Quasi-resonant flyback converter with new valley voltage detection mechanism

Wei-Chia Wu, T. Liang, Kai-Hui Chen, Cheng-Yuan Li
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引用次数: 4

Abstract

In quasi-resonant (QR) controller, sensing the current of the power switch and using a delay time are commonly used to achieve valley-voltage-switching. However, the accuracy of valley-voltage switching instant in both methods are affected by the components variations during manufacturing. A primary-side QR-control IC for flyback converter with a novel valley detector is proposed to solve this problem. By sensing the auxiliary winding voltage, the controller estimates the quarter of the resonant period. And the time which the voltage across the power switch decreasing to valley is estimated accurately. Additionally, the primary-side control is adopted to reduce the size and cost of circuit. Finally, this controller is fabricated with TSMC 0.25 μm CMOS high voltage mixed-signal general purpose process, and applied to an input voltage of 90–264 Vrms, output voltage of 12 V, and output power of 30 W flyback converter to verify the feasibility of proposed control.
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具有新型谷电压检测机构的准谐振反激变换器
在准谐振(QR)控制器中,通常采用感应电源开关电流和使用延时时间来实现谷电压开关。然而,两种方法的谷压开关瞬间精度都受到制造过程中元件变化的影响。为解决这一问题,提出了一种带新型谷检测器的反激变换器主侧qr控制集成电路。通过感应辅助绕组电压,控制器估计谐振周期的四分之一。并准确地估计了电源开关两端电压降至谷的时间。此外,采用一次侧控制,减小了电路的尺寸和成本。最后,采用台积电0.25 μm CMOS高压混合信号通用工艺制作了该控制器,并将其应用于输入电压为90-264 Vrms、输出电压为12 V、输出功率为30 W的反激变换器中,验证了所提控制的可行性。
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