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An Efficient and Small Area Multioutput Switched Capacitor Buck Converter for IoTs

机译:用于IOT的高效和小区域多开关开关电容降压转换器

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This paper presents an area and power efficient multioutput switched capacitor (MOSC) DC-DC buck converter targeting ultra-low power and IoT devices. The MOSC converter has a variable input voltage range between 1.05V to 1.4V and generates regulated simultaneous multiple output voltage levels of 1V and 0.55V. Adaptive digital time multiplexing controller is employed to enable multiple power domains. In addition, a pulse frequency modulation is utilized to regulate the output voltages over a wide range of load current. The proposed converter supports a load current of 10μA to 350μA and to 10μA at a load voltage of 1V and 0.55V, respectively. Adaptive time multiplexing and pulse width modulation are implemented through a finite state machine to eliminate the reverse current issue. This problem arises during the switching from a low load voltage of 0.55V to a high load voltage of 1V. The MOSC circuit is fabricated in 65nm CMOS technology and it occupies an active area of 0.27mm2. Moreover, both MIM and MOS capacitors are utilized to further reduce the area of MOSC converter. Measured results shows that the peak efficiency of 78% is achieved at a load power of 300μW.
机译:本文介绍了一个区域和功率有效的多开关电容(MOSC)DC-DC降压转换器,其瞄准超低功耗和物联网设备。 MOSC转换器的可变输入电压范围为1.05V至1.4V,并产生1V和0.55V的调节同时的多个输出电压电平。采用自适应数字时间多路复用控制器来启用多个电源域。另外,利用脉冲频率调制来调节在宽范围的负载电流上的输出电压。所提出的转换器分别支撑10μA至350μA的负载电流,分别在1V和0.55V的负载电压下进行10μA。通过有限状态机实现自适应时间复用和脉冲宽度调制,以消除反向电流问题。在从低负载电压为0.55V到高负载电压的切换过程中出现该问题。 Mosc电路以65nm CMOS技术制造,占据0.27mm的有源区 2 。此外,使用MIM和MOS电容器来进一步减小MOSC转换器的区域。测量结果表明,以300μW的负载功率实现78 %的峰值效率。

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