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Biomimetic small scale variable focal length lens unit using synthetic elastomer actuators

机译:使用合成弹性体致动器的仿生小尺寸可变焦距镜头单元

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Having a combination of a gel-like soft lens, ligaments, and the Ciliary muscles, the human eyes are effectively working for various focal lengths without a complicated group of lens. The simple and compact but effective optical system should deserve numerous attentions from various technical field especially portable information technology device industry. Noting the limited physical space of those deivces, demanding shock durability, and massive volume productivity, the present paper proposes a biomimetic optical lens unit that is organized with a circular silicone lens and an annular dielectric polymer actuator. Unlike the traditional optical lens mechanism that normally acquires a focus by changing its focal distance with moving lens or focal plane, the proposed optical system changes its lens thickness using a annulary connected polymer actuator in order to get image focuses. The proposed biomimetic lens system ensures high shock durability, compact physical dimensions, fast actuations, simple manufacturing process, and low production cost.
机译:人眼结合了凝胶状的软性晶状体,韧带和睫状肌,可以有效地在各种焦距下工作,而无需使用复杂的晶状体。简单而紧凑但有效的光学系统应引起各个技术领域的众多关注,尤其是便携式信息技术设备行业。注意到这些设备的有限的物理空间,要求的耐震性和大量的生产率,本论文提出了一种仿生光学透镜单元,其由圆形硅酮透镜和环形介电聚合物致动器组成。与通常通过移动透镜或焦平面来改变其焦距来获取焦点的传统光学透镜机制不同,所提出的光学系统使用环形连接的聚合物致动器来改变其透镜厚度以便获得图像聚焦。拟议的仿生镜片系统可确保高耐冲击性,紧凑的物理尺寸,快速的驱动力,简单的制造工艺以及较低的生产成本。

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