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A Self-Calibrating Off-Time Controller for WSN/IoT Synchronous Non-Inverting Buck-Boost DC-to-DC Converter Application

机译:用于WSN /物联网同步非反相降压-Boost DC-To-DC转换器应用的自校准关闭时间控制器

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Inappropriate turning-off of synchronous switches in DC-to-DC converters operating in discontinuous conduction mode (DCM) degrades the overall efficiency of the converter due to the power losses in either body-diode conduction or reverse inductor current. This paper presents a self-calibrating off-time controller using a digitally-controlled delay element (DCDE) for synchronous DC-to-DC converter. An up-down counter that is controlled by the polarity of the inductor current is utilized to drive the binary-weighted DCDE. The programmable DCDE is used to generate a self-calibrating off-time pulse to turn-off the synchronous switches very close to the zero-crossing of the inductor current. The design and simulation of the proposed method is implemented using 65nm CMOS Technology process in Synopsys Custom Designer tool. When implemented, the measured accuracy of the detection is in order of less than ±10mA. The average power consumption of the proposed system is less than 10 uW and is expected to be much lower at lighter loads.
机译:在以不连续导通模式(DCM)运行的DC-DC转换器中同步开关的不适当的关闭降低了转换器的整体效率,由于身体二极管导通或反向电感电流的功率损耗。本文采用了用于同步DC-DC转换器的数字控制延迟元件(DCDE)的自校准关闭时间控制器。由电感电流的极性控制的上下计数器用于驱动二进制加权DCDE。可编程DCDE用于生成自校准关闭时间脉冲,以便在非常接近电感电流的零交叉的同步开关关闭。所提出的方法的设计和仿真在Synopsys自定义设计器工具中使用65nm CMOS技术过程实现。实施时,检测的测量精度为小于±10mA。所提出的系统的平均功耗小于10 UW,预计在较轻的载荷时将更低。

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