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Self-Compensating OCP Control Scheme for Primary-Side Controlled Flyback AC/DC Converters

机译:初级侧控制反激式AC / DC转换器的自补偿OCP控制方案

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Primary-side controlled universal-line flyback converters have been widely used in low-power applications due to their simplicity, low standby power, and low cost. However, conventional OCP schemes normally cause too large a variation in output current when the input voltage varies. This paper proposes a self-compensating OCP circuit to achieve a high-precision constant current at different input voltages which can be used in flyback converters working in discontinues conduction mode. It consists of a CS S/H circuit and a dynamic OCP voltage reference circuit. Compared with conventional OCP circuits, it does not need an extra compensation circuit. To verify the feasibility and performance of the proposed circuit, an IC controller that uses the proposed OCP circuit has been designed and fabricated in 0.35 μm 5-V/40-V high-voltage CMOS technology. Experimental results show that the constant output current precision of the prototype is within ±1% when the input line voltage changes from 85 to 265 Vac. In the common line voltage range (110−220 Vac ), the output current regulation accuracy can reach a level as high as ± 0.3%.
机译:初级侧控制通用线路反激转换器由于其简单,低待机功耗和低成本而被广泛用于低功率应用中。但是,传统的OCP方案通常会在输入电压变化时导致输出电流变化太大。本文提出了一种自补偿OCP电路,以在不同的输入电压下实现高精度恒定电流,该电路可用于在非连续导通模式下工作的反激式转换器。它由CS S / H电路和动态OCP电压基准电路组成。与传统的OCP电路相比,它不需要额外的补偿电路。为了验证所提出电路的可行性和性能,已经使用0.35μm5V / 40V高压CMOS技术设计并制造了使用所提出的OCP电路的IC控制器。实验结果表明,当输入线电压从85变为265 Vac时,原型的恒定输出电流精度在±1%范围内。在公共线电压范围(110-220 Vac)中,输出电流调节精度可以达到±0.3%的水平。

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