML) 12 Page - Monolithic Power Systems |
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12 / 21 page ![]() MP4031—PRIMARY-SIDE–CONTROLLED, OFFLINE LED CONTROLLER WITH PFC MP4031 Rev.1.03 www.MonolithicPower.com 12 5/8/2013 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2013 MPS. All Rights Reserved. OPERATION The MP4031 is a TRIAC and analog dimmable, primary-side–controlled, offline LED controller designed for high-performance LED lighting. The MP4031 can accurately control the LED current using the real-current–control method based on primary-side information. It can also achieve a high power factor to eliminate noise pollution on the AC line. The integrated VCC charging circuit can achieve fast start-up without any perceptible delay. The MP4031 is suitable for TRIAC-based dimming with an extended dimming range. And the special current sense structure can implement analog dimming. Boundary-Conduction Mode During the external MOSFET ON time (τON), the rectified input voltage applied across the primary- side inductor (Lm) increases the primary current increases linearly from zero to the peak value (Ipk). When the external MOSFET turns off, the energy stored in the inductor forces the secondary-side diode to turn on, and the inductor current decreases linearly from the peak value to zero. When the current decreases to zero, the parasitic resonance caused by the inductor and the combined parasitic capacitances decreases the MOSFET drain-source voltage that is also reflected on the auxiliary winding (see Figure 2). The zero-current detector generates the external MOSFET turn-on signal when the ZCD voltage falls below 0.35V after a blanking time and ensures the MOSFET turns on at a relatively low voltage (see Figure 3). VDS VBUS +NVOUT Ipri t off t on turn-on VZCD 0 Inductor current Isec/N VBUS Ipk Figure 2: Boundary-Conduction Mode + Vcc ZCD Auxiliary Winding RZCD1 0.35V RZCD2 CZCD Figure 3: Zero-Current Detector As a result, there are virtually no primary-switch turn-on losses and no secondary-diode reverse- recovery losses. This ensures high efficiency and low EMI noise. Real-Current Control The proprietary real-current–control method allows the MP4031 to control the secondary-side LED current based on primary-side information. The output LED mean current can be calculated approximately as: FB o s NV I 2R ⋅ ≈ ⋅ |
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