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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >An Accurate Zero-Current-Switching Circuit for Ultra-Low-Voltage Boost Converters
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An Accurate Zero-Current-Switching Circuit for Ultra-Low-Voltage Boost Converters

机译:用于超低电压升压转换器的精确零电流开关电路

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摘要

The use of digital schemes to indirectly detect the zero-current crossing and perform the zero-current switching in ultra-low-voltage inductive boost converters has been prevalent in recent developments. However, design guidelines for such digital schemes are still lacking. In this brief, an efficient zero-current switching scheme for ultra-low-voltage boost converters is proposed and implemented in standard CMOS 130 nm technology. Instrumental to our design was the introduction of the proper time delay for sensing the direction of the inductor current on the opening of the high-side switch. The correct delay time as a function of the circuit parameters keeps the switching as close as possible to the zero-current crossing. Owing to an efficient zero-current-switching scheme, the fabricated prototype provides end-to-end efficiency of 76% for a voltage converter having an input voltage as low as 20 mV.
机译:在最近的开发中,使用数字方案以间接检测到零电流交叉并执行超低电压电感升压转换器中的零电流切换已经普遍存在。 但是,仍然缺乏这种数字方案的设计指南。 在此简述中,提出了一种用于超低电压升压转换器的有效零电流切换方案,并以标准CMOS130NM技术实现。 仪器对我们的设计是引入适当的时间延迟,用于感测高侧开关的开口上的电感电流方向。 作为电路参数的函数的正确延迟时间使切换尽可能接近到零电流交叉。 由于有效的零电流切换方案,制造的原型为电压转换器提供了76%的端到端效率,该电压转换器具有低至20 mV的输入电压。

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