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Temperature Compensation Analysis of Liquid Lens for Variable-Focus Control

机译:可变焦点控制的液体透镜温度补偿分析

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In this work, a fabrication and temperature compensation analysis and electrowetting for the liquid lenses is proposed. The unique capability of controlling the lens profile during the electrowetting fabrication processes is successfully demonstrated for different ambient temperature environment. For a lens fabricated on a hydrophobic Teflon layer, it is found that when the applied voltage is increased, the focal length increases, and the curvature decreases. One challenge for the liquid lens is operating temperature range. Due to the environment temperature change, the ability of controlling the lens profile is analyzed and measured. The description of change in contact angle corresponding to the variation of ambient temperature is derived. Based on this description, we firstly derive the control of voltage vs. temperature for a fixed dioptric power. The control of lens during a focusing action was studied by observation of the image formed by the light through the transparent bottom of ITO glass. Under several conditions of ambient temperature change, capability of controlling the lens profile for a fixed focus is successfully demonstrated by experiments.
机译:在这项工作中,提出了用于液体透镜的制造和温度补偿分析以及电润湿。在不同的环境温度环境下,成功地展示了在电润湿制造过程中控制镜片轮廓的独特能力。对于在疏水性特氟隆层上制造的透镜,发现当施加的电压增加时,焦距增加,并且曲率减小。液体透镜的一个挑战是工作温度范围。由于环境温度的变化,分析和测量了控制镜片轮廓的能力。得出与环境温度变化相对应的接触角变化的描述。基于此描述,我们首先得出固定屈光度功率的电压对温度的控制。通过观察通过ITO玻璃透明底部的光线形成的图像,研究了在聚焦动作期间对镜头的控制。在环境温度变化的几种条件下,通过实验成功证明了控制镜头轮廓以实现固定焦点的能力。

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