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Liquid lens based on electromagnetic actuation for high-performance miniature cameras

机译:基于电磁驱动的高性能微型相机液体镜头

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摘要

This paper presents a new design of tunable liquid lens operated by electromagnetic actuation for autofocus (AF) in miniature cameras and its optical performance is experimentally verified. When an electrical voltage is applied to an electric coil inside the electromagnetic system beneath the liquid lens, a magnetic field is generated around the electromagnetic system based on Faraday's law of induction. The magnetic field is used to actuate a ring type neodymium magnet placed on the top of an elastic membrane in the liquid lens. Based on the proposed liquid lens, the measurement of the lens sag height with respect to an applied voltage is carried out. The lens sag height is linearly increased from −1 mm to 0.8 mm while the applied voltage is changed from 0 V to 50 V at a 5 V increment. The average sag height variation per voltage is about 32 µm. The focal length with respect to an applied voltage is also measured using a custom-built testing system consisting of a laser, a mirror, a liquid lens and a detection screen and compared with theory. Finally, the ability of the liquid lens to change its focal plane to distinguish two objects positioned at different distances is successfully tested.
机译:本文提出了一种新型设计的可调谐液体透镜,该透镜可通过电磁驱动自动对焦(AF)微型相机进行操作,并通过实验验证了其光学性能。当在液体透镜下方的电磁系统内部向电磁线圈施加电压时,会根据法拉第感应定律在电磁系统周围产生磁场。磁场用于驱动放置在液体透镜中弹性膜顶部的环形钕磁铁。基于所提出的液体透镜,进行相对于施加电压的透镜垂度高度的测量。镜头下垂高度从-1毫米线性增加到0.8毫米,同时施加的电压以5 V的增量从0 V变为50V。每个电压的平均下陷高度变化约为32 µm。相对于施加电压的焦距也使用由激光,镜子,液体透镜和检测屏组成的定制测试系统进行测量,并与理论进行比较。最终,成功测试了液体透镜改变其焦平面以区分位于不同距离的两个物体的能力。

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