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A Switched Capacitor Voltage Converter With Exponentially Sized Capacitor Banks for Wide Load Range

机译:具有指数尺寸电容器组的开关电容电压转换器,用于宽负载范围

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Modern Internet-of-Things (IoT) applications need voltage converters to efficiently supply power with a small active period at various load conditions. The energy losses in such voltage converters during transitions between sleep-active can be significant, especially when the converters deviate from their optimum load conditions. The proposed Switched Capacitor (SC) converter, fully integrated on chip, incorporates Split-Capacitor Charging (SCC) and Energy Recycling (ER) techniques to minimize the energy losses during the transitions. The converter consists of multiple capacitor banks and their size increases in a binary exponential fashion. It employs an LDO to support a wide range of output voltage levels and reduce output voltage ripple during energy recycling and Continuous phase. In addition, we introduce an efficient test circuit structure using an on-chip digital controller and reconfigurable load circuit. This test structure can eliminate the unwanted parasitic values and varying delays, which are commonly incurred in the conventional test structures of on-chip voltage converters with off-chip loads and external control signal generation. We implemented the proposed voltage converter with a complete on-chip test structure using a 0.13um CMOS process. Measurement results demonstrate a maximum efficiency of 86.83 % for a load current of 11 mu A. It also achieved an improvement of 64.44 % in energy efficiency over conventional voltage converters for a short active period.
机译:现代互联网(物联网)应用程序需要电压转换器,在各种负载条件下有效地提供电源。这种电压转换器的能量损失在睡眠活性之间的过渡期间可能是显着的,特别是当转换器偏离其最佳负载条件时。所提出的开关电容(SC)转换器,完全集成在芯片上,包括分型电容器充电(SCC)和能量回收(ER)技术,以最大限度地减少过渡期间的能量损失。转换器由多个电容器组组成,它们的大小以二进制指数方式增加。它采用LDO来支持各种输出电压电平,并在能量回收和连续相位期间降低输出电压纹波。此外,我们使用片上数字控制器和可重新配置的负载电路引入有效的测试电路结构。该测试结构可以消除不需要的寄生值和变化的延迟,这通常在具有片上电压转换器的传统测试结构中产生具有片外负载和外部控制信号的产生。我们使用0.13um CMOS工艺实现了具有完整的片上测试结构的所提出的电压转换器。测量结果表明,11μA的负载电流的最大效率为86.83%。它还在常规电压转换器上实现了64.44%的能量效率,在短暂的有效期。

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