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Remote power feed and control of MEMS with 58 V silicon photovoltaic cell made by a CMOS post-process dry release and device isolation method

机译:通过CMOS后工艺干释放和装置隔离方法制造的58V硅光伏电池的远程供电和控制

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A small autonomous device integrating MEMS, CMOS and photovoltaic (PV) cells has many attractive applications. For such a device, using light as a power source is preferable because power feeding and control signal transmitting can be done at the same time and in a remote manner. We demonstrated the remote power feeding to a MEMS actuator by light using PV cell array. In this article, we first proposed a new dry release method of MEMS structure for a CMOS-MEMS-PV integration. The method does not require vapor HF and thus we can avoid damage to CMOS circuits. We demonstrated the method by releasing MEMS cantilevers. Next, we prepared a PV cell array integrable with CMOS and MEMS. Its open circuit voltage was 58 V and its maximum power was 43.3 μW. We conducted an experiment to drive a MEMS comb drive actuator remotely, irradiating laser light from the distance of 1.5 m. The PV cell array successfully fed power and the actuator moved 1.0 μm, two-thirds of the calculated value.
机译:一小块自主设备集成MEMS,CMOS和光伏(PV)电池具有许多有吸引力的应用。对于这种装置,使用光作为电源是优选的,因为可以同时和以远程方式进行供电和控制信号发送。我们通过使用光伏电池阵列向MEMS执行器展示了远程供电。在本文中,我们首先提出了一种用于CMOS-MEMS-PV积分的MEMS结构的新的干释放方法。该方法不需要蒸气HF,因此我们可以避免损坏CMOS电路。我们通过释放MEMS悬臂来证明该方法。接下来,我们制备了一种与CMOS和MEMS可集成的光伏电池阵列。其开路电压为58 V,其最大功率为43.3μW。我们进行了一个实验,以远程驱动MEMS梳子驱动致动器,从1.5米的距离照射激光。光伏电池阵列成功地供电,致动器移动1.0μm,计算值的三分之二。

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