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首页> 外文期刊>IEEE Journal of Solid-State Circuits >An Optically Powered, High-Voltage, Switched- Capacitor Drive Circuit for Microrobotics
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An Optically Powered, High-Voltage, Switched- Capacitor Drive Circuit for Microrobotics

机译:用于微型藻体的光学动力,高压,开关电容驱动电路

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摘要

This work presents an efficient high-voltage (HV) drive circuit for mm- and cm-scale electrostatic and piezoelectric microrobotic transducers. Designed in a 650-V SOI CMOS process, a reconfigurable series-parallel switched-capacitor (SC) converter interfaces between either on-chip photovoltaic (PV) cells or a single off-chip battery, and an HV MEMs actuator. The SC converter boosts a nominal similar to 3.7-7.4-V input by similar to 16x to 60-117 V. By using a pseudo-adiabatic drive process, the converter charges the output sequentially and recovers energy in discharge cycles to reduce power consumption by over 10x compared with a conventional hard-switching driver. On-chip PV cells use deep-trench isolation such that they can be stacked and reconfigured in arbitrary series and parallel voltage domains. Measured results show effective operation with reactive loads up to 20 nF, operating frequencies over 50 kHz, and delivered power levels up to 95 mW.
机译:这项工作提出了一种用于MM和CM级静电和压电微机器传感器的高效高压(HV)驱动电路。设计在650 V SOI CMOS工艺中,可在片上光伏(PV)电池或单个片外电池和HV MEMS致动器之间的可重新配置的串联开关电容器(SC)转换器接口。 SC转换器通过类似于16倍至60-117 V,将标称值提升到3.7-7.4-v输入。通过使用伪绝热驱动过程,转换器顺序对输出充电并恢复放电循环中的能量,以降低功耗与传统的硬开关驱动器相比超过10倍。片上PV电池使用深沟槽隔离,使得它们可以在任意串联和并联电压域中堆叠和重新配置。测量结果显示,具有高达20 NF的反应性负载的有效操作,超过50kHz的操作频率,并且提供高达95 MW的功率水平。

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