CIRCULARLY POLARIZING PLATE, OPTICAL LAMINATE, ORGANIC ELECTROLUMINESCENT DISPLAY DEVICE, AND DISPLAY DEVICE

    公开(公告)号:US20240310562A1

    公开(公告)日:2024-09-19

    申请号:US18652412

    申请日:2024-05-01

    CPC classification number: G02B5/3016

    Abstract: An optical laminate exhibits a change in tint when applied to a display device as a circularly polarizing plate in combination with a polarizer, and the display device is observed from an oblique direction at all azimuthal angles. A circularly polarizing plate, an organic electroluminescent display device, and a display device, each use the optical laminate. The circularly polarizing plate has a polarizer and an optical laminate which has, from the polarizer side, a first positive C-plate, a positive A-plate, and a λ/4 plate, an in-plane slow axis of the positive A-plate and an absorption axis of the polarizer are parallel to each other, an angle formed by the in-plane slow axis of the positive A-plate and an in-plane slow axis of the λ/4 plate is 45°±10°, and a difference in refractive index between the first positive C-plate and the positive A-plate is 0.08 or less.

    ORGANIC ELECTROLUMINESCENT DISPLAY DEVICE
    2.
    发明公开

    公开(公告)号:US20230276683A1

    公开(公告)日:2023-08-31

    申请号:US18169008

    申请日:2023-02-14

    CPC classification number: H10K59/879 G02B5/3016

    Abstract: Provided is a bendable organic EL display device in which change in tint at a bending portion before and after bending is small. The organic electroluminescent display device is a bendable organic electroluminescent display device including a circularly polarizing plate and a bendable organic EL display panel, in which the circularly polarizing plate includes a polarizer and a retardation layer from a viewing side, the retardation layer includes a first optically anisotropic layer formed by fixing a liquid crystal compound twist-aligned along a helical axis extending in a thickness direction, and the first optically anisotropic layer satisfies a predetermined requirement.

    ORGANIC ELECTROLUMINESCENT DISPLAY DEVICE
    4.
    发明申请

    公开(公告)号:US20200161589A1

    公开(公告)日:2020-05-21

    申请号:US16750624

    申请日:2020-01-23

    Abstract: An organic EL display device is provided in which a change in tint is reduced in a bent portion. This organic EL display device is an organic electroluminescent display device including, from a viewing side, a circularly polarizing plate, a first adhesion layer, and a bendable organic electroluminescent display panel, in which the circularly polarizing plate includes, from the viewing side, a linear polarizer, a second adhesion layer, and a phase difference layer functioning as a λ/4 plate, a complex modulus of elasticity of the first adhesion layer is 2.50×105 Pa or less, the first adhesion layer is thicker than the second adhesion layer, and an absorption axis of the linear polarizer is positioned at an angle of 0°±30° or 90°±30° with respect to an extension direction of a ridge line formed in a case where the organic electroluminescent display device is bent.

    PHASE DIFFERENCE FILM, CIRCULARLY POLARIZING PLATE, AND DISPLAY DEVICE

    公开(公告)号:US20220397712A1

    公开(公告)日:2022-12-15

    申请号:US17824536

    申请日:2022-05-25

    Abstract: Provided are a phase difference film that has a small change in tint in a case where the phase difference film is combined with a polarizer and then applied as a circularly polarizing plate to a display device, and the display device is observed from an oblique direction at all azimuthal angles; as well as a circularly polarizing plate and a display device. The phase difference film includes a first optically anisotropic layer, a second optically anisotropic layer, a third optically anisotropic layer, and a fourth optically anisotropic layer in this order, in which the first optically anisotropic layer is a C-plate, the second optically anisotropic layer is an A-plate, the third optically anisotropic layer is a layer formed by fixing a liquid crystal compound twist-aligned along a helical axis extending in a thickness direction, and the first, second third, and fourth optically anisotropic layers have a predetermined configuration.

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