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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >A transient enhanced DVS DC-DC converter based on state trajectory analysis
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A transient enhanced DVS DC-DC converter based on state trajectory analysis

机译:基于状态轨迹分析的瞬态增强型DVS DC-DC转换器

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摘要

Dynamic voltage scaling (DVS) can effectively reduce energy consumption by dynamically varying the supply voltage of the system accordingly to the clock frequency. A new DVS-enabled DC-DC converter is presented in this paper. State trajectory is employed to analyze the transient features of PWM and PFM Buck converters. A novel transient enhancement circuit is designed to improve the transient response of the DVS-enabled Buck converter. To further expand the output voltage range of the converter, a current-starved voltage controlled delay line is proposed in the controller of DC-DC converter to obtain an ultra low voltage of 0.5 V. When the input voltage is 3.3 V, the output voltage of the converter can be dynamically regulated from 0.5 to 2.0 V. The output voltage tracking speed is less than 7.5 μs/V and the recovery speed is 33 μs/A for a load current step from 0.6 to 0.2 A at output voltage of 0.5 V. The chip area is 1.75 mm × 1.33 mm in a 0.18 μm standard CMOS process.
机译:动态电压调节(DVS)可通过根据时钟频率动态改变系统的电源电压来有效降低能耗。本文介绍了一种新的支持DVS的DC-DC转换器。状态轨迹用于分析PWM和PFM Buck转换器的瞬态特性。设计了一种新颖的瞬态增强电路,以改善启用了DVS的Buck转换器的瞬态响应。为了进一步扩展转换器的输出电压范围,在DC-DC转换器的控制器中提出了一种电流不足的电压控制延迟线,以获得0.5 V的超低电压。当输入电压为3.3 V时,输出电压转换器的输出电压可在0.5至2.0 V之间动态调节。输出电压跟踪速度低于7.5μs/ V,并且在0.5 V输出电压下负载电流从0.6至0.2 A时,恢复速度为33μs/ A。 。在0.18μm标准CMOS工艺中,芯片面积为1.75 mm×1.33 mm。

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