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P1-18: Novel Microactuators based on a Photo-Thermo-Mechanical Actuation Strategy

机译:P1-18:基于光热机械驱动策略的新型微绕

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In this work an innovative actuation strategy based on a photo-thermo-mechanical energy conversion is presented. The actuation energy is typically higher than those required by the control and/or signal processing electronics, therefore this means a significant stress for the power supply. This challenge is particularly important if autonomous systems are taken into account. Small batteries don't ensure sufficient autonomy, therefore external energy source should be considered. The basic idea is to provide the actuation energy to system through a light source, by directly exploits the heat generation capability of the light. The true innovative idea in this work is the use of micro-lenses coupled with thermal actuators to gain in terms of efficiency. The device presented here is a bimorph cantilever-beam that can be realized in any standard Si-technology. Few additional steps are required for the fabrication of the micro-lenses, commonly used for micro-optics and opto-electronics. In contrast to other off-chip power supply approach, the one presented here do not require any structured environment or exotic materials.
机译:在这项工作中,提出了一种基于光热机械能转换的创新致动策略。致动能通常高于控制和/或信号处理电子设备所需的致动能,因此这意味着电源的显着应力。如果考虑自主系统,这一挑战尤其重要。小电池不保证足够的自主权,因此应考虑外部能源。基本思想是通过光源向系统提供致动能,直接利用光的发热能力。这项工作中的真正创新思想是使用微透镜与热致动器相结合,以便在效率方面获得。这里呈现的装置是Bimorph悬臂梁,可以在任何标准的SI-Technology中实现。制造微透镜需要少量额外的步骤,通常用于微光学和光电子。与其他片外电源方法相比,这里呈现的那个不需要任何结构化环境或异国情调。

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