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Multiple Conversion Ratio Resonant Switched-Capacitor Converter With Active Zero Current Detection

机译:具有有源零电流检测功能的多转换比谐振开关电容转换器

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This paper introduces an active method for zero current switching for resonant switched capacitor converters (SCC) with wide dynamic range. The method is demonstrated on a binary SCC that features wide range of conversion ratios. Due to the resultant high efficiency of the converter operating under soft-switching conditions, it is applicable for higher power levels up to the medium power range (100 W). The resonant operation is achieved with a single air core inductor and precise commutation at zero current. The sensing signals of the resonant currents are obtained from the flying capacitors rather than form element in which the current includes a dc component. The zero detection method developed is capable of compensating for both the processing delays (from detection to switching action) and for the large variations of the resonant characteristics (due to transition between subcircuits), and for any other component variations. A 100 W prototype with maximum input voltage of 100 V and up to 19 conversion ratios has been built and tested experimentally. The current sensing has been implemented with a simple, cost-efficient, passive sensor. For proper construction of a higher power experimental prototype with desired target efficiency, a set of design considerations for the selection of the power stage components, based on an expanded equivalent resistance concept for multiple subcircuits converter, has been delineated. In addition, a simple and efficient isolated gate driver circuitry is presented.
机译:本文介绍了一种适用于宽动态范围的谐振开关电容器转换器(SCC)的零电流开关有源方法。该方法在具有广泛转换率范围的二进制SCC上得到了证明。由于转换器在软开关条件下工作的结果是高效率,因此适用于中功率范围(100W)以下的更高功率水平。谐振操作是通过单个空心电感和零电流下的精确换向实现的。谐振电流的感测信号是从飞跨电容器获得的,而不是形成其中电流包括直流分量的元件。开发的零检测方法能够补偿处理延迟(从检测到切换动作)和谐振特性的大变化(由于子电路之间的过渡)以及任何其他组件变化。已构建并通过实验测试了100W原型,最大输入电压为100V,转换率高达19。电流检测已通过简单,经济高效的无源传感器实现。为了适当地构建具有所需目标效率的更高功率的实验原型,已经提出了基于多个子电路转换器的等效扩展电阻概念来选择功率级组件的设计要点。此外,提出了一种简单有效的隔离式栅极驱动器电路。

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