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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A Recursive Switched-Capacitor DC-DC Converter Achieving $2^{N}-1$ Ratios With High Efficiency Over a Wide Output Voltage Range
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A Recursive Switched-Capacitor DC-DC Converter Achieving $2^{N}-1$ Ratios With High Efficiency Over a Wide Output Voltage Range

机译:在宽输出范围内高效地实现 $ 2 ^ {N} -1 $ 比率的递归开关电容器DC-DC转换器电压范围

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A Recursive Switched-Capacitor (RSC) topology is introduced that enables reconfiguration among 2–1 conversion ratios while achieving minimal capacitive charge-sharing loss for a given silicon area. All 2–1 ratios are realized by strategically interconnecting 2:1 SC cells either in series, in parallel, or in a stacked configuration such that the number of input and ground connections are maximized in order to minimize cascaded losses. Importantly, all ratios are dynamically reconfigurable without disconnecting a single capacitor, all while ensuring optimal capacitance/conductance relative-sizing. The RSC topology is inherently regular, enabling recursive inter-cell connection and recursive binary-slicing that implement ratio-reconfiguration with minimum complexity and losses. A scalable all-digital binary search controller is employed to perform ratio-reconfiguration among the available 2–1 ratios without using any ratio-threshold generation circuitry. To validate the topology, a 4 bit RSC is fully integrated in 0.25 µm bulk CMOS using MIM capacitors, achieving greater than 70% efficiency over a 0.8–2.2 V output voltage range with 85.8% peak-efficiency from a 2.5V input supply. Compared to a co-fabricated three-ratio (1/3, 1/2, 2/3) Series-Parallel SC converter, the RSC achieves a 40.4% larger output operating range (from 0.04 to 2.2 V), and fills the efficiency-drops in-between the three-ratios by 8% with a 940 load.
机译:引入了一种递归式开关电容器(RSC)拓扑结构,该拓扑结构允许在2–1转换比之间进行重新配置,同时在给定的硅面积上实现最小的电容性电荷共享损耗。通过策略性地将2:1 SC电池串联,并联或堆叠配置,可以实现所有2-1的比率,从而最大程度地增加输入和接地的数量,以最大程度地降低级联损耗。重要的是,所有比率均可以动态重新配置,而无需断开单个电容器,同时确保最佳的电容/电导相对尺寸。 RSC拓扑固有地是规则的,从而实现了递归的小区间连接和递归二进制切片,从而以最小的复杂性和损失实现了比率重新配置。可扩展的全数字二进制搜索控制器用于在可用的2–1比率之间执行比率重新配置,而无需使用任何比率阈值生成电路。为了验证拓扑,使用MIM电容器将4位RSC完全集成在0.25 µm体CMOS中,在0.8–2.2 V输出电压范围内实现了70%以上的效率,而2.5V输入电源的峰值效率为85.8%。与共同制造的三比(1 / 3、1 / 2、2 / 3)串联并联SC转换器相比,RSC的输出工作范围更大(从0.04至2.2 V)达到40.4%,并填补了效率-在940负载下,三个比率之间的下降8%。

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