Durable, inorganic, absorptive, ultra-violet, grid polarizer
    1.
    发明授权
    Durable, inorganic, absorptive, ultra-violet, grid polarizer 有权
    耐用,无机,吸收,紫外线,栅极偏振器

    公开(公告)号:US08947772B2

    公开(公告)日:2015-02-03

    申请号:US14198335

    申请日:2014-03-05

    Applicant: Moxtek, Inc.

    CPC classification number: G02B5/3075 G02B5/3058 G02B5/3091

    Abstract: An inorganic, dielectric grid polarizer device includes a stack of film layers disposed over a substrate. Each film layer is formed of a material that is both inorganic and dielectric. Adjacent film layers each have different refractive indices. At least one of the film layers is discontinuous to form a form-birefringent layer with an array of parallel ribs having a period less than 400 nm. Another layer, different than the form-birefringent layer, is formed of an optically absorptive material for the ultra-violet spectrum.

    Abstract translation: 无机介电栅极偏振器装置包括设置在基板上方的一层薄膜层。 每个膜层由无机和电介质的材料形成。 相邻的膜层各自具有不同的折射率。 至少一个膜层是不连续的,以形成具有周期小于400nm的平行肋排列的双折射层。 与形成双折射层不同的另一层由用于紫外光谱的光学吸收材料形成。

    Polarizer, Wavelength Filter and Waveplate
    3.
    发明申请

    公开(公告)号:US20200271838A1

    公开(公告)日:2020-08-27

    申请号:US16774196

    申请日:2020-01-28

    Applicant: Moxtek, Inc.

    Abstract: An optical device can comprise a subassembly with at least two different optical components in a stack. Each optical component can be a wavelength filter, a polarizer, or a waveplate. This stack can be a subassembly which can be manufactured separately from other components like CCD, CMOS, liquid crystal layer, electronic components, and electrodes. Consequently, this subassembly can be manufactured relatively inexpensively and with large variety of configurations. After first manufacturing the subassembly, it can then be attached to other components (e.g. CCD, CMOS, liquid crystal layer, electronic components, electrodes, etc.) to form the completed device (e.g. optical display, radiation detection, radiation measurement, imaging, etc.).

    WIRE GRID POLARIZER WITH SIDE REGION
    4.
    发明申请
    WIRE GRID POLARIZER WITH SIDE REGION 有权
    带有侧面区域的电网偏振器

    公开(公告)号:US20150131150A1

    公开(公告)日:2015-05-14

    申请号:US14470351

    申请日:2014-08-27

    Applicant: Moxtek, Inc.

    CPC classification number: G02B5/3058 C23F17/00 G02B1/08 G02B1/12

    Abstract: Structures and methods of making wire grid polarizers having multiple regions, including side bars, strips, and/or side ribs along sides of a central region. The central region can include a single region or multiple regions. Each region can have a different function for improving polarizer performance. The various regions can support each other for improved wire grid polarizer durability.

    Abstract translation: 制造具有多个区域的线栅偏振器的结构和方法,包括沿着中心区域的侧面的边条,条带和/或侧肋。 中心区域可以包括单个区域或多个区域。 每个区域可以具有用于改善偏振器性能的不同功能。 各种区域可以彼此支撑以改善线栅偏振器耐久性。

    DURABLE, INORGANIC, ABSORPTIVE, ULTRA-VIOLET, GRID POLARIZER
    5.
    发明申请
    DURABLE, INORGANIC, ABSORPTIVE, ULTRA-VIOLET, GRID POLARIZER 有权
    耐用,无机,吸收,超紫外线,栅极偏振器

    公开(公告)号:US20140313571A1

    公开(公告)日:2014-10-23

    申请号:US14198335

    申请日:2014-03-05

    Applicant: Moxtek, Inc.

    CPC classification number: G02B5/3075 G02B5/3058 G02B5/3091

    Abstract: An inorganic, dielectric grid polarizer device includes a stack of film layers disposed over a substrate. Each film layer is formed of a material that is both inorganic and dielectric. Adjacent film layers each have different refractive indices. At least one of the film layers is discontinuous to form a form-birefringent layer with an array of parallel ribs having a period less than 400 nm. Another layer, different than the form-birefringent layer, is formed of an optically absorptive material for the ultra-violet spectrum.

    Abstract translation: 无机介电栅极偏振器装置包括设置在基板上方的一层薄膜层。 每个膜层由无机和电介质的材料形成。 相邻的膜层各自具有不同的折射率。 至少一个膜层是不连续的,以形成具有周期小于400nm的平行肋排列的双折射层。 与形成双折射层不同的另一层由用于紫外光谱的光学吸收材料形成。

    Polarizer Nanoimprint Lithography
    8.
    发明申请

    公开(公告)号:US20190317260A1

    公开(公告)日:2019-10-17

    申请号:US16366932

    申请日:2019-03-27

    Applicant: Moxtek, Inc.

    Abstract: A method of making a polarizer can include applying a liquid with solid inorganic nanoparticles dispersed throughout a continuous phase, then forming this into a different phase including a solid, interconnecting network of the inorganic nanoparticles. This method can improve manufacturability and reducing manufacturing cost. This method can be used to provide an antireflective coating, to provide a protective coating on polarization structures, to provide thin films for optical properties, or to form the polarization structures themselves.

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