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An automatic slope compensation adjustment technique for peak-current mode DC-DC converters

机译:用于峰值电流模式DC-DC转换器的自动斜率补偿技术

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In a current-mode switching DC-DC converter, the amount of deliverable energy to the load depends on the inductor current limit for the safety of the power components and the slope compensation current which is determined by the slope of the inductor current and the switching duty cycle. However, excess or insufficient slope compensation current may reduce the available load current or cause subharmonic oscillations, respectively. This paper presents an input-to-output conversion ratio sensing circuit which sets a proper slope-compensation (SC) current to avoid both excess slope compensation current and subharmonic oscillations. Both the slope and the duty-cycle of the proposed slope-compensation current are automatically adjusted based on the sensed input-to-output conversion ratio. As a result, the maximum available output current and the main-loop bandwidth of the converter are improved by the proposed structure. The compensation current is generated based on a fast (<0.5 mu s settling time) sensing circuit to track the input voltage or the load current changes. The proposed slope-compensation circuit was integrated into a boost topology with 0.038 mm(2) extra silicon area and 190 mu A to current consumption. (C) 2019 Published by Elsevier GmbH.
机译:在电流模式切换DC-DC转换器中,对负载的可交付能量的量取决于电感器电流限制以及由电感器电流的斜率和切换确定的斜率补偿电流。占空比。然而,过量或不足的斜率补偿电流可以分别减少可用的负载电流或导致子发声振荡。本文介绍了输入到输出的转换比感测电路,该输入电路设定了适当的斜率补偿(SC)电流,以避免过量的斜率补偿电流和子发声振荡。基于所感测的输入 - 输出转换比,自动调整所提出的斜坡补偿电流的斜率和占空比。结果,通过所提出的结构改善了转换器的最大可用输出电流和主环路带宽。基于快速(<0.5μm沉降时间)感测电路来产生补偿电流,以跟踪输入电压或负载电流变化。所提出的斜坡补偿电路与0.038mm(2)额外的硅面积和190μA到电流消耗的升压拓扑集成在升压拓扑中。 (c)2019年由elestvier GmbH发布。

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