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Analysis and Design of a Current-Mode PWM Buck Converter Adopting the Output-Voltage Independent Second-Order Slope Compensation Scheme

机译:采用与输出电压无关的二阶斜率补偿方案的电流模式PWM Buck转换器的分析与设计

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摘要

In this paper, we propose the use of second-order slope compensation for a current-mode PWM buck converter. First, the current feedback loop in a current-mode PWM buck converter using a conventional slope compensation is analyzed by the small-signal transfer function. It becomes clear that the stability and frequency bandwidth of the current feedback loop is affected by the external input voltage and the output voltage of the converter. Next, the loop with second-order slope compensation is analyzed, and the result shows that the loop becomes unconditionally stable with the adoption of second-order slope compensation with appropriate parameter values and a current sensing circuit whose current is sensed across an impedance that is inversely proportional to the input voltage. In order to verify our theory, we designed whole circuits of a current-mode PWM buck converter including the new inductor current sensing circuit and the second-order voltage generator circuit using device parameters from the 0.6 μm CMOS process. The circuit simulation results under the conditions of 4 MHz switching frequency, 3.6 V input voltage and 2.4 V output voltage are presented.
机译:在本文中,我们建议对电流模式PWM降压转换器使用二阶斜率补偿。首先,通过小信号传递函数分析了使用传统斜率补偿的电流模式PWM降压转换器中的电流反馈环路。显而易见的是,电流反馈环路的稳定性和频率带宽受转换器的外部输入电压和输出电压影响。接下来,分析具有二阶斜率补偿的环路,结果表明,通过采用具有适当参数值的二阶斜率补偿和电流感测电路,该环路变得无条件地稳定,该电流感测电路的电流跨阻抗为与输入电压成反比。为了验证我们的理论,我们使用0.6μmCMOS工艺的器件参数设计了电流模式PWM降压转换器的整个电路,包括新型电感电流检测电路和二阶电压发生器电路。给出了在4 MHz开关频率,3.6 V输入电压和2.4 V输出电压条件下的电路仿真结果。

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