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Optimal design to maximize efficiency of single-inductor multiple-output buck converters in discontinuous conduction mode for IoT applications

机译:最佳设计,以最大限度地提高单电感器多输出降压转换器的不连续传导模式,用于IOT应用

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To clarify the design guide of single-inductor multiple-output (SIMO) buck converters in discontinuous conduction mode (DCM) targeted for small-size and low-power IoT applications, equations of optimal design parameters (transistor size, inductance, and switching frequency) to maximize the power conversion efficiency are derived for the first time. The analytical optimal designs are verified with SPICE simulations. The maximum efficiency of SIMO DCM buck converters is lower than that of conventional single-inductor single-output (SISO) DCM buck converters, because the power loss due to the energy distribution switches is added. The efficiency degradation is analytically explained for the first time.
机译:为了阐明单电感器多输出(SIMO)降压转换器的设计指南,以小型和低功耗IOT应用,最佳设计参数的方程(晶体管尺寸,电感和开关频率) )最大化功率转换效率首次导出。通过Spice模拟验证了分析最佳设计。 SIMO DCM降压转换器的最大效率低于传统的单电感器单输出(SISO)DCM降压转换器,因为添加了引起的能量分配开关。首次解析效率降解。

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