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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A Dual-Output Switched Capacitor DC–DC Buck Converter Using Adaptive Time Multiplexing Technique in 65-nm CMOS
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A Dual-Output Switched Capacitor DC–DC Buck Converter Using Adaptive Time Multiplexing Technique in 65-nm CMOS

机译:在65 nm CMOS中使用自适应时间多路复用技术的双输出开关电容器DC-DC Buck转换器

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摘要

This paper presents an area- and power-efficient dual-output switched capacitor (DOSC) dc-dc buck converter for wearable biomedical devices. The DOSC converter has an input voltage range between 1.05 and 1.4 V and generates two simultaneous regulated output voltages of 1 and 0.55 V. The DOSC consists of two main blocks: a switched capacitor regulator and an adaptive time multiplexing (ATM) controller. The switched capacitor regulator generates a single regulated voltage using pulse frequency modulation based on a predetermined reference voltage. In addition, the ATM controller generates two simultaneous output voltages and eliminates the reverse current using pulse width modulation during the switching between the output voltages. Addressing the reverse current problem is important to reduce the output voltage droop and improve the performance. The proposed converter supports load currents of 10-350 μA and 1-10 μA at load voltages of 1 and 0.55 V, respectively. The DOSC circuit is fabricated in 65-nm CMOS, and it occupies an active area of 0.27 mm2. Measured results show that a peak efficiency of 78% is achieved at a load power of 300 μW.
机译:本文提出了一种适用于可穿戴生物医学设备的面积和功率高效的双输出开关电容器(DOSC)DC-DC降压转换器。 DOSC转换器的输入电压范围在1.05至1.4 V之间,并生成两个同时调节的1至0.55 V输出电压。DOSC由两个主要模块组成:开关电容器调节器和自适应时分多路(ATM)控制器。开关电容器调节器基于预定参考电压使用脉冲频率调制来产生单个调节电压。此外,ATM控制器同时生成两个输出电压,并在输出电压之间切换时使用脉冲宽度调制消除了反向电流。解决反向电流问题对于减少输出电压下降和提高性能很重要。拟议的转换器在1和0.55 V的负载电压下分别支持10-350μA和1-10μA的负载电流。 DOSC电路以65纳米CMOS制成,其有效面积为0.27毫米 n 2 n。测量结果表明,在300μW的负载功率下,峰值效率达到78%。

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