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A Current-Mode Buck DC-DC Converter with Frequency Characteristics Independent of Input and Output Voltages Using a Quadratic Compensation Slope

机译:使用二次补偿斜率的频率特性独立于输入和输出电压的电流模式降压DC-DC转换器

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By using a quadratic compensation slope, a CMOS current-mode buck DC-DC converter with constant frequency characteristics over wide input and output voltage ranges has been developed. The use of a quadratic slope instead of a conventional linear slope makes both the damping factor in the transfer function and the frequency bandwidth of the current feedback loop independent of the converter's output voltage settings. When the coefficient of the quadratic slope is chosen to be dependent on the input voltage settings, the damping factor in the transfer function and the frequency bandwidth of the current feedback loop both become independent of the input voltage settings. Thus, both the input and output voltage dependences in the current feedback loop are eliminated, the frequency characteristics become constant, and the frequency bandwidth is maximized. To verify the effectiveness of a quadratic compensation slope with a coefficient that is dependent on the input voltage in a buck DC-DC converter, we fabricated a test chip using a 0.18μm high-voltage CMOS process. The evaluation results show that the frequency characteristics of both the total feedback loop and the current feedback loop are constant even when the input and output voltages are changed from 2.5 V to 7 V and from 0.5 V to 5.6 V, respectively, using a 3 MHz clock.
机译:通过使用二次补偿斜率,已开发出在宽输入和输出电压范围内具有恒定频率特性的CMOS电流模式降压DC-DC转换器。使用二次方斜率而不是传统的线性斜率使传递函数中的阻尼系数和电流反馈环路的频率带宽都与转换器的输出电压设置无关。当选择二次斜率的系数取决于输入电压设置时,传递函数中的阻尼系数和电流反馈环路的频率带宽都变得与输入电压设置无关。因此,消除了电流反馈环路中的输入和输出电压依赖性,频率特性变得恒定,并且频率带宽最大化。为了验证系数取决于降压DC-DC转换器中输入电压的二次补偿斜率的有效性,我们使用0.18μm高压CMOS工艺制造了测试芯片。评估结果表明,即使使用3 MHz的输入电压和输出电压分别从2.5 V更改为7 V和从0.5 V更改为5.6 V,总反馈环路和电流反馈环路的频率特性也是恒定的时钟。

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