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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >High-efficiency peak-current-control non-inverting buck-boost converter using mode selection for single Ni-MH cell battery operation
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High-efficiency peak-current-control non-inverting buck-boost converter using mode selection for single Ni-MH cell battery operation

机译:使用模式选择的高效峰值电流控制同相降压-升压转换器,用于单节镍氢电池

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摘要

A peak-current-controlled non-inverting buck-boost converter with a mode selection scheme for a single Ni-MH cell battery operation is proposed. In order to extend the run time of a Ni-MH battery, the proposed mode selection circuit automatically puts the converter into a buck, boost, or buck-boost mode by comparing the input and output voltages. Among the three modes, the operation range of the buck-boost mode is designed to be minimized since its power conversion efficiency is lowest. The proposed mode selection circuit is applicable to peak-current control and variable output voltage converters. The frequency compensation circuit is designed to guarantee a sufficient phase margin for all three modes. The proposed converter is implemented in a 0.18 mu m CMOS technology, and the chip area is 2.31 mm(2). The experimental results show that the maximum power conversion efficiency of the proposed non-inverting buck-boost converter is enhanced to 88 % from 76 % which is that of the conventional non-inverting buck-boost converter.
机译:提出了一种具有模式选择方案的峰值电流控制的同相降压-升压转换器,用于单个镍氢电池的操作。为了延长镍氢电池的运行时间,建议的模式选择电路通过比较输入和输出电压,自动将转换器置于降压,升压或降压-升压模式。在这三种模式中,降压-升压模式的工作范围被设计为最小,因为其功率转换效率最低。提出的模式选择电路适用于峰值电流控制和可变输出电压转换器。频率补偿电路旨在确保所有三种模式都有足够的相位裕量。拟议的转换器采用0.18μmCMOS技术实现,芯片面积为2.31 mm(2)。实验结果表明,所提出的同相降压-升压转换器的最大功率转换效率从传统的同相降压-升压转换器的76%提高到88%。

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