Liquid crystal beam control device with improved zone transition and method of manufacture thereof

    公开(公告)号:US10359686B2

    公开(公告)日:2019-07-23

    申请号:US15528537

    申请日:2015-11-24

    Abstract: A liquid crystal optical device is described configured to provide variable beam steering or refractive Fresnel lens control over light passing through an aperture of the device. The device includes at least one layer of liquid crystal material contained by substrates having alignment layers. An arrangement of electrodes is configured to provide a spatially varying electric field distribution within a number of zones within the liquid crystal layer. The liquid crystal optical device is structured to provide a spatial variation in optical phase delay with a transition at a boundary between zones which is an approximation of a sawtooth waveform across the boundaries of multiple zones. The arrangement of electrodes, device layered geometry and methods of driving the electrodes increase the effective aperture of the overall optical device.

    CONTACT STRUCTURE FOR A TUNABLE LIQUID CRYSTAL OPTICAL DEVICE
    26.
    发明申请
    CONTACT STRUCTURE FOR A TUNABLE LIQUID CRYSTAL OPTICAL DEVICE 审中-公开
    用于可调式液晶光学器件的接触结构

    公开(公告)号:US20170003539A1

    公开(公告)日:2017-01-05

    申请号:US15209101

    申请日:2016-07-13

    Abstract: A tunable liquid crystal optical device defining an optical aperture and having a layered structure. The device includes a film electrode formed on a surface of a first substrate and covered by a second substrate, and a contact structure filling a volume within the layered structure and contacting the film electrode. The contact structure is located outside of the optical aperture and provides an electrical connection surface much larger than a thickness of the film electrode, such that reliable electrical connections may be made to the electrode, particularly in the context of wafer scale manufacturing of such a device.

    Abstract translation: 一种限定光学孔径并具有层状结构的可调谐液晶光学器件。 该器件包括形成在第一衬底的表面上并被第二衬底覆盖的膜电极,以及填充层状结构内的体积并使膜电极接触的接触结构。 接触结构位于光学孔的外侧,并且提供比膜电极的厚度大得多的电连接表面,使得可以对电极进行可靠的电连接,特别是在这种器件的晶片尺寸制造的上下文中 。

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