Micro-photovoltaic cells designed for magnetotaxis-based controlled bacterial microrobots

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Abstract

A new architecture allowing an increase of the photocurrent of a photovoltaic cell fabricated with a CMOS 0.18 μm process is described. This cell has been designed specifically to power the onboard electronics of a 400 μm × 600 μm untethered microrobot propelled by magnetotactic bacteria (MTB). Four cascaded cells of an area of 200 μm × 200 μm each, provide a short circuit current of 70 μA and an open voltage of 0.48 V from a 555 nm 150 Watts commercial incandescent bulb. Experimental results show a power/area of the photocell of ∼110 pW/μm2. © IEICE 2008.

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APA

André, W., & Martel, S. (2008). Micro-photovoltaic cells designed for magnetotaxis-based controlled bacterial microrobots. IEICE Electronics Express, 5(3), 101–106. https://doi.org/10.1587/elex.5.101

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