一种可自动重构的多输出调节开关电容DC-DC转换器,用于多单元植入式设备中的无线功率接收和分配

Unbong Lee;Wanyeong Jung;Sohmyung Ha;Minkyu Je
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引用次数: 2

摘要

提出了一种用于无线供电的多单元植入式医疗设备(IMDs)的具有多个调节输出的自动可重构开关电容DC-DC转换器。在这样的设备中,主控制器单元是无线供电的,并向主单元以及多个连接的子单元的电路提供电源电压。所提出的DC-DC转换器同时为主机产生两个调节电压,为子机产生两个未调节电压,子机具有现场低压差调节器。该转换器由i)具有两个串联的开关电容器(SC)DC-DC转换器的输入自适应DC-DC转换级和ii)调节级组成。在DC-DC转换阶段,所提出的转换器自动重新配置两个SC DC-DC转换器的转换比和连接顺序,并根据输入电平通过负载选择开关选择输出节点。由于这些自适应配置,所提出的转换器在宽输入电压范围内提供了高转换效率,即使可重新配置的转换比所需的飞驰电容器更少。此外,选择开关被重新使用以将输出电压调节到期望的电平,从而最小化后续调节的开销。在180nm标准CMOS工艺中制造的IC在1V至4V的宽输入范围内实现了未调节电压的95.5%的转换效率和高达77.4%的调节电压的转换效率,对于20mA的负载电流具有0.74mV的输出纹波,同时提供了四个输出(2个调节,2个未调节)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Auto-Reconfigurable Multi-Output Regulating Switched-Capacitor DC–DC Converter for Wireless Power Reception and Distribution in Multi-Unit Implantable Devices
An automatically reconfigurable switched-capacitor DC-DC converter with multiple regulated outputs is presented for wireless-powered multi-unit implantable medical devices (IMDs). In such devices, the main controller unit is powered wirelessly and provides supply voltages to the circuits of the main unit as well as multiple connected sub-units. The proposed DC-DC converter simultaneously generates two regulated voltages for the main unit and two unregulated voltages for the sub-units, which have on-site low-dropout regulators. The converter consists of i) an input-adaptive DC-DC conversion stage with two switched-capacitor (SC) DC-DC converters in series and ii) a regulating stage. In the DC-DC conversion stage, the proposed converter automatically reconfigures the conversion ratio and connection order of the two SC DC-DC converters and selects the output nodes by load selection switches depending on the input level. Thanks to these adaptive configurations, the proposed converter offers high conversion efficiencies over a wide input voltage range even with fewer flying capacitors required for the reconfigurable conversion ratios. Moreover, the selection switches are reused to regulate the output voltages to desired levels, minimizing the overhead for subsequent regulation. The IC fabricated in a 180-nm standard CMOS process achieves a conversion efficiency of 95.5% for the unregulated voltages and up to 77.4% for the regulated voltages over a wide input range of 1 V to 4 V with 0.74-mV output ripple for a load current of 20 mA, while providing four outputs (2 regulated, 2 unregulated).
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