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A MOS current-mode boost DC-DC converter with the duty-ratio-independent frequency characteristics

机译:具有占空比独立频率特性的MOS电流模式升压DC-DC转换器

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In order to elevate an input voltage of less than 1-V to an output voltage of from several volts to 10-V while also realizing a large output-current capability, a wide feedback-loop frequency bandwidth under a high duty-ratio condition and a high power efficiency, we developed a MOS current-mode boost DC-DC converter which utilizes the quadratic compensation slope with the output voltage dependency and the variable gain amplifier in front of the error amplifier. The frequency characteristics of the total feedback loop were independent of the duty-ratio change. A test chip was fabricated by using a 0.18-um high-voltage CMOS process. The resulting 1 MHz operational MOS current-mode boost DC-DC converter converted input voltages of 0.4-V to 5.3-V to output voltages of 1-V to 6-V, realized 50 mA and 150 mA of output currents for input voltages of 1-V and 1.8-V, respectively, realized a feedback-loop frequency bandwidth of 70 kHz with a 1-V input and a duty-ratio of 81%, and realized 75% and 90% power efficiency for the 1-V and 2.5-V inputs, respectively, when the output voltage was 5.3 V.
机译:为了将小于1V的输入电压提升至几伏至10V的输出电压,同时还实现了大输出电流能力,高占空比条件下的宽反馈环路频率带宽和为了提高功率效率,我们开发了MOS电流模式升压DC-DC转换器,该转换器利用具有输出电压依赖性的二次补偿斜率和误差放大器前的可变增益放大器。总反馈环路的频率特性与占空比的变化无关。通过使用0.18um高压CMOS工艺制造了测试芯片。由此产生的1 MHz工作MOS电流模式升压DC-DC转换器将0.4V至5.3V的输入电压转换为1V至6V的输出电压,实现了50mA和150mA的输入电压输出电流。 1V和1.8V分别实现了70kHz的反馈环路频率带宽,1V输入和81%的占空比,并实现了1V和70V的功率效率分别为75%和90%当输出电压为5.3 V时,分别为2.5 V输入。

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