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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >A New Efficiency-Improvement Low-Ripple Charge-Pump Boost Converter Using Adaptive Slope Generator With Hysteresis Voltage Comparison Techniques
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A New Efficiency-Improvement Low-Ripple Charge-Pump Boost Converter Using Adaptive Slope Generator With Hysteresis Voltage Comparison Techniques

机译:利用滞后电压比较技术的自适应斜率发生器提高效率的低纹波电荷泵升压转换器

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摘要

The new efficiency-improvement low-ripple charge-pump boost converter using adaptive slope generator with hysteresis voltage comparison techniques is proposed in this paper. This proposed converter can reduce output voltage ripple, because its inductor is connected to the output. This proposed converter adopts a new controlled architecture, self-adaptive slope generator with hysteresis comparison technology, to shorten the transient response. The proposed boost converter has been fabricated with TSMC 0.35-m CMOS 2P4M processes, and a total chip area of mm. Its maximum output current is 260 mA when the output voltage is 3.6 V. When the supply voltage is 3.3 V, the output voltage can be 3.6–5.1 V. The maximum efficiency is 90.99% and the minimum output ripple is 10.8 mV. Finally, the theoretical analysis is verified to be correct by the experimental results.
机译:提出了一种新的利用滞后电压比较技术的自适应斜率发生器提高效率的低纹波电荷泵升压转换器。提出的转换器可以减少输出电压纹波,因为其电感器连接到输出。拟议的转换器采用了一种新的受控架构,具有滞后比较技术的自适应斜率发生器,以缩短瞬态响应。拟议的升压转换器已采用TSMC 0.35-m CMOS 2P4M工艺制造,总芯片面积为mm。当输出电压为3.6 V时,其最大输出电流为260 mA。当电源电压为3.3 V时,输出电压可以为3.6–5.1V。最大效率为90.99%,最小输出纹波为10.8 mV。最后,实验结果验证了理论分析的正确性。

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