采用电润湿液体透镜的三维多视角系统

Y. Won, Junoh Kim, Cheoljoong Kim, Dooseub Shin, Junsik Lee, Gyohyun Koo
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引用次数: 2

摘要

透镜多视系统在实现三维图像方面具有很大的潜力。本文介绍了一种液体透镜阵列的制作方法和在相同分辨率下增加视点的思想。可调液体透镜阵列利用电润湿原理,通过施加电压来改变表面张力,从而产生三维图像。液体透镜装置由一个腔室、两种不同的液体和一个密封板组成。为了制造腔室,将硅片用KOH溶液湿蚀刻,经过一定时间后可以制成梯形腔室。具有倾斜壁的腔室有利于电润湿实现高屈光度。电镀是做镍模具和聚甲基丙烯酸甲酯(PMMA)室通过压花工艺制造。溅射氧化铟锡(ITO),分别沉积聚对二甲苯C和聚四氟乙烯AF1600作为介电层和疏水层。注入两种不混溶的液体,用玻璃板作为封板,用聚碳酸酯(PC)垫片覆盖,用UV胶密封。两种不混溶的液体是D.I水和1-氯萘和十二烷的混合物。完成的透镜通过施加一定的电压显示2D和3D图像。测量了透镜阵列的屈光功率和运行速度。提出了电极分离过程中视点增量的新思路。晶状体的左右电极在不同电压的作用下会产生倾斜的光轴。通过快速切换光轴,可以在相同像素分辨率下实现两倍视点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D multi-view system using electro-wetting liquid lenticular lenses
Lenticular multi-view system has great potential of three dimensional image realization. This paper introduces a fabrication of liquid lenticular lens array and an idea of increasing view points with a same resolution. Tunable liquid lens array can produce three dimensional images by using electro-wetting principle that changes surface tensions by applying voltage. The liquid lenticular device consists of a chamber, two different liquids and a sealing plate. To fabricate the chamber, an <100> silicon wafer is wet-etched by KOH solution and a trapezoid shaped chamber can be made after a certain time. The chamber having slanted walls is advantageous for electro-wetting achieving high diopter. Electroplating is done to make a nikel mold and poly methyl methacrylate (PMMA) chamber is fabricated through an embossing process. Indium tin oxide (ITO) is sputtered and parylene C and Teflon AF1600 is deposited for dielectric and hydrophobic layer respectively. Two immiscible liquids are injected and a glass plate as a sealing plate is covered with polycarbonates (PC) gaskets and sealed by UV adhesive. Two immiscible liquids are D.I water and a mixture of 1-chloronaphthalene and dodecane. The completed lenticular lens shows 2D and 3D images by applying certain voltages. Dioptric power and operation speed of the lenticular lens array are measured. A novel idea that an increment of viewpoints by electrode separation process is also proposed. The left and right electrodes of lenticular lens can be induced by different voltages and resulted in tilted optical axis. By switching the optical axis quickly, two times of view-points can be achieved with a same pixel resolution.
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