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MP4031GS датащи(PDF) 14 Page - Monolithic Power Systems |
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MP4031GS датащи(HTML) 14 Page - Monolithic Power Systems |
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14 / 21 page ![]() MP4031—PRIMARY-SIDE–CONTROLLED, OFFLINE LED CONTROLLER WITH PFC MP4031 Rev.1.03 www.MonolithicPower.com 14 5/8/2013 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2013 MPS. All Rights Reserved. Leading-Edge Blanking In order to avoid premature switching-pulse termination due to the parasitic capacitances discharging when the MOSFET turns on, an internal leading-edge blanking (LEB) unit between the S pin and the current-comparator input blocks the path from the S pin to the current comparator input during the blanking time. Figure 7 shows the leading-edge blanking. TLEB= 450nS VS t Figure 7: Leading-Edge Blanking Output Over-Voltage Protection (OVP) Output over-voltage protection (OVP) prevents component damage from over-voltage conditions. The auxiliary winding voltage’s positive plateau is proportional to the output voltage, and the OVP monitors this auxiliary winding voltage instead of directly monitoring the output voltage as shown in Figure 8. Once the ZCD pin voltage exceeds 5.5V, the OVP signal triggers and latches, the gate driver turns off, and the IC functions in quiescent mode. When the VCC voltage drops below the UVLO threshold, the IC shuts down and the system restarts. The output OVP set point can be calculated as: aux ZCD2 out _ ovp sec ZCD1 ZCD2 NR V5.5 NR R ⋅⋅ = + Where: Vout-ovp is the output OVP threshold, Naux is the number of auxiliary winding turns, and Nsec is the number of secondary winding turns + 2uS Blanking Vcc ZCD Auxiliary Winding RZCD1 OVP signal 5.5V Latch RZCD2 CZCD Figure 8: OVP Sampling Circuit To avoid switch-on spikes mis-triggering OVP, OVP sampling has a τOVPS blanking period of around 2µs, as shown in Figure 9. VZCD 0V T OVPS Sampling Here Figure 9: ZCD Voltage and OVP Sampling Overload Protection (OLP) In the event of an output overload, the COMP voltage rises. When the voltage reaches 5V, the IC will shut down and restart until VCC drops below UVLO. Thermal Shutdown To prevent internal temperatures from exceeding 150°C and causing lethal thermal damage, the MP4031 shuts down the switching cycle and latched until VCC dropping below UVLO and restarts again. TRIAC-Based Dimming Control The MP4031 can be used in TRIAC-based dimming application with the CS pin connected directly to the S pin. The TRIAC dimmer usually consists of a bi-directional SCR with an adjustable turn-on phase. Figure 10 shows the leading-edge TRIAC dimmer waveforms. |
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